Showing 1 - 20 results of 35 for search '"mitochondrion"', query time: 0.06s Refine Results
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    Mitochondrial Dysfunction and Therapeutic Targets in Auditory Neuropathy by Baoyi Feng, Chenxi Jin, Zhenzhe Cheng, Xingle Zhao, Zhuoer Sun, Xiaofei Zheng, Xiang Li, Tingting Dong, Yong Tao, Hao Wu

    Published 2020-01-01
    “…Mitochondria are known treatment target of SNHL, but mitochondrion mechanism and pathology in SGNs are not valued. …”
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    Article
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    The dynamin-related protein PfDyn2 is essential for both apicoplast and mitochondrial fission in Plasmodium falciparum by Alexander A. Morano, Wei Xu, Francesca M. Navarro, Neeta Shadija, Jeffrey D. Dvorin, Hangjun Ke

    Published 2025-01-01
    “…Here, we demonstrate that one of these dynamin-related proteins, PfDyn2, is required to divide both the apicoplast and the mitochondrion, a striking divergence from the biology of related parasites. …”
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    Derivation and Characterization of Isogenic <i>OPA1</i> Mutant and Control Human Pluripotent Stem Cell Lines by Katherine A. Pohl, Xiangmei Zhang, Johnny Jeonghyun Ji, Linsey Stiles, Alfredo A. Sadun, Xian-Jie Yang

    Published 2025-01-01
    “…Within the mitochondrion, proteolytically processed OPA1 proteins form complexes to maintain membrane integrity and the respiratory chain complexity. …”
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    Mitochondrial Stress Signaling Promotes Cellular Adaptations by Jayne Alexandra Barbour, Nigel Turner

    Published 2014-01-01
    “…This involves communication of stress to the cell and successful induction of quality control responses, which include mitophagy, unfolded protein response, upregulation of antioxidant and DNA repair enzymes, morphological changes, and if all else fails apoptosis. The mitochondrion is an inherently stressful environment and we speculate that dysregulation of stress signaling or an inability to switch on these adaptations during times of mitochondrial stress may underpin mitochondrial dysfunction and hence amount to pathological states over time.…”
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    Modes and mechanisms for the inheritance of mitochondria and plastids in pathogenic protists. by Sophie L Collier, Sarah N Farrell, Christopher D Goodman, Geoffrey I McFadden

    Published 2025-01-01
    “…Almost all protists possess mitochondria or mitochondrion-related organelles, and many contain plastids. …”
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    Established Principles and Emerging Concepts on the Interplay between Mitochondrial Physiology and S-(De)nitrosylation: Implications in Cancer and Neurodegeneration by Giuseppina Di Giacomo, Salvatore Rizza, Costanza Montagna, Giuseppe Filomeni

    Published 2012-01-01
    “…In particular, emphasis will be given to the possible, but still neglected implication of denitrosylation reactions in the modulation of mitochondrial SNOs and how they can affect mitochondrion-related cellular process, such as oxidative phosphorylation, mitochondrial dynamics, and mitophagy.…”
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    Role of mitochondrial and lysosomal dysfunction in acute pancreatitis pathogenesis by Yuliya V Yevsyutina, V. T. Ivashkin, E. Z. Abgadzhava

    Published 2016-08-01
    “…Therefore new studies aimed for therapeutic impact on mitochondrions and lysosomes are required. Key words: acute pancreatitis, dysfunction of organellas, mitochondrion, lysosome, apoptosis, necrosis, autophagy.…”
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    Single-cell atlas reveals multi-faced responses of losartan on tubular mitochondria in diabetic kidney disease by Zhen Zhu, Guangxin Luan, Song Wu, Yiyi Song, Shuang Shen, Kaiyue Wu, Shengnan Qian, Weiping Jia, Jun Yin, Tao Ren, Jianping Ye, Li Wei

    Published 2025-01-01
    “…Various fluorescent probes and energy detector are used to detect mitochondrial apoptosis, ROS, and respiration of mitochondrion. Results Through the single-cell atlas of DKD mouse kidneys, it was found that losartan treatment significantly increased the percentage of PT cells. …”
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    Proteomic Analysis Reveals Growth Inhibition of Coriolus versicolor by Methanol Extracts of Cinnamomum camphora Xylem by Quan Li, Xiangyang Li, Hui Lin

    Published 2021-01-01
    “…Cellular localization was performed to identify these differential proteins, and biological process and functional analysis found that 9 of these proteins were in the cytoplasm, 6 were intracellular, and 5 were in the mitochondrion. A total of 18.8% were mapped to small-molecule metabolic processes, 12.5% to cellular amino acid metabolic processes, and 10.9% to cellular nitrogen compound metabolic processes. …”
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