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4篇 您的检索式:作者名="Xingkun Chu"
    题名 作者 年代 出处 被引量
1Sodium oligomannate therapeutically remodels gut microbiota and suppresses gut bacterial amino acids-shaped neuroinflammation to inhibit Alzheimer's disease progression显示文摘Recently,increasing evidence has suggested the association between gut dysbiosis and Alzheimer's disease(AD)progression,yet the role of gut microbiota in AD pathogenesis remains obscure.Herein,we provide a potential mechanistic link between gut microbiota dysbiosis and neuroinflammation in AD progression.Using AD mouse models,we discovered that,during AD progression,the alteration of gut microbiota composition leads to the peripheral accumulation of phenylalanine and isoleucine,which stimulates the differentiation and proliferation of pro-inflammatory T helper 1(Thl)cells.The brain-infiltrated peripheral Th1 immune cells are associated with the Ml microglia aaivation,contributing to AD-associated neuroinflammation.Importantly,the elevation of phenylalanine and isoleucine concentrations and the increase of Th1 cell frequency in the blood were also observed in two small independent cohorts of patients with mild cognitive impairment(MCI)due to AD.Furthermore,GV-971,a sodium oligomannate that has demonstrated solid and consistent cognition improvement in a phase 3 clinical trial in China,suppresses gut dysbiosis and the associated phenylalanine/isoleucine accumulation,harnesses neuroinflammation and reverses the cognition impairment.Together,our findings highlight the role of gut dysbiosis-promoted neuroinflammation in AD progression and suggest a novel strategy for AD therapy by remodelling the gut microbiota.Xinyi Wang Guangqiang Sun Teng Feng Jing Zhang Xun Huang Tao Wang Zuoquan Xie Xingkun Chu Jun Yang Huan Wang Shuaishuai Chang Yanxue Gong Lingfei Ruan Guanqun Zhang Siyuan Yan Wen Lian Chen Du Dabing Yang Qingli Zhang Feifei Lin Jia Liu Haiyan Zhang Changrong Ge Shifu Xiao Jian Ding Meiyu Geng 2019Cell Research2019,29,10:192
2Salidroside reduces tau hyperphosphorylation via up-regulating GSK-3β phosphorylation in a tau transgenic Drosophila model of Alzheimer’s disease显示文摘Background:Alzheimer’s disease(AD)is an age-related and progressive neurodegenerative disease that causes substantial public health care burdens.Intensive efforts have been made to find effective and safe treatment against AD.Salidroside(Sal)is the main effective component of Rhodiola rosea L.,which has several pharmacological activities.The objective of this study was to investigate the efficacy of Sal in the treatment of AD transgenic Drosophila and the associated mechanisms.Methods:We used tau transgenic Drosophila line(TAU)in which tau protein is expressed in the central nervous system and eyes by the Gal4/UAS system.After feeding flies with Sal,the lifespan and locomotor activity were recorded.We further examined the appearance of vacuoles in the mushroom body using immunohistochemistry,and detected the levels of total glycogen synthase kinase 3β(t-GSK-3β),phosphorylated GSK-3β(p-GSK-3β),t-tau and p-tau in the brain by western blot analysis.Results:Our results showed that the longevity was improved in salidroside-fed Drosophila groups as well as the locomotor activity.We also observed less vacuoles in the mushroom body,upregulated level of p-GSK-3βand downregulated p-tau following Sal treatment.Conclusion:Our data presented the evidence that Sal was capable of reducing the neurodegeneration in tau transgenic Drosophila and inhibiting neuronal loss.The neuroprotective effects of Sal were associated with its up-regulation of the p-GSK-3βand down-regulation of the p-tau.Bei Zhang Qiongqiong Li Xingkun Chu Suya Sun Shengdi Chen 2016Translational Neurodegeneration2016,5,1:14
3Coupling of NiFe-Based Metal-Organic Framework Nanosheet Arrays with Embedded Fe-Ni_(3)S_(2) Clusters as Efficient Bifunctional Electrocatalysts for Overall Water Splitting显示文摘Developing highly efficient,easy-to-make and cost-effective bifunctional electrocatalysts for water splitting with lower cell voltages is crucial to producing massive hydrogen fuel.In response,the coupled hierarchical Ni/Fe-based MOF nanosheet arrays with embedded metal sulfide nanoclusters onto nickel foam skeleton(denoted as Fe-Ni_(3)S_(2)@NiFe-MOF/NF)are fabricated,in which the Fe-Ni_(3)S_(2) clusters could effectively restrain the aggregation of the layer metal-organic frameworks(MOF)nanosheets and adjust the local electronic structures of MOFs nanosheets.Benefiting from the rapid charge transfer and the exposure of abundant active sites,the well-designed Fe-Ni_(3)S_(2)@NiFe-MOF/NF displays excellent oxygen evolution reaction(OER)and hydrogen evolution reaction(HER)performance.More importantly,when equipped in the alkaline water electrolyzer,the Fe-Ni_(3)S_(2)@Ni Fe-MOF/NF enables the system with a mere 1.6 V for achieving the current density of 10 mA cm^(-2).This work offers a paradigm for designing efficient bifunctional HER/OER electrocatalysts based on the hybrid materials of nanostructured metal sulfide and MOF.Xianbiao Hou Tianyuan Jiang Xiujuan Xu Xingkun Wang Jian Zhou Huimin Xie Zhicheng Liu Lei Chu Minghua Huang 2022Chinese Journal of Structural Chemistry2022,41,7:1
4BRIEF COMMUNICATION ARISING Geng et al.reply显示文摘The accompanying comment by Dr.Rao,suggests that there is an omission of citation of 12 previous publications in our Wang et al.paper.1 We disagree with the suggestion for the following reasons.We believe that the 12 publications cited by Dr.Rao do not have sufficient relevance to the Wang et al.paper.1 The past decades have witnessed an explosive growth in our understanding of the pathogenesis of Alzheimer's disease(AD),which is a very complicated process.The Wang et al.Xinyi Wang Guangqiang Sun Teng Feng Jing Zhang Xun Huang Tao Wang Zuoquan Xie Xingkun Chu Jun Yang Huan Wang Shuaishuai Chang Yanxue Gong Lingfei Ruan Guanqun Zhang Siyuan Yan Wen Lian Chen Du Dabing Yang Qingli Zhang Feifei Lin Jia Liu Haiyan Zhang Changrong Ge Shifu Xiao Jian Ding Meiyu Geng 2020Cell Research2020,30,9:0
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