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6篇 您的检索式:作者名="Guixue Hou"
    题名 作者 年代 出处 被引量
1Multi-platform omics analysis reveals molecular signature for COVID-19 pathogenesis,prognosis and drug target discovery显示文摘Disease progression prediction and therapeutic drug target discovery for Coronavirus disease 2019(COVID-19)are particularly important,as there is still no effective strategy for severe COVID-19 patient treatment.Herein,we performed multi-platform omics analysis of serial plasma and urine samples collected from patients during the course of COVID-19.Integrative analyses of these omics data revealed several potential therapeutic targets,such as ANXA1 and CLEC3B.Molecular changes in plasma indicated dysregulation of macrophage and suppression of T cell functions in severe patients compared to those in non-severe patients.Further,we chose 25 important molecular signatures as potential biomarkers for the prediction of disease severity.The prediction power was validated using corresponding urine samples and plasma samples from new COVID-19 patient cohort,with AUC reached to 0.904 and 0.988,respectively.In conclusion,our omics data proposed not only potential therapeutic targets,but also biomarkers for understanding the pathogenesis of severe COVID-19.Yuming Li Guixue Hou Haibo Zhou Yanqun Wang Hein Min Tun Airu Zhu Jingxian Zhao Fei Xiao Shanwen Lin Dongdong Liu Dunrong Zhou Lang Mai Lu Zhang Zhaoyong Zhang Lijun Kuang Jiao Guan Qiushi Chen Liyan Wen Yanjun Zhang Jianfen Zhuo Fang Li Zhen Zhuang Zhao Chen Ling Luo Donglan Liu Chunke Chen Mian Gan Nanshan Zhong Jincun Zhao Yan Ren Yonghao Xu 2021Signal Transduction and Targeted Therapy2021,6,5:1
2Mechano-sensitive TET1s inhibits endothelial athero-susceptible phenotype through regulating YAP phosphorylation显示文摘Atherosclerosis is a chronic progressive disease and one of the major causes of cardio-cerebral vascular diseases.Accumulating evidence indicates that endothelial dysfunc-tion is the initiating step in atherosclerosis.The pattern of local blood flow becomes disturbed(low and oscillatory shear stress[OSS])in the curved or branched segments of the arterial tree,causing endothelial cells(ECs)to exhibit athero-susceptible phenotypes,such as hyperproliferation and inflammation.Lu Huang Kai Qu Caihong Wang Daoxi Lei Wenhua Yan Tianhan Li Zhengjun Hou Juhui Qiu Guixue Wang 2023Genes & Diseases2023,10,4:1
3G3BP2 regulates oscillatory shear stress-induced endothelial dysfunction显示文摘GTPase-activating SH3 domain-binding protein 2(G3BP2)is a mediator that responds to environmental stresses through stress granule formation and is involved in the progression of chronic diseases.However,no studies have examined the contribution of G3BP2 in the oscillatory shear stress(OSS)-induced endothelial dysfunction.Here we assessed the effects of G3BP2 in endothelial cells(ECs)function and investigated the underlying mechanism.Using shear stress apparatus and partial ligation model,we identified that stress granulerelated genes in ECs could be induced by OSS with RNA-seq,and then confirmed that G3BP2 was highly and specifically expressed in athero-susceptible endothelia in the OSS regions.G3bp2e/eApoee/e mice had significantly decreased atherosclerotic lesions associated with deficiency of G3BP2 in protecting endothelial barrier function,decreasing monocyte adhesion to ECs and inhibiting the proinflammatory cytokine levels.Furthermore,loss of G3BP2 diminished OSS-induced inflammation in ECs by increasing YAP nucleocytoplasmic shuttling and phosphorylation.These data demonstrate that G3BP2 is a critical OSS regulated gene in regulating ECs function and that G3BP2 inhibition in ECs is a promising atheroprotective therapeutic strategy.Tianhan Li Juhui Qiu Tingting Jia Yinming Liang Kun Zhang Wenhua Yan Zhengjun Hou Shiwei Yang Lushan Liu Wenhao Xiong Yaokai Chen Guixue Wang 2022Genes & Diseases2022,9,6:1
