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Mitochondrial fission and bioenergetics mediate human lung fibroblast durotaxis.
Guo, Ting; Jiang, Chun-Sun; Yang, Shan-Zhong; Zhu, Yi; He, Chao; Carter, A Brent; Antony, Veena B; Peng, Hong; Zhou, Yong.
Afiliação
  • Guo T; Division of Pulmonary, Allergy and Critical Care Medicine, Department of Medicine, University of Alabama at Birmingham, Birmingham, Alabama, USA.
  • Jiang CS; Department of Respiratory Medicine, the Second Xiangya Hospital, Central-South University, Changsha, China.
  • Yang SZ; Division of Pulmonary, Allergy and Critical Care Medicine, Department of Medicine, University of Alabama at Birmingham, Birmingham, Alabama, USA.
  • Zhu Y; Division of Pulmonary, Allergy and Critical Care Medicine, Department of Medicine, University of Alabama at Birmingham, Birmingham, Alabama, USA.
  • He C; Division of Pulmonary, Allergy and Critical Care Medicine, Department of Medicine, University of Alabama at Birmingham, Birmingham, Alabama, USA.
  • Carter AB; Division of Pulmonary, Allergy and Critical Care Medicine, Department of Medicine, University of Alabama at Birmingham, Birmingham, Alabama, USA.
  • Antony VB; Division of Pulmonary, Allergy and Critical Care Medicine, Department of Medicine, University of Alabama at Birmingham, Birmingham, Alabama, USA.
  • Peng H; Birmingham Veterans Administration Medical Center, Birmingham, Alabama, USA.
  • Zhou Y; Division of Pulmonary, Allergy and Critical Care Medicine, Department of Medicine, University of Alabama at Birmingham, Birmingham, Alabama, USA.
JCI Insight ; 8(1)2023 01 10.
Article em En | MEDLINE | ID: mdl-36422990
ABSTRACT
Pulmonary fibrosis is characterized by stiffening of the extracellular matrix. Fibroblasts migrate in the direction of greater stiffness, a phenomenon termed durotaxis. The mechanically guided fibroblast migration could be a crucial step in the progression of lung fibrosis. In this study, we found primary human lung fibroblasts sense increasing matrix stiffness with a change of mitochondrial dynamics in favor of mitochondrial fission and increased production of ATP. Mitochondria polarize in the direction of a physiologically relevant stiffness gradient, with conspicuous localization to the leading edge, primarily lamellipodia and filopodia, of migrating lung fibroblasts. Matrix stiffness-regulated mitochondrial fission and durotactic lung fibroblast migration are mediated by a dynamin-related protein 1/mitochondrial fission factor-dependent (DRP1/MFF-dependent) pathway. Importantly, we found that the DRP1/MFF pathway is activated in fibrotic lung myofibroblasts in both human IPF and bleomycin-induced mouse lung fibrosis. These findings suggest that energy-producing mitochondria need to be sectioned via fission and repositioned in durotactic lung fibroblasts to meet the higher energy demand. This represents a potentially new mechanism through which mitochondria may contribute to the progression of fibrotic lung diseases. Inhibition of durotactic migration of lung fibroblasts may play an important role in preventing the progression of human idiopathic pulmonary fibrosis.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Fibrose Pulmonar Idiopática / Dinâmica Mitocondrial Tipo de estudo: Prognostic_studies Limite: Animals / Humans Idioma: En Revista: JCI Insight Ano de publicação: 2023 Tipo de documento: Article País de afiliação: Estados Unidos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Fibrose Pulmonar Idiopática / Dinâmica Mitocondrial Tipo de estudo: Prognostic_studies Limite: Animals / Humans Idioma: En Revista: JCI Insight Ano de publicação: 2023 Tipo de documento: Article País de afiliação: Estados Unidos