Thrombotic thrombocytopenic purpura(TTP) is a rare hematological disorder classically characterized by a triad of symptoms: thrombocytopenia, microangiopathic hemolytic anemia, and neurological impairment. The presenc...Thrombotic thrombocytopenic purpura(TTP) is a rare hematological disorder classically characterized by a triad of symptoms: thrombocytopenia, microangiopathic hemolytic anemia, and neurological impairment. The presence of fever and renal injury, together with the triad, constitute the less common but classic pentad. Secondary TTPs, particularly infection-associated TTPs, are even rarer.[1] Herein, we report a case of secondary TTP following a severe infection.展开更多
The burgeoning growth in electric vehicles and portable energy storage systems necessitates advances in the energy density and cost-effectiveness of lithium-ion batteries(LIBs),areas where lithium-rich manganese-based...The burgeoning growth in electric vehicles and portable energy storage systems necessitates advances in the energy density and cost-effectiveness of lithium-ion batteries(LIBs),areas where lithium-rich manganese-based oxide(LLO)materials naturally stand out.Despite their inherent advantages,these materials encounter significant practical hurdles,including low initial Coulombic efficiency(ICE),diminished cycleate performance,and voltage fading during cycling,hindering their widespread adoption.In response,we introduce an ionic-electronic dual-conductive(IEDC)surface control strategy that integrates an electronically conductive graphene framework with an ionically conductive heteroepitaxial spinel Li4Mn5O12layer.Prolonged electrochemical and structural analyses demonstrate that this IEDC heterostructure effectively minimizes polarization,mitigates structural distortion,and enhances electronic/ionic diffusion.Density functional theory calculations highlight an extensive Li+percolation network and lower Li+migration energies at the layered-spinel interface.The designed LLO cathode with IEDC interface engineering(LMOSG)exhibits improved ICE(82.9%at 0.1 C),elevated initial discharge capacity(296.7 mAh g-1at 0.1 C),exceptional rate capability(176.5 mAh g-1at 5 C),and outstanding cycle stability(73.7%retention at 5 C after 500 cycles).These findings and the novel dual-conductive surface architecture design offer promising directions for advancing highperformance electrode materials.展开更多
The inherent low immunogenicity and immunosuppressive metabolism of solid tumors significantly attenuate the immunotherapeutic effect and restrict the immune response.In this work,an endoplasmic reticulum(ER)targeting...The inherent low immunogenicity and immunosuppressive metabolism of solid tumors significantly attenuate the immunotherapeutic effect and restrict the immune response.In this work,an endoplasmic reticulum(ER)targeting photodynamic oxidizer(designated as PhotoOx)is fabricated to boost the antitumor immunity by integrating photodynamic therapy(PDT)induced immunogenic cell death(ICD)with indoleamine 2,3-dioxygenase 1(IDO1)inhibition.Among which,an ER targeting photosensitizer-peptide conjugate called PhotoPe is rationally designed for optimal functionality and amphiphilicity,which could self-assemble into nano-micelles co-delivering chlorin e6 and NLG919.PhotoOx exhibits a good stability to enable ER targeting drug delivery,which could induce ER rupture to intensify PDT induced ICD and release damage associated molecular patterns(DAMPs).Furthermore,PhotoOx could effectively initiate immunological cascades,leading to the suppression of regulatory T cells(Tregs)and activation of CD8+T cells when combines with IDO inhibition.Furthermore,the multi-synergistic effects of PhotoOx activate a robust systemic anti-tumor immune response,resulting in the eradication of lung and liver metastases.Such a medication strategy might inspire the rational design of biomedicine for precise drug delivery,which also provides a sophisticated mechanism for addressing the challenges of solid tumor treatment.展开更多
Lignin is an aromatic polymer that provides the necessary mechanical strength for the transport of water and nutrients in higher plants.Lignin biosynthesis and accumulation affect growth and development of tea plants....Lignin is an aromatic polymer that provides the necessary mechanical strength for the transport of water and nutrients in higher plants.Lignin biosynthesis and accumulation affect growth and development of tea plants.The degree of lignification related to the tenderness of fresh tea leaves determines the quality of tea.WRKY transcription factors play central roles in plant development and physiological processes.However,the roles of WRKY transcription factors in lignin biosynthesis of tea plants remain unclear.In this study,a WRKY gene,CsWRKY13,was cloned from tea plant'Longjing 43'.The open reading frame(ORF)of CsWRKY13 gene was 708 bp,encoding 235 amino acids.Sequence analysis showed that CsWRKY13 contained a conserved WRKYGQK amino acid sequence and a zinc-finger-like motif CX4CX23HXH.Subcellular localization showed that CsWRKY13 was localized in the nucleus.The yeast trans-activation assay showed that CsWRKY13 had no transcriptional activity.Expression analysis showed that the CsWRKY13 gene was highly expressed in the stem.Overexpression of CsWRKY13 in Arabidopsis thaliana reduced lignin content and the expression levels of genes related to lignin biosynthesis in transgenic plants.Most flavonoids pathway related genes were significantly up-regulated.This study shows that CsWRKY13 might function as a negative regulator in regulation of lignin synthesis.展开更多
