14 Papers
Yue Wang is an academic researcher from Third Military Medical University. The author has contributed to research in topics: Medicine & Chemistry. The author has an hindex of 2, co-authored 3 publications.
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Papers
Mitochondrial Damage-Induced Innate Immune Activation in Vascular Smooth Muscle Cells Promotes Chronic Kidney Disease-Associated Plaque Vulnerability.
Xianjin Bi,Changhong Du,Xinmiao Wang,Xueyue Wang,Wenhao Han,Yue Wang,Yu Qiao,Yingguo Zhu,Li Ran,Yong Liu,Jiachuan Xiong,Yinghui Huang,Mingying Liu,Chi Liu,Chunyu Zeng,Junping Wang,Ke Yang,Jinghong Zhao +17 more
TL;DR: In this paper, it was shown that premature senescence and phenotypic switching of vascular smooth muscle cells (VSMCs) contributes to CKD-associated plaque vulnerability.
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Targeting Myocardial Mitochondria-STING-Polyamine Axis Prevents Cardiac Hypertrophy in Chronic Kidney Disease
Wenhao Han,Changhong Du,Ying Zhu,Li Ran,Yue Wang,Jiachuan Xiong,Yiding Wu,Qigang Lan,Yaqin Wang,Liting Wang,Junping Wang,Ke Yang,Jinghong Zhao +12 more
TL;DR: In this paper , the authors show that myocardial mitochondrial oxidative damage is early and prominent in CKD and distinctively stimulates the STING-NFκB pathway by releasing mitochondrial DNA to drive cardiac hypertrophy.
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Overview of the preparation method, structure and function, and application of natural peptides and polypeptides.
TL;DR: An overview of the preparation methods, the relationship between structure and function, and the application of natural polypeptides can be found in this article , where a review of the research and development of NPs is presented.
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DUSP2-mediated inhibition of tubular epithelial cell pyroptosis confers nephroprotection in acute kidney injury
Jiachuan Xiong,Li Ran,Ying Zhu,Yaqin Wang,Shaobo Wang,Yue Wang,Qigang Lan,Wenhao Han,Yong Liu,Yinghui Huang,Ting He,Yan Li,Li Wei Liu,Jinghong Zhao,Ke Yang +14 more
TL;DR: It is revealed that loss-of-DUSP2 in RTECs not only is a common feature of human and murine AKI but also positively contributes to AKI pathogenesis, highlighting that D USP2-STAT1 axis is an attractive therapeutic target for AKI.
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Imbalanced lipid homeostasis caused by membrane αKlotho deficiency contributes to the acute kidney injury to chronic kidney disease transition.
Yue Wang,Li Ran,Qigang Lan,Weinian Liao,Liting Wang,Yaqin Wang,Jiachuan Xiong,Fugang Li,Wenrui Yu,Yan Li,Yinghui Huang,Ting He,Junping Wang,Ke Yang +13 more
TL;DR: This study identified αKlotho as a critical regulator of lipid turnover and homeostasis in AKI, providing a viable strategy for preventing tubular injury and the AKI-to-chronic kidney disease transition.
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