中枢神经系统损伤中的自噬, 焦亡, 铁死亡和程序性坏死间的相互作用

L Zhang, Z Hu, Z Li, Y Lin - 中国神经再生研究(英文版), 2024 - sjzsyj.com.cn
mitochondrion, fusion with a lysosome to create an autolysosome, and degradation of the
mitochondrion … family and was originally identified in human placental cosmid (Wang et al., …

NLRP3/1 介导细胞焦亡: 阿尔茨海默病治疗策略中更有益的线索

B Hu, J Zhang, J Huang, B Luo, X Zeng… - 中国神经再生研究(英文版), 2024 - sjzsyj.com.cn
… mechanisms of Alzheimer’s disease, focusing on neuroinflammation. We also describe
the … Although this review focused on NLRP3 and NLRP1 inflammasomes, the role of other …

认知障碍性疾病中线粒体稳态的最新评估方法

W You, Y Li, K Liu, X Mi, Y Li, X Guo, Z Li - 中国神经再生研究(英文版), 2024 - sjzsyj.com.cn
… This review will focus on the recent advances in mitochondrialextracellular or intracellular
stress, damaged mitochondria … of energy metabolism, oxidative stress, calcium homeostasis, …

脑性瘫痪遗传途径: 对精准诊断和了解疾病机制的影响

Y Xu, Y Li, SA Richard, Y Sun, C Zhu - 中国神经再生研究(英文版), 2024 - sjzsyj.com.cn
… This section will focus on discussing key environmental risk … had a lower ratio of mitochondrial
DNA (mtDNA) to genomic DNA … critical for lysosomal sorting and recycling in transport and …

[HTML][HTML] 镉致肝损伤机制及硒拮抗镉肝毒性的研究进展

罗通旺, 吴亚, 王书杰, 宋厚辉, 邵春艳 - 畜牧兽医学报, 2024 - html.rhhz.net
: 镉是一种有毒重金属, 能通过食物链蓄积于机体内, 造成急性或慢性中毒, 严重威胁人类和畜禽
的健康. 肝是镉毒性损伤的主要靶器官, 揭示镉的肝毒性机制以及如何抑制其毒性作用具有重要…