Prenatal maternal psychological distress,particularly depression,has been increasingly recognized as a factor that influences fetal growth;however,its impact on early childhood development remains less well understood...Prenatal maternal psychological distress,particularly depression,has been increasingly recognized as a factor that influences fetal growth;however,its impact on early childhood development remains less well understood.The present study investigated the association between prenatal depression and children's growth trajectories,as well as the odds of overweight and obesity from 1 to 36 months,while also accounting for maternal anxiety and stress.We analyzed data from 4710 mother-child dyads in the Jiangsu Birth Cohort,assessing maternal psychological distress across trimesters and categorizing participants into groups with mild,moderate,and severe depressive symptomatology.Children's weight-for-length z-scores(WLZ)were used to assess overweight/obesity prevalence,and growth patterns were identified through trajectory models.The results from the generalized estimating equations analysis showed that greater depressive symptomatology during pregnancy was associated with a 28%to 41%increase in the odds of childhood overweight/obesity across all three trimesters,compared with mild depressive symptomatology.We identified five distinct WLZ growth trajectory patterns,and found that mothers with greater depressive symptomatology were 39%–47%more likely to have children who followed a very-high-stable growth trajectory,compared with mothers with mild depressive symptomatology.These findings highlight the significant impact of prenatal depression on adverse growth patterns and childhood overweight/obesity,underscoring the need for early intervention.展开更多
Studying the reproductive system of the pine wood nematode,Bursaphelenchus xylophilus(Steiner&Buhrer)Nickle,will identify its characteristics and life cycle.This is crucial for developing more targeted control str...Studying the reproductive system of the pine wood nematode,Bursaphelenchus xylophilus(Steiner&Buhrer)Nickle,will identify its characteristics and life cycle.This is crucial for developing more targeted control strategies.In this study,the development of the gonads and reproductive organs were observed using microscopy,gonad dissection,and DAPI staining techniques.Second-stage juveniles(J2)had gonads composed of four primordial germ cells(Z1,Z2,Z3,and Z4)that form the adult gonads by proliferation within 72 h at 25℃.There were subtle differences in somatic gonad cell morphology between males and females,which developed from Z1 and Z4 in third-stage juveniles(J3).These differences became more pronounced at fourth-stage juveniles(J4)and adult stages.Z2 and Z3 germ cells underwent mitosis and two rounds of meiosis,ultimately developing into male and female gametes.Female vulval precursor cells and male cloacal cells developed rapidly during the J4 stage.These results provide a basis for identifying the expression sites and biological functions of key genes regulating reproductive system development.Based on this,in situ hybridization and RNA interference(RNAi)were used to determine the function of the Bxy-glp-1 gene to show that it is involved in vulval formation and spermatogenesis.The results of this study will lay the foundation for disrupting critical stages in the reproduction of B.xylophilus.展开更多
The impact of mother-infant microbiota on neurodevelopment is an area of interest,but longitudinal studies are scarce.Using a cohort of 520 families from the Jiangsu birth cohort in China,we reveal that the maternal g...The impact of mother-infant microbiota on neurodevelopment is an area of interest,but longitudinal studies are scarce.Using a cohort of 520 families from the Jiangsu birth cohort in China,we reveal that the maternal gut microbiota during early pregnancy play a substantial role,accounting for 3.34%of the variance in offspring neurodevelopmental scores.This contribution is notably higher than the 1.24%attributed to the infants’own microbiota at 1 year of age,underscoring the significant influence of maternal gut health on early child development.Remarkably,an elevation in maternal Bifidobacterium pseudocatenulatum is linked to decreased cognitive scores,whereas an enrichment of Bifidobacterium longum at 1 year of age is associated with higher cognitive scores.Furthermore,we find that maternal B.pseudocatenulatum is linked to the heterolactic fermentation metabolic pathway,while infant B.longum is associated with the Bifidobacterium shunt pathway.In summary,our analysis implies that maternal and infant gut microbiota play a distinct role in neurodevelopment,suggesting potential strategies for improving neurodevelopmental outcomes during early pregnancy or infant development by targeting gut microbiota composition.展开更多
The acquisition,tracking,and pointing(ATP)system is widely used in target tracking,counter-UAV operations,and other related fields.As UAV technology develops,there is a growing demand to enhance the tracking capabilit...The acquisition,tracking,and pointing(ATP)system is widely used in target tracking,counter-UAV operations,and other related fields.As UAV technology develops,there is a growing demand to enhance the tracking capabilities of ATP systems.However,in practical applications,ATP systems face various design constraints and functional limitations,making it infeasible to indefinitely improve hardware performance to meet tracking requirements.As a result,tracking algorithms are required to execute increasingly complex tasks.This study introduces a multi-rate feedforward predictive controller to address issues such as low image feedback frequency and significant delays in ATP systems,which lead to tracking jitter,poor tracking performance,low precision,and target loss.At the same time,the pro-posed approach aims to improve the tracking capabilities of ATP systems for high-speed and highly maneuverable targets under conditions of low sampling feedback rates and high feedback delays.The method suggested is also characterized by its low order,fast response,and robustness to model parameter variations.In this study,an actual ATP system is built for target tracking test,and the proposed algorithm is fully validated in terms of simulation and actual system application verification.Results from both simulations and experiments demonstrate that the method effectively compensates for delays and low sampling rates.For targets with relative angular velocities ranging from 0 to 90°/s and angular accelerations between 0 and 470°/s2,the system improved tracking accuracy by 70.0%-89.9%at a sampling frequency of 50 Hz and a delay of 30 m s.Moreover,the compensation algorithm demonstrated consistent performance across actuators with varying characteristics,further confirming its robustness to model insensitivity.In summary,the proposed algorithm considerably enhances the tracking accuracy and capability of ATP systems for high-speed and highly maneuverable targets,reducing the probability of target loss from high speed.This approach offers a practical solution for future multi-target tracking across diverse operational scenarios.展开更多
