Adult neurogenesis is a highly dynamic process that leads to the production of new neurons from a population of quiescent neural stem cells(NSCs).In response to specific endogenous and/or external stimuli,NSCs enter a...Adult neurogenesis is a highly dynamic process that leads to the production of new neurons from a population of quiescent neural stem cells(NSCs).In response to specific endogenous and/or external stimuli,NSCs enter a state of mitotic activation,initiating proliferation and differentiation pathways.Throughout this process,NSCs give rise to neural progenitors,which undergo multiple replicative and differentiative steps,each governed by precise molecular pathways that coordinate cellular changes and signals from the surrounding neurogenic niche.展开更多
Neural stem cells(NSCs)and glioblastoma stem cells(GSCs)share a complex regulatory landscape in which cholinergic signaling plays a pivotal role in both neural development and tumor progression.While acetylcholine(ACh...Neural stem cells(NSCs)and glioblastoma stem cells(GSCs)share a complex regulatory landscape in which cholinergic signaling plays a pivotal role in both neural development and tumor progression.While acetylcholine(ACh)regulates NSC quiescence and differentiation within neurogenic niches,glioblastoma cells exploit th ese pathways to enhance their adaptability and invasiveness.The involvement of muscarinic(M3)and nicotinic(α7)receptors in both cell types suggests that glioblastoma retains neural progenitor-like traits,contributing to its plasticity and resilience.This article explores the shared cholinergic mechanisms between NSCs and GSCs,highlighting their role in both neural development and glioblastoma progression.展开更多
The adult subventricular zone of the lateral ventricles and the subgranular zone in the hippocampal dentate gyrus(DG)are the two brain regions where neurogenesis occurs throughout life in the adult mammalian brain(Min...The adult subventricular zone of the lateral ventricles and the subgranular zone in the hippocampal dentate gyrus(DG)are the two brain regions where neurogenesis occurs throughout life in the adult mammalian brain(Ming and Song,2011).Adult quiescent hippocampal neural stem cells(NSCs)are bona fide stem cells and,when activated,give rise to newborn granule neurons in the adult brain,which play vital roles in learning,memory,mood,and affective cognition(Bonaguidi et al.,2011;Ming and Song,2011).展开更多
在全球气候变化背景下,降水模式的改变显著影响了植物非结构性碳水化合物(NSC)的动态平衡,进而对植物碳代谢与生态系统功能产生深远影响。基于Web of Science(WOS)核心数据库,利用CiteSpace软件对1999—2024年288篇相关文献进行多维度...在全球气候变化背景下,降水模式的改变显著影响了植物非结构性碳水化合物(NSC)的动态平衡,进而对植物碳代谢与生态系统功能产生深远影响。基于Web of Science(WOS)核心数据库,利用CiteSpace软件对1999—2024年288篇相关文献进行多维度可视化分析,系统梳理该领域的研究热点、知识结构及发展趋势。结果表明:(1)相关研究发文量呈持续增长趋势,核心期刊以“Tree Physiology”期刊为主导,中国和美国为该领域的研究核心,发文量分别位居前两位。(2)关键词聚类中气候变化、干旱胁迫、碳分配为核心主题,NSC动态与植物渗透调节、光合作用关联紧密。(3)技术方法上,碳同位素示踪与等水行为分析方法推动了水分限制下NSC分配机制的研究。未来需关注多尺度降水变异与CO_(2)、氮沉降的交互作用,深化生态系统尺度NSC动态与碳平衡研究,为气候变化应对提供理论支撑。展开更多
Background:Intracerebral hemorrhage(ICH)remains a devastating neurological disorder with limited therapeutic options.Neural stem cell(NSC)-based therapies have emerged as a potential regenerative approach,yet the mole...Background:Intracerebral hemorrhage(ICH)remains a devastating neurological disorder with limited therapeutic options.Neural stem cell(NSC)-based therapies have emerged as a potential regenerative approach,yet the molecular mechanisms regulating NSC behavior require further elucidation.The role of miR-21 in NSC differentiation and proliferation during ICH recovery remains unexplored.Methods:In vitro NSC cultures were analyzed for miR-21 expression dynamics during differentiation via qPCR.Lentiviral overexpression and knockdown of miR-21 were employed to assess its functional impact.The SOX2/LIN28-let-7 pathway was investigated using Western blot,luciferase reporter assays,and immunofluorescence.In vivo,miR-21-overexpressing NSCs were transplanted into a murine ICH model,with neurogenesis evaluated by immunostaining and neurological recovery assessed through behavioral tests(mNSS,rotarod).Results:miR-21 expression significantly increased during