BACKGROUND The occurrence of Streptococcus pneumoniae-associated hemolytic uremic syndrome(SP-HUS)is increasing.Thomsen-Friedenreich antigen activation is highly involved in the pathogenesis of SP-HUS,and T-antibody-n...BACKGROUND The occurrence of Streptococcus pneumoniae-associated hemolytic uremic syndrome(SP-HUS)is increasing.Thomsen-Friedenreich antigen activation is highly involved in the pathogenesis of SP-HUS,and T-antibody-negative plasma exchange(PE)may be effective in the treatment of severe cases of SP-HUS.CASE SUMMARY We retrospectively reviewed two pediatric patients with SP-HUS.Both clinical features and laboratory examination results of the children were described.Tantibody-negative PE was performed in both cases.Both children made a full recovery after repeated PE and remained well at a 2 year follow-up.CONCLUSION Streptococcal pneumonia continues to be an uncommon but important cause of HUS.The successful treatment of the presented cases suggests that T-antibodynegative PE may benefit patients with SP-HUS.展开更多
Dear Editor,Tea plant[Camellia sinensis nL.)O.Kuntze]is an important woody economic crop.Tea is a widely popular nonalcoholic beverage,with~2 billion cups consumed worldwide daily.It is renowned for its unique flavor ...Dear Editor,Tea plant[Camellia sinensis nL.)O.Kuntze]is an important woody economic crop.Tea is a widely popular nonalcoholic beverage,with~2 billion cups consumed worldwide daily.It is renowned for its unique flavor and numerous health benefits[1].Tea leaves are rich in characteristic metabolites that benefit human health,including tea polyphenols,theanine,and caffeine.Catechins(flavan-3-ols)constitute~70%of tea polyphenols and are the main bioactive compounds in tea.It is crucial to the sensory quality of tea and has many pharmacological effects including antidiabetes and cancer prevention[2].Catechins are mainly divided into cis-catechins[epicatechin(EC),epigallocatechin(EGC),epicatechin gallate(ECG),epigallocatechin gallate(EGCG)]and trans-catechins[catechin(C),gallocatechin(GC),catechin gallate(CG),gallocatechin gallate(GCG)].展开更多
Root tips are the main components of absorptive fine roots,but their seasonal dynamics and relationship to environmental factors remain unclear due to the difficulties in methodology.In this study,we explored the temp...Root tips are the main components of absorptive fine roots,but their seasonal dynamics and relationship to environmental factors remain unclear due to the difficulties in methodology.In this study,we explored the temporal patterns of root-tip production and mortality in monoculture plantations of five temperate tree species at a common site in northeastern China,and identified the general environmental controls on such processes.We made monthly in-situ assessments of root tip length(RTL)production and mortality in two hardwood and three coniferous species with a minirhizotron(MR)method during the growing seasons of 2008 and 2009.Air temperature,rainfall,soil temperature and water content at 10 cm depth were determined concurrently.RTL production in all species exhibited consistent peaks in summer(June–August)in two growing seasons.RTL mortality showed substantial interannual and interspecific variability,with peaks in autumn and winter in 2008,but various patterns in 2009.RTL production positively correlated with monthly soil and air temperature across all species,and with monthly rainfall in three coniferous species.However,there was no significant correlation between RTL production and soil water content.By contrast,RTL mortality was weakly related to environmental factors,showing positive correlations with soil temperature in Korean spruce,and with rainfall in Korean pine and Korean spruce.Our findings suggest that the seasonal patterns of RTL production are convergent across the five temperate tree species due to the overlapped distribution of heat and rainfall,which can conduce roots to maximizing the acquisition of nutrient resources in the soil.展开更多
摘要Thrombotic thrombocytopenic purpura(TTP) is a rare hematological disorder classically characterized by a triad of symptoms: thrombocytopenia, microangiopathic hemolytic anemia, and neurological impairment. The presence of fever and renal injury, together with the triad, constitute the less common but classic pentad. Secondary TTPs, particularly infection-associated TTPs, are even rarer.[1] Herein, we report a case of secondary TTP following a severe infection.