Biofeedback is a behavioral intervention technology based on psychophysiology,which uses various electronic devices to collect the physiological activities of individuals in real time and provides them to themselves t...Biofeedback is a behavioral intervention technology based on psychophysiology,which uses various electronic devices to collect the physiological activities of individuals in real time and provides them to themselves through various ways,so that people can actively change their own physiological changes when they perceive the changes in some physiological functions of their own,and consciously control the physiological functions of various aspects of the autonomic nervous system within a fixed range.It can play a role in improving physical health status,preventing and treating some somatic diseases.Studies have shown that biofeedback relaxation training can make the training subjects learn to regulate their own physiological functions and psychological activities,improve negative emotional states such as depression and anxiety by regulating the body function,and can also be used to assist in the treatment of other clinical diseases.As a new psychological intervention,biofeedback relaxation training has great development potential and can be better applied to the prevention and treatment of physical and mental diseases in the general population in the future.展开更多
Accumulation of β-carotene in Dunaliella salina is highly dependent on light exposure intensity and duration,but quantitative analysis on photon numbers received per cell for triggering β-carotene accumulation is no...Accumulation of β-carotene in Dunaliella salina is highly dependent on light exposure intensity and duration,but quantitative analysis on photon numbers received per cell for triggering β-carotene accumulation is not available so far.In this study,experiment results showed that significant β-carotene accumulation occurred after at least 8 h illumination at 400 µmol photons·m-2·s-1.To quantify the average number of photons received per cell,correlations of light attenuation with light path,biomass concentration,and β-carotene content were,respectively,established using both Lambert-Beer and Cornet models,and the latter provided better simulation.Using Cornet model,average number of photons received per cell (APRPC) was calculated and proposed as a parameter for β-carotene accumulation,and constant APRPC was maintained by adjusting average irradiance based on cell concentration and carotenoids content changes during the whole induction period.It was found that once APRPC reached 0.7 µmol photons cell-1,β-carotene accumulation was triggered,and it was saturated at 9.9 µmol photons cell-1.This study showed that APRPC can be used as an important parameter to precisely simulate and control β-carotene production by D.salina.展开更多
Bursaphelenchus xylophilus,causal agent of pine wilt disease,causes extensive damage worldwide.Strate-gies are needed to inhibit population growth or block the spread of the invasive nematode to control pine wilt dis-...Bursaphelenchus xylophilus,causal agent of pine wilt disease,causes extensive damage worldwide.Strate-gies are needed to inhibit population growth or block the spread of the invasive nematode to control pine wilt dis-ease.The gene daf-8 plays crucial roles in larval develop-ment and dauer formation in Caenorhabditis elegans,but little is known about its orthologue in B.xylophilus.In the present molecular characterization and functional analysis of daf-8 in B.xylophilus(Bx-daf-8),RT-qPCR showed that the expression of Bx-daf-8 gradually increased during the embryonic stage,peaked in the second-stage juvenile(J2),then dramatically dropped in the J3,and remained at that low level for the rest of its life.Bx-daf-8-transgenic C.elegans was employed to mimic the spatiotemporal expression of Bx-daf-8,which was expressed close to the pharynx during early embryogenesis and weakly throughout the whole body during late embryogenesis.It was observed in head neurons and tail ganglions throughout all postembryonic stages.B.xylophilus embryos were severely abnormal,and hatching rate decreased sharply after Bx-daf-8 knockdown.daf-16-1 and da-f16-2,downstream genes in the IIS pathway,also dropped sharply after Bx-daf-8 knockdown.We propose that TGFβmay crosstalk with the IIS pathway upstream of Bx-daf-16 and that daf-8 may act as a master regulator of daf-16 in B.xylophilus.However,knockdown of Bx-daf-8 did not lead to constitutive developmental arrest at the dauer larval stage,indicating that dauer entry in B.xylophilus might be controlled by several genes and is more complicated than in C.elegans.Bx-daf-8 alone did not control the dauer entry in B.xylophilus,but it was indispensable for embryogen-esis,providing a potential target for suppressing population growth of B.xylophilus.展开更多
Correction to:J.For.Res.(2022)33:689–698 http://gffzzd3cc09b8251d45dfsx5opfo0x5u9f6bxu.ffgz.tsg.suse.edu.cn/10.1007/s11676-021-01335-7 In the Original Publication,the text“Acknowledgements sdfkjds”has been inadvertently appeared in the paper.The Original article ha...Correction to:J.For.Res.(2022)33:689–698 http://gffzzd3cc09b8251d45dfsx5opfo0x5u9f6bxu.ffgz.tsg.suse.edu.cn/10.1007/s11676-021-01335-7 In the Original Publication,the text“Acknowledgements sdfkjds”has been inadvertently appeared in the paper.The Original article has been corrected.展开更多
Gallbladder cancer(GBC)accounts for approximately one-third of all biliary system tumors and is one of the most aggressive and lethal malignancies[1].Combination chemotherapy and immunotherapy are the first-line treat...Gallbladder cancer(GBC)accounts for approximately one-third of all biliary system tumors and is one of the most aggressive and lethal malignancies[1].Combination chemotherapy and immunotherapy are the first-line treatments for patients with GBC who are not eligible for surgery,while the treatment outcome was not satisfactory[2].The 26S proteasome non-ATPase regulatory subunit 4(PSMD4)is a ubiquitin receptor subunit of the 26S proteasome[3].展开更多
Objective:To systematically evaluate the clinical efficacy of traditional Chinese medicine(TCM)in auxiliary treatment of grade 1 hypertension.Methods:The China National Knowledge Infrastructure,Wan Fang Data,VIP,PubMe...Objective:To systematically evaluate the clinical efficacy of traditional Chinese medicine(TCM)in auxiliary treatment of grade 1 hypertension.Methods:The China National Knowledge Infrastructure,Wan Fang Data,VIP,PubMed were searched to screen the literature of randomized controlled trials of TCM or non-drug therapies assisting conventional medicine to treat grade 1 hypertension.The search time was from the establishment of the database to October 1,2020.Revman5.3 was used for meta-analysis.Results:8 Chinese literatures were included.The results of the study showed that 24h diastolic blood pressure(DBP),24h systolic blood pressure(SBP),DBP lowering effect and TCM syndrome curative efficacy of the experimental group using TCM was better than that of the control group.However,TCM combined conventional medicine did not show an advantage on SBP lowering effect,antihypertensive efficacy rate and total clinical efficacy rate.Conclusion:TCM has a significant effect on lowering blood pressure for adjuvant treatment of grade 1 hypertension and can significantly improve clinical symptoms.展开更多
