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The Power of Plasticity?Metabolic Regulation of Hepatic Stellate Cells

期刊

CELL METABOLISM
卷 33, 期 2, 页码 242-257

出版社

CELL PRESS
DOI: 10.1016/j.cmet.2020.10.026

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资金

  1. National Institutes of Health [R01DK56621]
  2. American Gastroenterological Association [AGA2020-13-03]
  3. Mount Sinai, MD/MSCR Patient-Oriented Research Training and Leadership (PORTAL) program

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Hepatic stellate cells play a crucial role in regulating physiological and pathological responses in the liver, particularly in chronic liver injury. They drive hepatic fibrosis and are involved in inflammation and cancer by adapting metabolic pathways to meet increased energy demands.
Hepatic stellate cells (HSCs) are resident non-parenchymal liver pericytes whose plasticity enables them to regulate a remarkable range of physiologic and pathologic responses. To support their functions in health and disease, HSCs engage pathways regulating carbohydrate, mitochondrial, lipid, and retinoid homeostasis. In chronic liver injury, HSCs drive hepatic fibrosis and are implicated in inflammation and cancer. To do so, the cells activate, or transdifferentiate, from a quiescent state into proliferative, motile myofibroblasts that secrete extracellular matrix, which demands rapid adaptation to meet a heightened energy need. Adaptations include reprogramming of central carbon metabolism, enhanced mitochondrial number and activity, endoplasmic reticulum stress, and liberation of free fatty acids through autophagy-dependent hydrolysis of retinyl esters that are stored in cytoplasmic droplets. As an archetype for pericytes in other tissues, recognition of the HSC?s metabolic drivers and vulnerabilities offer the potential to target these pathways therapeutically to enhance parenchymal growth and modulate repair.

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