基金National Natural Science Foundation of China,Grant/Award Numbers:22179008,21875022Yibin“Jie Bang Gua Shuai”,Grant/Award Number:2022JB004+2 种基金Beijing Nova Program,Grant/Award Number:20230484241Postdoctoral Fellowship Program of CPSF,Grant/Award Number:GZB20230931Special Support of Chongqing Postdoctoral Research Project,Grant/Award Number:2023CQBSHTB2041。
摘要The burgeoning growth in electric vehicles and portable energy storage systems necessitates advances in the energy density and cost-effectiveness of lithium-ion batteries(LIBs),areas where lithium-rich manganese-based oxide(LLO)materials naturally stand out.Despite their inherent advantages,these materials encounter significant practical hurdles,including low initial Coulombic efficiency(ICE),diminished cycleate performance,and voltage fading during cycling,hindering their widespread adoption.In response,we introduce an ionic-electronic dual-conductive(IEDC)surface control strategy that integrates an electronically conductive graphene framework with an ionically conductive heteroepitaxial spinel Li4Mn5O12layer.Prolonged electrochemical and structural analyses demonstrate that this IEDC heterostructure effectively minimizes polarization,mitigates structural distortion,and enhances electronic/ionic diffusion.Density functional theory calculations highlight an extensive Li+percolation network and lower Li+migration energies at the layered-spinel interface.The designed LLO cathode with IEDC interface engineering(LMOSG)exhibits improved ICE(82.9%at 0.1 C),elevated initial discharge capacity(296.7 mAh g-1at 0.1 C),exceptional rate capability(176.5 mAh g-1at 5 C),and outstanding cycle stability(73.7%retention at 5 C after 500 cycles).These findings and the novel dual-conductive surface architecture design offer promising directions for advancing highperformance electrode materials.
基金supported by the National Natural Science Foundation of China(No.32371394)the National Key R&D Program of China(No.2021YFD1800600)+3 种基金the Special Projects in Key Areas of Colleges and Universities in Guangdong Province(No.2022ZDZX2046)the Open Project of State Key Laboratory of Respiratory Disease(No.SKLRD-OP-202502)the Postdoctoral Fellowship Program of CPSF(No.GZC20230619)Postdoctoral startup funding of Guangzhou Medical University(No.Q0301–130)。
摘要The inherent low immunogenicity and immunosuppressive metabolism of solid tumors significantly attenuate the immunotherapeutic effect and restrict the immune response.In this work,an endoplasmic reticulum(ER)targeting photodynamic oxidizer(designated as PhotoOx)is fabricated to boost the antitumor immunity by integrating photodynamic therapy(PDT)induced immunogenic cell death(ICD)with indoleamine 2,3-dioxygenase 1(IDO1)inhibition.Among which,an ER targeting photosensitizer-peptide conjugate called PhotoPe is rationally designed for optimal functionality and amphiphilicity,which could self-assemble into nano-micelles co-delivering chlorin e6 and NLG919.PhotoOx exhibits a good stability to enable ER targeting drug delivery,which could induce ER rupture to intensify PDT induced ICD and release damage associated molecular patterns(DAMPs).Furthermore,PhotoOx could effectively initiate immunological cascades,leading to the suppression of regulatory T cells(Tregs)and activation of CD8+T cells when combines with IDO inhibition.Furthermore,the multi-synergistic effects of PhotoOx activate a robust systemic anti-tumor immune response,resulting in the eradication of lung and liver metastases.Such a medication strategy might inspire the rational design of biomedicine for precise drug delivery,which also provides a sophisticated mechanism for addressing the challenges of solid tumor treatment.
基金the Jiangsu Agricultural Science and Technology Innovation Fund(JASTIF,CX(20)3114)National Natural Science Foundation of China(31870681)Priority Academic Program Development of Jiangsu Higher Education Institutions(PAPD).