Inspired by the eccentricity design of self-driven disks,we propose a computational model to study the remarkable behavior of this kind of active matter via Langevin dynamics simulations.We pay attention to the effect...Inspired by the eccentricity design of self-driven disks,we propose a computational model to study the remarkable behavior of this kind of active matter via Langevin dynamics simulations.We pay attention to the effect of rotational friction coefficient and rotational noise on the phase behavior.A homogeneous system without rotational noise exhibits a sharp discontinuous transition of orientational order from an isotropic to a polar state with the increase of rotational friction coefficient.When there is rotational noise,the transition becomes continuous.The formation of polar state originates from the effective alignment effect due to the mutual coupling of the positional and orientational degrees of freedom of each disk.The rotational noise could weaken the alignment effect and cause the large spatial density inhomogeneity,while the translational noise homogenizes the system.Our model makes further conceptual progress on how the microscopic interaction among self-driven agents yields effective alignment.展开更多
Aberrant RNA alternative splicing in cancer generates varied novel isoforms and protein variants that facilitate cancer progression.Here,we employed the advanced long-read full-length transcriptome sequencing on gallb...Aberrant RNA alternative splicing in cancer generates varied novel isoforms and protein variants that facilitate cancer progression.Here,we employed the advanced long-read full-length transcriptome sequencing on gallbladder normal tissues,tumors,and cell lines to establish a comprehensive full-length gallbladder transcriptomic atlas.It is of note that receptor tyrosine kinases were one of the most dynamic components with highly variable transcript,with Erb-B2 receptor tyrosine kinase 2(ERBB2)as a prime representative.A novel transcript,designated ERBB2 i14e,was identified for encoding a novel functional protein,and its protein expression was elevated in gallbladder cancer and strongly associated with worse prognosis.With the regulation of splicing factors ESRP1/2,ERBB2 i14e was alternatively spliced from intron 14 and the encoded i14e peptide was proved to facilitate the interaction with ERBB3 and downstream signaling activation of AKT.ERBB2 i14e was inducible and its expression attenuated anti-ERBB2 treatment efficacy in tumor xenografts.Further studies with patient derived xenografts models validated that ERBB2 i14e blockage with antisense oligonucleotide enhanced the tumor sensitivity to trastuzumab and its drug conjugates.Overall,this study provides a gallbladder specific long-read transcriptome profile and discovers a novel mechanism of trastuzumab resistance,thus ultimately devising strategies to improve trastuzumab therapy.展开更多
Chitin,the second most abundant biopolymer on Earth,poses significant hydrolysis challenges due to its intrinsic insolubility and the stringent conditions required for its conversion to chitin oligosaccharides(COSs),w...Chitin,the second most abundant biopolymer on Earth,poses significant hydrolysis challenges due to its intrinsic insolubility and the stringent conditions required for its conversion to chitin oligosaccharides(COSs),which hold considerable industrial and biomedical potential.This study pioneers the use of deep eutectic solvents(DESs)to enhance the hydrolysis of chitin by the engineered chitinase PoChi-FnIII-ChBD(PCFC)from Penicillium oxalicum.DES,composed of hydrogen bond donors and acceptors,are noted for their low toxicity,biodegradability,and ease of preparation.Specifically,a DES synthesized from choline chloride and thiourea(ChCl-THU)significantly improved the efficiency and stability of PCFC.Under optimal conditions(40℃,pH 5.5),PCFC’s activity in 5 vol%ChCl-THU increased by 29.25%,with a 1.68-fold increase in thermal stability and a specific activity of 19.96 U/mg against insoluble chitin.This integrated approach combines chitin solubilization with enzymatic conversion,streamlining industrial processes and demonstrating DESs as sustainable media for enhanced COSs production.展开更多
Salmeterol is a long-acting β2-agonist that activates adenylate cyclase, causing long-lasting bronchodilation and has been used for many years to control asthma. However, little information is available about the imm...Salmeterol is a long-acting β2-agonist that activates adenylate cyclase, causing long-lasting bronchodilation and has been used for many years to control asthma. However, little information is available about the immunoregulatory effects of salmeterol. We found that salmeterol decreases the production of pro-inflammatory cytokines in a model of allergen-challenged mice that expressed tumor-necrosis factor-alpha, interleukin-1 and interleukin-6. Dendritic cells (DCs) are antigen-presenting cells and act as sentinels in the airway. We found that salmeterol (10-s mol/I) reduced the inflammation caused by lipopolysaccharide (0.1 pg/ml) in activated murine bone marrow-derived DCs. Moreover, western blots demonstrated that this protective effect was mediated partially by inhibiting signaling through the nuclear factor-kappa B (NF-κB), mitogen-activated protein kinase (MAPK) pathways and dramatically decreased levels of p-ERK. We suggest that salmeterol regulates the inflammation of allergen-induced asthma by modulating DCs. In conclusion, we provide evidence that DCs are the target immune cells responsible for the action of salmeterol against asthma.展开更多
This study aimed to investigate the prevalence,clinical characteristics,and prognostic impact of 1p32.3 deletion in patients with newly diagnosed multiple myeloma (MM).A retrospective analysis was conducted on 411 pat...This study aimed to investigate the prevalence,clinical characteristics,and prognostic impact of 1p32.3 deletion in patients with newly diagnosed multiple myeloma (MM).A retrospective analysis was conducted on 411 patients with newly diagnosed MM;among which,270 received bortezomib-based therapies,and 141 received thalidomide-based therapies.Fluorescence in situ hybridization (FISH) was performed to detect six cytogenetic abnormalities,namely,del(1p32.3),gain(1q21),del(17p13),del(13q14),t(4;14),and t(11;14).Results showed that 8.3% of patients with MM were detected with del(1p32.3) and had significantly more bone marrow plasma cells (P =0.025),higher β2-microglobulin levels (P =0.036),and higher lactate dehydrogenase levels (P =0.042) than those without del(1p32.3).Univariate analysis showed that patients with del(1p32.3) under thalidomide-based therapies were strongly associated with short progression-free survival (PFS) (median PFS 11.6 vs.31.2 months,P =0.002) and overall survival (OS) (median OS 16.8 vs.45.9 months,P < 0.001).Multivariate analysis revealed that del(1p32.3) remained a powerful independent factor with worse PFS (P =0.006) and OS (P =0.016) for patients under thalidomide-based treatments.Patients with del(1 p32.3) under bortezomib-based treatments tended to have short PFS and OS.In conclusion,del(1p32.3) is associated with short PFS and OS in patients with MM who received thalidomide-or bortezomib-based treatments.展开更多
Acyl-CoA synthetase long chain family member 5(ACSL5),is a member of the acyl-CoA synthetases(ACSs)family that activates long chain fatty acids by catalyzing the synthesis of fatty acyl-CoAs.The dysregulation of ACSL5...Acyl-CoA synthetase long chain family member 5(ACSL5),is a member of the acyl-CoA synthetases(ACSs)family that activates long chain fatty acids by catalyzing the synthesis of fatty acyl-CoAs.The dysregulation of ACSL5 has been reported in some cancers,such as glioma and colon cancers.However,little is known about the role of ACSL5 in acute myeloid leukemia(AML).We found that the expression of ACSL5 was higher in bone marrow cells from AML patients compared with that from healthy donors.ACSL5 level could serve as an independent prognostic predictor of the overall survival of AML patients.In AML cells,the ACSL5 knockdown inhibited cell growth both in vitro and in vivo.Mechanistically,the knockdown of ACSL5 suppressed the activation of the Wnt/β-catenin pathway by suppressing the palmitoylation modification of Wnt3a.Additionally,triacsin c,a pan-ACS family inhibitor,inhibited cell growth and robustly induced cell apoptosis when combined with ABT-199,the FDA approved BCL-2 inhibitor for AML therapy.Our results indicate that ACSL5 is a potential prognosis marker for AML and a promising pharmacological target for the treatment of molecularly stratified AML.展开更多