NSC differentiation,correlating with reduced SOX2 levels.Mechanistically,miR-21 directly targeted SOX2,disrupting the SOX2/LIN28-let-7 axis to promote NSC proliferation and lineage commitment.In ICH mice,transplantation of miR-21-overexpressing NSCs enhanced neurogenesis and improved motor coordination and neurological deficits at 28 days post-transplantation.Conclusions:Our findings identify miR-21 as a critical regulator of NSC plasticity through SOX2/LIN28-let-7 signaling,highlighting its therapeutic potential for enhancing neuroregeneration and functional recovery in ICH.Targeting miR-21 may represent a novel strategy to optimize NSC-based therapies for hemorrhagic stroke.展开更多
As a frequently-observed phenomenon in the northern South China Sea(nSCS),subsurface chlorophyll maximum(SCM)evolution from summer to winter remains unclear,neither the associated hydrographic control.In this study,on...As a frequently-observed phenomenon in the northern South China Sea(nSCS),subsurface chlorophyll maximum(SCM)evolution from summer to winter remains unclear,neither the associated hydrographic control.In this study,on the basis of in-situ data of fall-season cruises in 2004–2006,we characterized the depth,thickness and intensity of the SCM in the nSCS using a general Gaussian-function fitting approach,and investigated a linkage to the corresponding ocean vertical buoyance properties.Our results show that the SCM becomes deeper,thicker and less intense offshore-wards in the nSCS during fall seasons.In parallel,a correlation between the SCM variation and mixed layer depth exists in the nSCS,and it becomes pronounced in the shelf region compared to the slope and basin areas in autumn.Physically,once warmer surface ocean and thus stronger thermo-determined stratification,the SCM layer goes deeper and becomes thicker and less intense in the nSCS,especially in the shelf area of the nSCS.Moreover,the impact of water temperatures at deeper layers on the vertical stratification exerts more consequent roles on the spatial variability of SCM,compared to surface temperatures in the nSCS.Specifically,the isotherm line of 22℃ acts as crucial indicator for variations of the SCM in the nSCS during autumns.展开更多
文摘Adult neurogenesis is a highly dynamic process that leads to the production of new neurons from a population of quiescent neural stem cells(NSCs).In response to specific endogenous and/or external stimuli,NSCs enter a state of mitotic activation,initiating proliferation and differentiation pathways.Throughout this process,NSCs give rise to neural progenitors,which undergo multiple replicative and differentiative steps,each governed by precise molecular pathways that coordinate cellular changes and signals from the surrounding neurogenic niche.
文摘Neural stem cells(NSCs)and glioblastoma stem cells(GSCs)share a complex regulatory landscape in which cholinergic signaling plays a pivotal role in both neural development and tumor progression.While acetylcholine(ACh)regulates NSC quiescence and differentiation within neurogenic niches,glioblastoma cells exploit th ese pathways to enhance their adaptability and invasiveness.The involvement of muscarinic(M3)and nicotinic(α7)receptors in both cell types suggests that glioblastoma retains neural progenitor-like traits,contributing to its plasticity and resilience.This article explores the shared cholinergic mechanisms between NSCs and GSCs,highlighting their role in both neural development and glioblastoma progression.
基金supported by National Institutes of Health(R35NS137480,R35NS116843,and RF1AG079557)by Dr.Miriam and Sheldon G.Adelson Medical Research Foundation.
文摘The adult subventricular zone of the lateral ventricles and the subgranular zone in the hippocampal dentate gyrus(DG)are the two brain regions where neurogenesis occurs throughout life in the adult mammalian brain(Ming and Song,2011).Adult quiescent hippocampal neural stem cells(NSCs)are bona fide stem cells and,when activated,give rise to newborn granule neurons in the adult brain,which play vital roles in learning,memory,mood,and affective cognition(Bonaguidi et al.,2011;Ming and Song,2011).