4Research trends and hotspot topics of exosomes based on citespace bibliometric analysis显示文摘Exosomes are membrane vesicles that exist in pathological or normal cells and are considered to be specifically secreted,contain complex RNAs and proteins,participate in intercellular communication functions,and have functions in organismal immune response,antigen presentation,cell migration,cell differentiation,and tumor invasion.In recent years,with the explosion of the development of minimally invasive diagnostics,the research of exosomes has been rapidly developed,and the number of articles published in this field has increased dramatically,and many articles summarize the published papers in a review-type analysis.In this paper,we use bibliometric analysis combined with theoretical analysis and pathfinding network scaling to visualize data and objectively count the development process,current research,and development trend of the corresponding field by analyzing the literature of the specified field.This paper presents the data visualization by analyzing the literature of the specified field to objectively count the development process,current research and development trend of the corresponding field.This paper presents a retrospective analysis and review of the articles on exosomes in the last 20 years(2001–2021)based on the bibliometric analysis method of CiteSpace software,while presenting the problems of current research and discussing the challenges encountered in the future,hoping to provide new ideas for the development of research in this field.Qianting Zhang Xiangxiu Wang Lili Tan Yuanfang Hou Daoxi Lei Yin Huang Bin He Guixue Wang 2022Medicine in Novel Technology and Devices2022,,4:0
5Profiling the Bisecting N-acetylglucosamine Modification in Amniotic Membrane via Mass Spectrometry显示文摘Bisecting N-acetylglucosamine(GlcNAc),a GlcNAc linked to the coreβ-mannose residue via aβ1,4 linkage,is a special type of N-glycosylation that has been reported to be involved in various biological processes,such as cell adhesion and fetal development.This N-glycan structure is abundant in human trophoblasts,which is postulated to be resistant to natural killer cellmediated cytotoxicity,enabling a mother to nourish a fetus without rejection.In this study,we hypothesized that the human amniotic membrane,which serves as the last barrier for the fetus,may also express bisected-type glycans.To test this hypothesis,glycomic analysis of the human amniotic membrane was performed,and bisected N-glycans were detected.Furthermore,our proteomic data,which have been previously employed to explore human missing proteins,were analyzed and the presence of bisecting GlcNAc-modified peptides was confirmed.A total of 41glycoproteins with 43 glycopeptides were found to possess a bisecting GlcNAc,and 25 of these glycoproteins were reported to exhibit this type of modification for the first time.These results provide insights into the potential roles of bisecting GlcNAc modification in the human amniotic membrane,and can be beneficial to functional studies on glycoproteins with bisecting GlcNAc modifications and functional studies on immune suppression in human placenta.Qiushi Chen Yuanliang Zhang Keren Zhang Jie Liu Huozhen Pan Xinran Wang Siqi Li Dandan Hu Zhilong Lin Yun Zhao Guixue Hou Feng Guan Hong Li Siqi Liu Yan Ren 2022Genomics, Proteomics & Bioinformatics2022,20,4:0
6Recent advances of natural and bioengineered extracellular vesicles and their application in vascular regeneration显示文摘The progression of cardiovascular diseases such as atherosclerosis and myocardial infarction leads to serious vascular injury,highlighting the urgent need for targeted regenerative therapy.Extracellular vesicles(EVs)composed of a lipid bilayer containing nuclear and cytosolic materials are relevant to the progression of cardiovascular diseases.Moreover,EVs can deliver bioactive cargo in pathological cardiovascular and regulate the biological function of recipient cells,such as inflammation,proliferation,angiogenesis and polarization.However,because the targeting and bioactivity of natural EVs are subject to several limitations,bioengineered EVs have achieved wide advancements in biomedicine.Bioengineered EVs involve three main ways to acquire including(i)modification of the EVs after isolation;(ii)modification of producer cells before EVs’isolation;(iii)synthesize EVs using natural or modified cell membranes,and encapsulating drugs or bioactive molecules into EVs.In this review,we first summarize the cardiovascular injury-related disease and describe the role of different cells and EVs in vascular regeneration.We also discuss the application of bioengineered EVs from different producer cells to cardiovascular diseases.Finally,we summarize the surface modification on EVs which can specifically target abnormal cells in injured vascular.Jianxiong Xu Jinxuan Wang Yidan Chen Yuanfang Hou Jianjun Hu Guixue Wang 2022Regenerative Biomaterials2022,9,1:0
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