The use of functional nanoparticles as peroxidase-like(POD-like)catalyst has recently become a focus of research in cancer therapy.Phthalocyanine is a macrocyclic conjugated metal ligand,which is expected to achieve a...The use of functional nanoparticles as peroxidase-like(POD-like)catalyst has recently become a focus of research in cancer therapy.Phthalocyanine is a macrocyclic conjugated metal ligand,which is expected to achieve a high POD-like catalytic activity,generating free radicals and inhibiting the proliferation of cancer cells.In this paper,we synthesized phthalocyanine nanocrystals with different structures through noncovalent self-assembly confined within micro-emulsion droplets,and manganese phthalocyanine(MnPc)possessing a metal–N–C active center was used as the building block.These nano-assemblies exhibit shape-dependent POD-like catalytic activities,because the emulsifier and MnPc co-mixed assembly reduced the close packing between MnPc molecules and exposed more active sites.The assembly had a water-dispersed nanostructure,which is conducive to accumulation at tumor sites through the enhanced permeability and retention effect(EPR).Because of a highly efficient microenvironmental response,the assembly showed higher catalytic activity only emerged under the acidic tumor-like microenvironment,but caused less damage to normal tissues in biomedical applications.In vivo and in vitro catalytic therapy tests showed excellent anti-tumor effects.This work explored a new way for the application of metal–organic macromolecules such as MnPc as nanozymes for catalytic tumor therapy.展开更多
Molecular self-assembly is a natured-inspired strategy to integrate individual functional molecules into supramolecular nanostructured materials through noncovalent bond interactions for solar to fuel conversion.Howev...Molecular self-assembly is a natured-inspired strategy to integrate individual functional molecules into supramolecular nanostructured materials through noncovalent bond interactions for solar to fuel conversion.However,the design and engineering of the morphology,size,and orderly stacking of supramolecular nanostructures remain a great challenge.In this study,regular porphyrin nanocrystals with different orderly stacked structures are synthesized through noncovalent self-assembly of Pt(II)meso-tetra(4-carboxyphenyl)porphine(PtTCPP),using surfactants with different electronegativity.The synergy of noncovalent bond interactions between porphyrin molecules,and between porphyrin molecules and surfactants resulted in different molecular packing patterns.Due to the spatial ordering of PtTCPP molecules,the different nanocrystals exhibit both collective optical properties and morphology-dependent activities in photocatalytic hydrogen production.The measurements of the photodeposition of dual cocatalysts showed that the photogenerated electrons and holes selectively aggregated at different active sites,revealing separation pathways and directional transfer of photogenerated electrons and holes in the assemblies.This study provides a new strategy to exert rational control over porphyrin self-assembly nanocrystals for highly efficient water splitting.展开更多
An altered proteome in lymph nodes often suggests abnormal signaling pathways that may be associated with diverse lymphatic disorders.Current clinical biomarkers for histological classification of lymphomas have encou...An altered proteome in lymph nodes often suggests abnormal signaling pathways that may be associated with diverse lymphatic disorders.Current clinical biomarkers for histological classification of lymphomas have encountered many discrepancies,particularly for borderline cases.Therefore,we launched a comprehensive proteomic study aimed to establish a proteomic landscape of patients with various lymphatic disorders and identify proteomic variations associated with different disease subgroups.In this study,109 fresh-frozen lymph node tissues from patients with various lymphatic disorders(with a focus on Non-Hodgkin’s Lymphoma)were analyzed by data-independent acquisition mass spectrometry.A quantitative proteomic landscape was comprehensively characterized,leading to the identification of featured protein profiles for each subgroup.Potential correlations between clinical outcomes and expression profiles of signature proteins were also probed.Two representative signature proteins,phospholipid-binding proteins Annexin A6(ANXA6)and Phospholipase C Gamma 2(PLCG2),were successfully validated via immunohistochemistry.We also evaluated the capability of acquired proteomic signatures to segregate multiple lymphatic abnormalities and identified several core signature proteins,such as Sialic Acid Binding Ig Like Lectin 1(SIGLEC1)and GTPase of immunity-associated protein 5(GIMAP5).In summary,the established lympho-specific data resource provides a comprehensive map of protein expression in lymph nodes during multiple disease states,thus extending the existing human tissue proteome atlas.Our findings will be of great value in exploring protein expression and regulation underlying lymphatic malignancies,while also providing novel protein candidates to classify various lymphomas for more precise medical practice.展开更多
The Coronavirus disease is the contagious disease. Clinical manifests vary from no symptoms, upper and lower respiratory tract infections, and even severe acute respiratory distress syndrome and multiple organs failur...The Coronavirus disease is the contagious disease. Clinical manifests vary from no symptoms, upper and lower respiratory tract infections, and even severe acute respiratory distress syndrome and multiple organs failure. Recently, three of new beta-coronaviruses have emerged to cause serious and widespread illness and death, such as the Severe Acute Respiratory Syndrome Coronaviruses (SARS-CoV), Middle East Respiratory Syndrome Coronaviruses (MERS-CoV), and 2019-nCoV (the causative pathogen of Coronavirus Disease 2019 (COVID-19). The COVID-19 is continuing to spread globally. However, the detailed molecular mechanisms have not yet been fully clarified. Since the similarity of the pathological features among 2019-nCoV, SARS-CoV and MERS-CoV, we could speculate the biological features of current COVID-19 by researching those of MERS-CoV and SARS-CoV. Therefore, we analyzed expression levels of miRNA and mRNA profiles of MERS-CoV, SARS-CoV and 2019-nCoV from five public GEO datasets (Table S1). As a result, we found 16 miRNAs potentially target a group of hub genes clustering together to tune the immune response. Notably, viral RNAs have the ability to sponge miR-500a-5p and miR-501-5p, indicating viral RNAs sequestering these two miRNAs to trigger genes expression and contribute to pathogenesis. We hope this study will pave the way to better understand 2019-nCoV pathogenesis and develop the innovative therapeutics.展开更多
基金supported by the National Natural Science Foundation of China(Grant No.82373581 to Yuan Lin).
