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  1. Article

    Open Access

    Author Correction: Anisomycin prevents OGD-induced necroptosis by regulating the E3 ligase CHIP

    Mi-bo Tang, Yu-sheng Li, Shao-hua Li, Yuan Cheng, Shuo Zhang in Scientific Reports (2021)

  2. No Access

    Article

    AAV/BBB-Mediated Gene Transfer of CHIP Attenuates Brain Injury Following Experimental Intracerebral Hemorrhage

    Cell death is a hallmark of secondary brain injury following intracerebral hemorrhage (ICH). The E3 ligase CHIP has been reported to play a key role in mediating necroptosis—an important mechanism of cell deat...

    Shuo Zhang, Zheng-wei Hu, Hai-yang Luo, Cheng-yuan Mao in Translational Stroke Research (2020)

  3. Article

    Open Access

    Anisomycin prevents OGD-induced necroptosis by regulating the E3 ligase CHIP

    Necroptosis is an essential pathophysiological process in cerebral ischemia-related diseases. Therefore, targeting necroptosis may prevent cell death and provide a much-needed therapy. Ansiomycin is an inhibit...

    Mi-bo Tang, Yu-sheng Li, Shao-hua Li, Yuan Cheng, Shuo Zhang in Scientific Reports (2018)

  4. No Access

    Article

    Association of GWAS-Reported Variant rs11196288 near HABP2 with Ischemic Stroke in Chinese Han Population

    A recent genome-wide association analysis identified a novel single nucleotide polymorphism locus on chromosome 10q25.3 (rs11196288, near HABP2) associated with the risk of early-onset ischemic stroke (IS) in Eur...

    Shao-hua Li, Chang-he Shi, Yu-sheng Li, Fang Li in Journal of Molecular Neuroscience (2017)

  5. Article

    Open Access

    Necroptosis in neurodegenerative diseases: a potential therapeutic target

    Neurodegenerative diseases are a group of chronic progressive disorders characterized by neuronal loss. Necroptosis, a recently discovered form of programmed cell death, is a cell death mechanism that has necr...

    Shuo Zhang, Mi-bo Tang, Hai-yang Luo, Chang-he Shi, Yu-ming Xu in Cell Death & Disease (2017)