摘要Lignin is an aromatic polymer that provides the necessary mechanical strength for the transport of water and nutrients in higher plants.Lignin biosynthesis and accumulation affect growth and development of tea plants.The degree of lignification related to the tenderness of fresh tea leaves determines the quality of tea.WRKY transcription factors play central roles in plant development and physiological processes.However,the roles of WRKY transcription factors in lignin biosynthesis of tea plants remain unclear.In this study,a WRKY gene,CsWRKY13,was cloned from tea plant'Longjing 43'.The open reading frame(ORF)of CsWRKY13 gene was 708 bp,encoding 235 amino acids.Sequence analysis showed that CsWRKY13 contained a conserved WRKYGQK amino acid sequence and a zinc-finger-like motif CX4CX23HXH.Subcellular localization showed that CsWRKY13 was localized in the nucleus.The yeast trans-activation assay showed that CsWRKY13 had no transcriptional activity.Expression analysis showed that the CsWRKY13 gene was highly expressed in the stem.Overexpression of CsWRKY13 in Arabidopsis thaliana reduced lignin content and the expression levels of genes related to lignin biosynthesis in transgenic plants.Most flavonoids pathway related genes were significantly up-regulated.This study shows that CsWRKY13 might function as a negative regulator in regulation of lignin synthesis.
摘要BACKGROUND The occurrence of Streptococcus pneumoniae-associated hemolytic uremic syndrome(SP-HUS)is increasing.Thomsen-Friedenreich antigen activation is highly involved in the pathogenesis of SP-HUS,and T-antibody-negative plasma exchange(PE)may be effective in the treatment of severe cases of SP-HUS.CASE SUMMARY We retrospectively reviewed two pediatric patients with SP-HUS.Both clinical features and laboratory examination results of the children were described.Tantibody-negative PE was performed in both cases.Both children made a full recovery after repeated PE and remained well at a 2 year follow-up.CONCLUSION Streptococcal pneumonia continues to be an uncommon but important cause of HUS.The successful treatment of the presented cases suggests that T-antibodynegative PE may benefit patients with SP-HUS.
基金supported by the Jiangsu Province Graduate Research and Practice Innovation Plan(KYCX23_0797)the Priority Academic Program Development of Jiangsu Higher Education Institutions Project(PAPD).
摘要Dear Editor,Tea plant[Camellia sinensis nL.)O.Kuntze]is an important woody economic crop.Tea is a widely popular nonalcoholic beverage,with~2 billion cups consumed worldwide daily.It is renowned for its unique flavor and numerous health benefits[1].Tea leaves are rich in characteristic metabolites that benefit human health,including tea polyphenols,theanine,and caffeine.Catechins(flavan-3-ols)constitute~70%of tea polyphenols and are the main bioactive compounds in tea.It is crucial to the sensory quality of tea and has many pharmacological effects including antidiabetes and cancer prevention[2].Catechins are mainly divided into cis-catechins[epicatechin(EC),epigallocatechin(EGC),epicatechin gallate(ECG),epigallocatechin gallate(EGCG)]and trans-catechins[catechin(C),gallocatechin(GC),catechin gallate(CG),gallocatechin gallate(GCG)].
基金supported by the National Natural Science Foundation of China(32071749)。
摘要Root tips are the main components of absorptive fine roots,but their seasonal dynamics and relationship to environmental factors remain unclear due to the difficulties in methodology.In this study,we explored the temporal patterns of root-tip production and mortality in monoculture plantations of five temperate tree species at a common site in northeastern China,and identified the general environmental controls on such processes.We made monthly in-situ assessments of root tip length(RTL)production and mortality in two hardwood and three coniferous species with a minirhizotron(MR)method during the growing seasons of 2008 and 2009.Air temperature,rainfall,soil temperature and water content at 10 cm depth were determined concurrently.RTL production in all species exhibited consistent peaks in summer(June–August)in two growing seasons.RTL mortality showed substantial interannual and interspecific variability,with peaks in autumn and winter in 2008,but various patterns in 2009.RTL production positively correlated with monthly soil and air temperature across all species,and with monthly rainfall in three coniferous species.However,there was no significant correlation between RTL production and soil water content.By contrast,RTL mortality was weakly related to environmental factors,showing positive correlations with soil temperature in Korean spruce,and with rainfall in Korean pine and Korean spruce.Our findings suggest that the seasonal patterns of RTL production are convergent across the five temperate tree species due to the overlapped distribution of heat and rainfall,which can conduce roots to maximizing the acquisition of nutrient resources in the soil.