摘要Prenatal maternal psychological distress,particularly depression,has been increasingly recognized as a factor that influences fetal growth;however,its impact on early childhood development remains less well understood.The present study investigated the association between prenatal depression and children's growth trajectories,as well as the odds of overweight and obesity from 1 to 36 months,while also accounting for maternal anxiety and stress.We analyzed data from 4710 mother-child dyads in the Jiangsu Birth Cohort,assessing maternal psychological distress across trimesters and categorizing participants into groups with mild,moderate,and severe depressive symptomatology.Children's weight-for-length z-scores(WLZ)were used to assess overweight/obesity prevalence,and growth patterns were identified through trajectory models.The results from the generalized estimating equations analysis showed that greater depressive symptomatology during pregnancy was associated with a 28%to 41%increase in the odds of childhood overweight/obesity across all three trimesters,compared with mild depressive symptomatology.We identified five distinct WLZ growth trajectory patterns,and found that mothers with greater depressive symptomatology were 39%–47%more likely to have children who followed a very-high-stable growth trajectory,compared with mothers with mild depressive symptomatology.These findings highlight the significant impact of prenatal depression on adverse growth patterns and childhood overweight/obesity,underscoring the need for early intervention.
基金supported by grants from the National Natural Science Foundation of China(NSFC)to Jiafu Hu(grant no.32371892,31670652,and 31870633)Hudie Shao(grant no.32401591).
摘要Studying the reproductive system of the pine wood nematode,Bursaphelenchus xylophilus(Steiner&Buhrer)Nickle,will identify its characteristics and life cycle.This is crucial for developing more targeted control strategies.In this study,the development of the gonads and reproductive organs were observed using microscopy,gonad dissection,and DAPI staining techniques.Second-stage juveniles(J2)had gonads composed of four primordial germ cells(Z1,Z2,Z3,and Z4)that form the adult gonads by proliferation within 72 h at 25℃.There were subtle differences in somatic gonad cell morphology between males and females,which developed from Z1 and Z4 in third-stage juveniles(J3).These differences became more pronounced at fourth-stage juveniles(J4)and adult stages.Z2 and Z3 germ cells underwent mitosis and two rounds of meiosis,ultimately developing into male and female gametes.Female vulval precursor cells and male cloacal cells developed rapidly during the J4 stage.These results provide a basis for identifying the expression sites and biological functions of key genes regulating reproductive system development.Based on this,in situ hybridization and RNA interference(RNAi)were used to determine the function of the Bxy-glp-1 gene to show that it is involved in vulval formation and spermatogenesis.The results of this study will lay the foundation for disrupting critical stages in the reproduction of B.xylophilus.
基金supported by grants from the National Key Research and Development Program of China(2022YFA1303900 and 2021YFC2700705)the National Natural Science Foundation of China(82103919).
摘要The impact of mother-infant microbiota on neurodevelopment is an area of interest,but longitudinal studies are scarce.Using a cohort of 520 families from the Jiangsu birth cohort in China,we reveal that the maternal gut microbiota during early pregnancy play a substantial role,accounting for 3.34%of the variance in offspring neurodevelopmental scores.This contribution is notably higher than the 1.24%attributed to the infants’own microbiota at 1 year of age,underscoring the significant influence of maternal gut health on early child development.Remarkably,an elevation in maternal Bifidobacterium pseudocatenulatum is linked to decreased cognitive scores,whereas an enrichment of Bifidobacterium longum at 1 year of age is associated with higher cognitive scores.Furthermore,we find that maternal B.pseudocatenulatum is linked to the heterolactic fermentation metabolic pathway,while infant B.longum is associated with the Bifidobacterium shunt pathway.In summary,our analysis implies that maternal and infant gut microbiota play a distinct role in neurodevelopment,suggesting potential strategies for improving neurodevelopmental outcomes during early pregnancy or infant development by targeting gut microbiota composition.
基金supported by the National Natural Science Foun-dation of China(Grant No.52275099).
摘要The acquisition,tracking,and pointing(ATP)system is widely used in target tracking,counter-UAV operations,and other related fields.As UAV technology develops,there is a growing demand to enhance the tracking capabilities of ATP systems.However,in practical applications,ATP systems face various design constraints and functional limitations,making it infeasible to indefinitely improve hardware performance to meet tracking requirements.As a result,tracking algorithms are required to execute increasingly complex tasks.This study introduces a multi-rate feedforward predictive controller to address issues such as low image feedback frequency and significant delays in ATP systems,which lead to tracking jitter,poor tracking performance,low precision,and target loss.At the same time,the pro-posed approach aims to improve the tracking capabilities of ATP systems for high-speed and highly maneuverable targets under conditions of low sampling feedback rates and high feedback delays.The method suggested is also characterized by its low order,fast response,and robustness to model parameter variations.In this study,an actual ATP system is built for target tracking test,and the proposed algorithm is fully validated in terms of simulation and actual system application verification.Results from both simulations and experiments demonstrate that the method effectively compensates for delays and low sampling rates.For targets with relative angular velocities ranging from 0 to 90°/s and angular accelerations between 0 and 470°/s2,the system improved tracking accuracy by 70.0%-89.9%at a sampling frequency of 50 Hz and a delay of 30 m s.Moreover,the compensation algorithm demonstrated consistent performance across actuators with varying characteristics,further confirming its robustness to model insensitivity.In summary,the proposed algorithm considerably enhances the tracking accuracy and capability of ATP systems for high-speed and highly maneuverable targets,reducing the probability of target loss from high speed.This approach offers a practical solution for future multi-target tracking across diverse operational scenarios.
基金The Basic Scientific Research Project of Colleges and Universities in 2022:HRV and Brain Electrophysiological Mechanism of Electromyography Biofeedback in Improving Depression and Anxiety of College Students(Project No.:LJKMZ20221274)。
摘要Biofeedback is a behavioral intervention technology based on psychophysiology,which uses various electronic devices to collect the physiological activities of individuals in real time and provides them to themselves through various ways,so that people can actively change their own physiological changes when they perceive the changes in some physiological functions of their own,and consciously control the physiological functions of various aspects of the autonomic nervous system within a fixed range.It can play a role in improving physical health status,preventing and treating some somatic diseases.Studies have shown that biofeedback relaxation training can make the training subjects learn to regulate their own physiological functions and psychological activities,improve negative emotional states such as depression and anxiety by regulating the body function,and can also be used to assist in the treatment of other clinical diseases.As a new psychological intervention,biofeedback relaxation training has great development potential and can be better applied to the prevention and treatment of physical and mental diseases in the general population in the future.
