खोज परिणाम - Jiatao Xie

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    Exosomes secreted by ATF3/Nrf2-mediated ferroptotic renal tubular epithelial cells promote M1/M2 ratio imbalance inducing renal interstitial fibrosis following ischemia and reperfu... द्वारा Qiao Tang, Jiatao Xie, Yifei Wang, Chong Dong, Chong Dong, Qian Sun

    प्रकाशित 2025-02-01

    BackgroundSevere renal ischemia and reperfusion injury (IRI) progresses to renal interstitial fibrosis (RIF) with limited therapeutic strategies. Although ferrptosis and macrophage polarization both play important roles in this model, their specific pathogenesis and interactions have not been elucid...

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  3. 3

    Mechanism of Circadian Regulation in Ferroptosis of the BMAL1/NRF2 Pathway in Renal Ischemia–Reperfusion द्वारा Shang Xu, Qiao Tang, Haiyang Du, Jiatao Xie, Ruoxin He, Ruiyan Wang, Qian Sun

    प्रकाशित 2025-06-01

    <b>Background</b>: Renal ischemia–reperfusion injury (IRI) is a frequent cause of kidney transplant failure. Recent studies have shown that the extent of injury is closely linked to ferroptosis, and the process of cellular ferroptosis is diurnal and regulated by circadian genes. <i>...

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    Overexpression of chitinase PbChia1 from Plasmodiophora brassicae improves broad-spectrum disease resistance of Arabidopsis द्वारा Yanli Zhao, Chao Li, Xingfu Chen, Jiasen Cheng, Jiatao Xie, yang lin, Yanping Fu, Daohong Jiang, Tao Chen

    प्रकाशित 2023-12-01

    Chitinase plays an important role in plant resistance against chitin-containing pathogens through hydrolysis of chitin. Clubroot caused by Plasmodiophora brassicae is a major disease for cruciferous crops and vegetables worldwide. The cell wall of P. brassicae resting spores contains chitin. Chitina...

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    The Transcription Factor SsSR Mediates Ergosterol Biosynthesis and Virulence in <i>Sclerotinia sclerotiorum</i> द्वारा Huihui Zhao, Xiaofan Liu, Jintao Jiang, Jiatao Xie, Yanping Fu, Yang Lin, Tao Chen, Bo Li, Xiao Yu, Xueqiong Xiao, Xueliang Lyu, Weidong Chen, Daohong Jiang, Jiasen Cheng

    प्रकाशित 2025-07-01

    <i>Sclerotinia sclerotiorum</i>, known as a typical necrotrophic pathogenic fungus, exhibits a complex pathogenic mechanism. Research on <i>S. sclerotiorum</i> has primarily focused on oxalic acid, pathogenicity-related enzymes, and secreted proteins. In this study, we identi...

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