文摘在全球气候变化背景下,降水模式的改变显著影响了植物非结构性碳水化合物(NSC)的动态平衡,进而对植物碳代谢与生态系统功能产生深远影响。基于Web of Science(WOS)核心数据库,利用CiteSpace软件对1999—2024年288篇相关文献进行多维度可视化分析,系统梳理该领域的研究热点、知识结构及发展趋势。结果表明:(1)相关研究发文量呈持续增长趋势,核心期刊以“Tree Physiology”期刊为主导,中国和美国为该领域的研究核心,发文量分别位居前两位。(2)关键词聚类中气候变化、干旱胁迫、碳分配为核心主题,NSC动态与植物渗透调节、光合作用关联紧密。(3)技术方法上,碳同位素示踪与等水行为分析方法推动了水分限制下NSC分配机制的研究。未来需关注多尺度降水变异与CO_(2)、氮沉降的交互作用,深化生态系统尺度NSC动态与碳平衡研究,为气候变化应对提供理论支撑。
基金Shanghai Minhang District Health Commission Project,Grant/Award Number:2022MHZ062Shanghai Sixth People's Hospital,Grant/Award Number:ynhg202311 and ynms202411。
文摘Background:Intracerebral hemorrhage(ICH)remains a devastating neurological disorder with limited therapeutic options.Neural stem cell(NSC)-based therapies have emerged as a potential regenerative approach,yet the molecular mechanisms regulating NSC behavior require further elucidation.The role of miR-21 in NSC differentiation and proliferation during ICH recovery remains unexplored.Methods:In vitro NSC cultures were analyzed for miR-21 expression dynamics during differentiation via qPCR.Lentiviral overexpression and knockdown of miR-21 were employed to assess its functional impact.The SOX2/LIN28-let-7 pathway was investigated using Western blot,luciferase reporter assays,and immunofluorescence.In vivo,miR-21-overexpressing NSCs were transplanted into a murine ICH model,with neurogenesis evaluated by immunostaining and neurological recovery assessed through behavioral tests(mNSS,rotarod).Results:miR-21 expression significantly increased during NSC differentiation,correlating with reduced SOX2 levels.Mechanistically,miR-21 directly targeted SOX2,disrupting the SOX2/LIN28-let-7 axis to promote NSC proliferation and lineage commitment.In ICH mice,transplantation of miR-21-overexpressing NSCs enhanced neurogenesis and improved motor coordination and neurological deficits at 28 days post-transplantation.Conclusions:Our findings identify miR-21 as a critical regulator of NSC plasticity through SOX2/LIN28-let-7 signaling,highlighting its therapeutic potential for enhancing neuroregeneration and functional recovery in ICH.Targeting miR-21 may represent a novel strategy to optimize NSC-based therapies for hemorrhagic stroke.
基金Supported by the Ministry of Science and Technology of the People’s Republic of China(No.2019 YFE 0125000)the National Natural Science Foundation of China-Shandong Joint Fund(No.U 1906215)+1 种基金the National Natural Science Foundation of China(No.41406010)partially by the Key Laboratory of Coastal Environmental Processes and Ecological Remediation,Chinese Academy of Sciences Opening Fund(No.2020 KFJJ 04)。
文摘As a frequently-observed phenomenon in the northern South China Sea(nSCS),subsurface chlorophyll maximum(SCM)evolution from summer to winter remains unclear,neither the associated hydrographic control.In this study,on the basis of in-situ data of fall-season cruises in 2004–2006,we characterized the depth,thickness and intensity of the SCM in the nSCS using a general Gaussian-function fitting approach,and investigated a linkage to the corresponding ocean vertical buoyance properties.Our results show that the SCM becomes deeper,thicker and less intense offshore-wards in the nSCS during fall seasons.In parallel,a correlation between the SCM variation and mixed layer depth exists in the nSCS,and it becomes pronounced in the shelf region compared to the slope and basin areas in autumn.Physically,once warmer surface ocean and thus stronger thermo-determined stratification,the SCM layer goes deeper and becomes thicker and less intense in the nSCS,especially in the shelf area of the nSCS.Moreover,the impact of water temperatures at deeper layers on the vertical stratification exerts more consequent roles on the spatial variability of SCM,compared to surface temperatures in the nSCS.Specifically,the isotherm line of 22℃ acts as crucial indicator for variations of the SCM in the nSCS during autumns.