基金supported by the Fundamental Research Funds for the Central Universities(No.DUT20RC(4) 011,and No.DUT21JC33)the Open Foundation of Key Laboratory of Industrial Ecology and Environmental Engineering,MOE(KLIEEE-19-09)the China Postdoctoral Science Foundation(No.2020M670765).
摘要Accumulation of β-carotene in Dunaliella salina is highly dependent on light exposure intensity and duration,but quantitative analysis on photon numbers received per cell for triggering β-carotene accumulation is not available so far.In this study,experiment results showed that significant β-carotene accumulation occurred after at least 8 h illumination at 400 µmol photons·m-2·s-1.To quantify the average number of photons received per cell,correlations of light attenuation with light path,biomass concentration,and β-carotene content were,respectively,established using both Lambert-Beer and Cornet models,and the latter provided better simulation.Using Cornet model,average number of photons received per cell (APRPC) was calculated and proposed as a parameter for β-carotene accumulation,and constant APRPC was maintained by adjusting average irradiance based on cell concentration and carotenoids content changes during the whole induction period.It was found that once APRPC reached 0.7 µmol photons cell-1,β-carotene accumulation was triggered,and it was saturated at 9.9 µmol photons cell-1.This study showed that APRPC can be used as an important parameter to precisely simulate and control β-carotene production by D.salina.
基金The work was supported by the National Natural Science Foundation of China(31870633,31700565,31670652,31570638 and 31270688)National Key Research and Development Plan of China(2017YFD0600102-03).
摘要Bursaphelenchus xylophilus,causal agent of pine wilt disease,causes extensive damage worldwide.Strate-gies are needed to inhibit population growth or block the spread of the invasive nematode to control pine wilt dis-ease.The gene daf-8 plays crucial roles in larval develop-ment and dauer formation in Caenorhabditis elegans,but little is known about its orthologue in B.xylophilus.In the present molecular characterization and functional analysis of daf-8 in B.xylophilus(Bx-daf-8),RT-qPCR showed that the expression of Bx-daf-8 gradually increased during the embryonic stage,peaked in the second-stage juvenile(J2),then dramatically dropped in the J3,and remained at that low level for the rest of its life.Bx-daf-8-transgenic C.elegans was employed to mimic the spatiotemporal expression of Bx-daf-8,which was expressed close to the pharynx during early embryogenesis and weakly throughout the whole body during late embryogenesis.It was observed in head neurons and tail ganglions throughout all postembryonic stages.B.xylophilus embryos were severely abnormal,and hatching rate decreased sharply after Bx-daf-8 knockdown.daf-16-1 and da-f16-2,downstream genes in the IIS pathway,also dropped sharply after Bx-daf-8 knockdown.We propose that TGFβmay crosstalk with the IIS pathway upstream of Bx-daf-16 and that daf-8 may act as a master regulator of daf-16 in B.xylophilus.However,knockdown of Bx-daf-8 did not lead to constitutive developmental arrest at the dauer larval stage,indicating that dauer entry in B.xylophilus might be controlled by several genes and is more complicated than in C.elegans.Bx-daf-8 alone did not control the dauer entry in B.xylophilus,but it was indispensable for embryogen-esis,providing a potential target for suppressing population growth of B.xylophilus.
摘要Correction to:J.For.Res.(2022)33:689–698 http://gffzzd3cc09b8251d45dfsx5opfo0x5u9f6bxu.ffgz.tsg.suse.edu.cn/10.1007/s11676-021-01335-7 In the Original Publication,the text“Acknowledgements sdfkjds”has been inadvertently appeared in the paper.The Original article has been corrected.
基金supported by the National Natural Science Foundation of Shanghai(25ZR1401306)the National Natural Science Foundation of China(82573655 and 82473010)the Shanghai Excellent Academic Leaders Program(2024DFYCKJPT_XDM).
摘要Gallbladder cancer(GBC)accounts for approximately one-third of all biliary system tumors and is one of the most aggressive and lethal malignancies[1].Combination chemotherapy and immunotherapy are the first-line treatments for patients with GBC who are not eligible for surgery,while the treatment outcome was not satisfactory[2].The 26S proteasome non-ATPase regulatory subunit 4(PSMD4)is a ubiquitin receptor subunit of the 26S proteasome[3].
摘要Objective:To systematically evaluate the clinical efficacy of traditional Chinese medicine(TCM)in auxiliary treatment of grade 1 hypertension.Methods:The China National Knowledge Infrastructure,Wan Fang Data,VIP,PubMed were searched to screen the literature of randomized controlled trials of TCM or non-drug therapies assisting conventional medicine to treat grade 1 hypertension.The search time was from the establishment of the database to October 1,2020.Revman5.3 was used for meta-analysis.Results:8 Chinese literatures were included.The results of the study showed that 24h diastolic blood pressure(DBP),24h systolic blood pressure(SBP),DBP lowering effect and TCM syndrome curative efficacy of the experimental group using TCM was better than that of the control group.However,TCM combined conventional medicine did not show an advantage on SBP lowering effect,antihypertensive efficacy rate and total clinical efficacy rate.Conclusion:TCM has a significant effect on lowering blood pressure for adjuvant treatment of grade 1 hypertension and can significantly improve clinical symptoms.
基金Project supported by the National Natural Science Foundation of China(Grant Nos.21674078,21774091,and 21574096).
摘要Inspired by the eccentricity design of self-driven disks,we propose a computational model to study the remarkable behavior of this kind of active matter via Langevin dynamics simulations.We pay attention to the effect of rotational friction coefficient and rotational noise on the phase behavior.A homogeneous system without rotational noise exhibits a sharp discontinuous transition of orientational order from an isotropic to a polar state with the increase of rotational friction coefficient.When there is rotational noise,the transition becomes continuous.The formation of polar state originates from the effective alignment effect due to the mutual coupling of the positional and orientational degrees of freedom of each disk.The rotational noise could weaken the alignment effect and cause the large spatial density inhomogeneity,while the translational noise homogenizes the system.Our model makes further conceptual progress on how the microscopic interaction among self-driven agents yields effective alignment.
基金supported by grants from National Natural Science Foundation of China(No.32130036,82403148,82303937,82073206)Shanghai Shenkang Clinical Technology Innovation Project(No.SHDC12021101)+8 种基金Basic Research Project of Science and Technology Commission of Shanghai Municipality(No.20JC1419100)National Key Research and Development Program of China(No.2021YFE0203300)Science and Technology Innovation Action Plan Technical Standards Project of Science and Technology Commission of Shanghai Municipality(23DZ2202800)Cooperative Research Projects of Shanghai Jiao Tong University(2022LHA13)Major Science and Technology R&D Project of the Science and Technology Department of Jiangxi Province(20213AAG01013)Shanghai Outstanding Academic Leader(23XD1450700),Shanghai Rising-Star Program(23QA1408500)Young Talents Project of Shanghai Municipal Health Commission(2022YQ061)Shanghai Municipal Health Commission health Industry clinical research special project(No.20224Z0014)the Shuguang Program of Shanghai Education Development Foundation and Shanghai Municipal Education Commission(No.20SG14).
