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AMPK-dependent and independent actions of P2X7 in regulation of mitochondrial and lysosomal functions in microglia
Ponarulselvam Sekar
, Duen Yi Huang
, Shie Liang Hsieh
, Shwu Fen Chang
, Wan Wan Lin
醫學科學研究所
國際醫學研究碩博士學位學程
轉譯醫學博士學位學程
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引文 斯高帕斯(Scopus)
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深入研究「AMPK-dependent and independent actions of P2X7 in regulation of mitochondrial and lysosomal functions in microglia」主題。共同形成了獨特的指紋。
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Biochemistry, Genetics and Molecular Biology
Microglia
100%
AMP-activated Protein Kinase
100%
Mitophagy
75%
Macrophage
25%
Oxygen Consumption
25%
Biogenesis
25%
Mitochondrial Dynamics
25%
Mitochondrial Fission
25%
Cathepsin B
25%
Agonist
12%
Protein Expression
12%
Western Blot
12%
Homeostasis
12%
Flow Cytometry
12%
Calcium Cell Level
12%
Mitochondrial Respiration
12%
Myeloid
12%
Seahorse
12%
Nerve Cell Plasticity
12%
TFEB
12%
Autophagy
12%
Cell Death
12%
Cytotoxicity
12%
Neuroscience
AMP-activated Protein Kinase
100%
Microglia
100%
Mitophagy
75%
Reactive Oxygen Species
50%
Macrophage
25%
Cathepsin B
25%
Mitochondrial Fission
25%
Mitochondrial Dynamics
25%
Agonist
12%
Western Blot
12%
Protein Expression
12%
Neuronal Plasticity
12%
Cytotoxicity
12%
Flow Cytometry
12%
Myeloid
12%
Mitochondrial Function
12%
Mitochondrial Respiration
12%
Nigericin
12%
Autophagy
12%
Cell Death
12%
Immunology and Microbiology
Microglia
100%
Mitophagy
75%
Biogenesis
25%
Oxygen Consumption
25%
Mitochondrial Dynamics
25%
Bone Marrow-Derived Macrophage
25%
Protein Expression
12%
Western Blot
12%
Homeostasis
12%
Cell Death
12%
Cytotoxicity
12%
Agonist
12%
Inflammatory Disorder
12%
Calcium Cell Level
12%
Myeloid
12%
Mitochondrial Respiration
12%
Seahorse
12%
Autophagy
12%
Nerve Cell Plasticity
12%