日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Beyond the Brain: Exploring the multi-organ axes in Parkinson's disease pathogenesis

超越大脑:探索帕金森病发病机制中的多器官轴

Liu, Tingting; Wu, Haojie; Wei, Jianshe

Parkinson's disease: spatiotemporal regulation and therapeutic prospects of TREM2-mediated microglial responses

帕金森病:TREM2介导的小胶质细胞反应的时空调控和治疗前景

Hou, Keyuan; An, Zhaowu; Xu, Yuxiang; Wang, Jing; Zhou, Meiru; Liu, Ye; Zhu, Xianfeng; Wei, Jianshe

Redefining Parkinson's Disease management: the synergistic role of neurotrophic factors and mitochondria

重新定义帕金森病管理:神经营养因子和线粒体的协同作用

Chang, Junkai; Li, Zisen; Liu, Tingting; Cheng, Xiangshu; Wei, Jianshe

Role of Microglial Dysfunction in Parkinson's Disease: From Multifactorial Causes to Neurodegeneration

小胶质细胞功能障碍在帕金森病中的作用:从多因素病因到神经退行性变

Xu, Yuxiang; Han, Tingting; Wu, Yue; Liu, Haixuan; Hou, Keyuan; An, Zhaowu; Li, Yongjie; Zhu, Chaoyang; Wang, Song; Wei, Jianshe

Beyond Organ Boundaries: Molecular Mechanisms of Hepatic Encephalopathy and Parkinson's Disease from the Perspective of the Gut-Liver-Brain Axis

超越器官边界:从肠-肝-脑轴视角探讨肝性脑病和帕金森病的分子机制

Liu, Tingting; Ma, Yuang; Zhang, Mengdi; Wei, Jianshe

Unraveling Parkinson's disease: The mystery of mitochondria and the role of aging

揭开帕金森病的神秘面纱:线粒体的奥秘与衰老的作用

Liu, Tingting; Li, Jingwen; Wu, Haojie; Qiao, Junbo; Wei, Jianshe

Three-dimensional interactive network: Mitochondrial-metabolic-calcium homeostasis driving Alzheimer's disease

三维交互网络:线粒体-代谢-钙稳态驱动阿尔茨海默病

Liu, Tingting; Rong, Zongting; Li, Jingwen; Wu, Haojie; Wei, Jianshe

The Power of Exercise: Unlocking the Biological Mysteries of Peripheral-Central Crosstalk in Parkinson's Disease

运动的力量:揭开帕金森病中外周-中枢神经系统串扰的生物学奥秘

Li, Jingwen; Liu, Tingting; Xian, Meiyan; Zhou, Ke; Wei, Jianshe

Decoding Parkinson's Disease: The interplay of cell death pathways, oxidative stress, and therapeutic innovations

解读帕金森病:细胞死亡途径、氧化应激和治疗创新之间的相互作用

Liu, Tingting; Kong, Xiangrui; Qiao, Junbo; Wei, Jianshe

FGF21 confers neuroprotection in Parkinson's disease by activating the FGFR1-sirt1 pathway.

FGF21 通过激活 FGFR1-sirt1 通路,在帕金森病中发挥神经保护作用。

Liu Tingting, Wei Jianshe