摘要Aberrant RNA alternative splicing in cancer generates varied novel isoforms and protein variants that facilitate cancer progression.Here,we employed the advanced long-read full-length transcriptome sequencing on gallbladder normal tissues,tumors,and cell lines to establish a comprehensive full-length gallbladder transcriptomic atlas.It is of note that receptor tyrosine kinases were one of the most dynamic components with highly variable transcript,with Erb-B2 receptor tyrosine kinase 2(ERBB2)as a prime representative.A novel transcript,designated ERBB2 i14e,was identified for encoding a novel functional protein,and its protein expression was elevated in gallbladder cancer and strongly associated with worse prognosis.With the regulation of splicing factors ESRP1/2,ERBB2 i14e was alternatively spliced from intron 14 and the encoded i14e peptide was proved to facilitate the interaction with ERBB3 and downstream signaling activation of AKT.ERBB2 i14e was inducible and its expression attenuated anti-ERBB2 treatment efficacy in tumor xenografts.Further studies with patient derived xenografts models validated that ERBB2 i14e blockage with antisense oligonucleotide enhanced the tumor sensitivity to trastuzumab and its drug conjugates.Overall,this study provides a gallbladder specific long-read transcriptome profile and discovers a novel mechanism of trastuzumab resistance,thus ultimately devising strategies to improve trastuzumab therapy.
基金supported by the Project of the Natural Science Foundation of Hunan Province(project number:2022JJ30299)the Project of the Natural Science Foundation of Hunan Province(project number:2022JJ30290).
摘要Chitin,the second most abundant biopolymer on Earth,poses significant hydrolysis challenges due to its intrinsic insolubility and the stringent conditions required for its conversion to chitin oligosaccharides(COSs),which hold considerable industrial and biomedical potential.This study pioneers the use of deep eutectic solvents(DESs)to enhance the hydrolysis of chitin by the engineered chitinase PoChi-FnIII-ChBD(PCFC)from Penicillium oxalicum.DES,composed of hydrogen bond donors and acceptors,are noted for their low toxicity,biodegradability,and ease of preparation.Specifically,a DES synthesized from choline chloride and thiourea(ChCl-THU)significantly improved the efficiency and stability of PCFC.Under optimal conditions(40℃,pH 5.5),PCFC’s activity in 5 vol%ChCl-THU increased by 29.25%,with a 1.68-fold increase in thermal stability and a specific activity of 19.96 U/mg against insoluble chitin.This integrated approach combines chitin solubilization with enzymatic conversion,streamlining industrial processes and demonstrating DESs as sustainable media for enhanced COSs production.
摘要Salmeterol is a long-acting β2-agonist that activates adenylate cyclase, causing long-lasting bronchodilation and has been used for many years to control asthma. However, little information is available about the immunoregulatory effects of salmeterol. We found that salmeterol decreases the production of pro-inflammatory cytokines in a model of allergen-challenged mice that expressed tumor-necrosis factor-alpha, interleukin-1 and interleukin-6. Dendritic cells (DCs) are antigen-presenting cells and act as sentinels in the airway. We found that salmeterol (10-s mol/I) reduced the inflammation caused by lipopolysaccharide (0.1 pg/ml) in activated murine bone marrow-derived DCs. Moreover, western blots demonstrated that this protective effect was mediated partially by inhibiting signaling through the nuclear factor-kappa B (NF-κB), mitogen-activated protein kinase (MAPK) pathways and dramatically decreased levels of p-ERK. We suggest that salmeterol regulates the inflammation of allergen-induced asthma by modulating DCs. In conclusion, we provide evidence that DCs are the target immune cells responsible for the action of salmeterol against asthma.
基金We would like to thank the patients who donated multiple myeloma specimens.This work was partially supported by the National Natural Science Foundation of China(Nos.81400080 and 81470305)Leukemia Research Innovation Team of Zhejiang Province(No.2011R50015).
摘要This study aimed to investigate the prevalence,clinical characteristics,and prognostic impact of 1p32.3 deletion in patients with newly diagnosed multiple myeloma (MM).A retrospective analysis was conducted on 411 patients with newly diagnosed MM;among which,270 received bortezomib-based therapies,and 141 received thalidomide-based therapies.Fluorescence in situ hybridization (FISH) was performed to detect six cytogenetic abnormalities,namely,del(1p32.3),gain(1q21),del(17p13),del(13q14),t(4;14),and t(11;14).Results showed that 8.3% of patients with MM were detected with del(1p32.3) and had significantly more bone marrow plasma cells (P =0.025),higher β2-microglobulin levels (P =0.036),and higher lactate dehydrogenase levels (P =0.042) than those without del(1p32.3).Univariate analysis showed that patients with del(1p32.3) under thalidomide-based therapies were strongly associated with short progression-free survival (PFS) (median PFS 11.6 vs.31.2 months,P =0.002) and overall survival (OS) (median OS 16.8 vs.45.9 months,P < 0.001).Multivariate analysis revealed that del(1p32.3) remained a powerful independent factor with worse PFS (P =0.006) and OS (P =0.016) for patients under thalidomide-based treatments.Patients with del(1 p32.3) under bortezomib-based treatments tended to have short PFS and OS.In conclusion,del(1p32.3) is associated with short PFS and OS in patients with MM who received thalidomide-or bortezomib-based treatments.
基金supported by the key international cooperation projects of the National Natural Science Foundation of China(No.81820108004)the major projects of the Zhejiang Provincial Department of Science and Technology(No.2021C03123)the Pediatric Leukemia Diagnosis and Therapeutic Technology Research Center of Zhejiang Province(No.JBZX-201904).
摘要Acyl-CoA synthetase long chain family member 5(ACSL5),is a member of the acyl-CoA synthetases(ACSs)family that activates long chain fatty acids by catalyzing the synthesis of fatty acyl-CoAs.The dysregulation of ACSL5 has been reported in some cancers,such as glioma and colon cancers.However,little is known about the role of ACSL5 in acute myeloid leukemia(AML).We found that the expression of ACSL5 was higher in bone marrow cells from AML patients compared with that from healthy donors.ACSL5 level could serve as an independent prognostic predictor of the overall survival of AML patients.In AML cells,the ACSL5 knockdown inhibited cell growth both in vitro and in vivo.Mechanistically,the knockdown of ACSL5 suppressed the activation of the Wnt/β-catenin pathway by suppressing the palmitoylation modification of Wnt3a.Additionally,triacsin c,a pan-ACS family inhibitor,inhibited cell growth and robustly induced cell apoptosis when combined with ABT-199,the FDA approved BCL-2 inhibitor for AML therapy.Our results indicate that ACSL5 is a potential prognosis marker for AML and a promising pharmacological target for the treatment of molecularly stratified AML.
基金the National Natural Science Foundation of China(Nos.21771055 and U1604139)the Zhongyuan High Level Talents Special Support Plan(No.204200510010)the Scientific and Technological Innovation Team in University of Henan Province(No.20IRTSTHN001).J.Wang was supported by Henan University to visit the University of Waterloo.
摘要The use of functional nanoparticles as peroxidase-like(POD-like)catalyst has recently become a focus of research in cancer therapy.Phthalocyanine is a macrocyclic conjugated metal ligand,which is expected to achieve a high POD-like catalytic activity,generating free radicals and inhibiting the proliferation of cancer cells.In this paper,we synthesized phthalocyanine nanocrystals with different structures through noncovalent self-assembly confined within micro-emulsion droplets,and manganese phthalocyanine(MnPc)possessing a metal–N–C active center was used as the building block.These nano-assemblies exhibit shape-dependent POD-like catalytic activities,because the emulsifier and MnPc co-mixed assembly reduced the close packing between MnPc molecules and exposed more active sites.The assembly had a water-dispersed nanostructure,which is conducive to accumulation at tumor sites through the enhanced permeability and retention effect(EPR).Because of a highly efficient microenvironmental response,the assembly showed higher catalytic activity only emerged under the acidic tumor-like microenvironment,but caused less damage to normal tissues in biomedical applications.In vivo and in vitro catalytic therapy tests showed excellent anti-tumor effects.This work explored a new way for the application of metal–organic macromolecules such as MnPc as nanozymes for catalytic tumor therapy.
基金supported by the National Natural Science Foundation of China(Nos.21771055,U21A2085,and U1604139)the Zhongyuan High Level Talents Special Support Plan(No.204200510010)+1 种基金the Scientific and Technological Innovation Team in University of Henan Province(No.20IRTSTHN001)Science and Technique Foundation of Henan Province(No.222102310544).
摘要Molecular self-assembly is a natured-inspired strategy to integrate individual functional molecules into supramolecular nanostructured materials through noncovalent bond interactions for solar to fuel conversion.However,the design and engineering of the morphology,size,and orderly stacking of supramolecular nanostructures remain a great challenge.In this study,regular porphyrin nanocrystals with different orderly stacked structures are synthesized through noncovalent self-assembly of Pt(II)meso-tetra(4-carboxyphenyl)porphine(PtTCPP),using surfactants with different electronegativity.The synergy of noncovalent bond interactions between porphyrin molecules,and between porphyrin molecules and surfactants resulted in different molecular packing patterns.Due to the spatial ordering of PtTCPP molecules,the different nanocrystals exhibit both collective optical properties and morphology-dependent activities in photocatalytic hydrogen production.The measurements of the photodeposition of dual cocatalysts showed that the photogenerated electrons and holes selectively aggregated at different active sites,revealing separation pathways and directional transfer of photogenerated electrons and holes in the assemblies.This study provides a new strategy to exert rational control over porphyrin self-assembly nanocrystals for highly efficient water splitting.
基金This study was approved by Research Ethics Committee of the First Affiliated Hospital,College of Medicine,Zhejiang University(2018-920).
摘要An altered proteome in lymph nodes often suggests abnormal signaling pathways that may be associated with diverse lymphatic disorders.Current clinical biomarkers for histological classification of lymphomas have encountered many discrepancies,particularly for borderline cases.Therefore,we launched a comprehensive proteomic study aimed to establish a proteomic landscape of patients with various lymphatic disorders and identify proteomic variations associated with different disease subgroups.In this study,109 fresh-frozen lymph node tissues from patients with various lymphatic disorders(with a focus on Non-Hodgkin’s Lymphoma)were analyzed by data-independent acquisition mass spectrometry.A quantitative proteomic landscape was comprehensively characterized,leading to the identification of featured protein profiles for each subgroup.Potential correlations between clinical outcomes and expression profiles of signature proteins were also probed.Two representative signature proteins,phospholipid-binding proteins Annexin A6(ANXA6)and Phospholipase C Gamma 2(PLCG2),were successfully validated via immunohistochemistry.We also evaluated the capability of acquired proteomic signatures to segregate multiple lymphatic abnormalities and identified several core signature proteins,such as Sialic Acid Binding Ig Like Lectin 1(SIGLEC1)and GTPase of immunity-associated protein 5(GIMAP5).In summary,the established lympho-specific data resource provides a comprehensive map of protein expression in lymph nodes during multiple disease states,thus extending the existing human tissue proteome atlas.Our findings will be of great value in exploring protein expression and regulation underlying lymphatic malignancies,while also providing novel protein candidates to classify various lymphomas for more precise medical practice.
摘要The Coronavirus disease is the contagious disease. Clinical manifests vary from no symptoms, upper and lower respiratory tract infections, and even severe acute respiratory distress syndrome and multiple organs failure. Recently, three of new beta-coronaviruses have emerged to cause serious and widespread illness and death, such as the Severe Acute Respiratory Syndrome Coronaviruses (SARS-CoV), Middle East Respiratory Syndrome Coronaviruses (MERS-CoV), and 2019-nCoV (the causative pathogen of Coronavirus Disease 2019 (COVID-19). The COVID-19 is continuing to spread globally. However, the detailed molecular mechanisms have not yet been fully clarified. Since the similarity of the pathological features among 2019-nCoV, SARS-CoV and MERS-CoV, we could speculate the biological features of current COVID-19 by researching those of MERS-CoV and SARS-CoV. Therefore, we analyzed expression levels of miRNA and mRNA profiles of MERS-CoV, SARS-CoV and 2019-nCoV from five public GEO datasets (Table S1). As a result, we found 16 miRNAs potentially target a group of hub genes clustering together to tune the immune response. Notably, viral RNAs have the ability to sponge miR-500a-5p and miR-501-5p, indicating viral RNAs sequestering these two miRNAs to trigger genes expression and contribute to pathogenesis. We hope this study will pave the way to better understand 2019-nCoV pathogenesis and develop the innovative therapeutics.