Notch1 通过 PDGFR/ROCK1 信号通路促进特发性肺纤维化中的周细胞-肌成纤维细胞转化。
Notch1 promotes the pericyte-myofibroblast transition in idiopathic pulmonary fibrosis through the PDGFR/ROCK1 signal pathway.
机构信息
Departerment of Critical Care Medicine, The Third Affiliated Hospital of Guangzhou Medical University, No. 63, Duobao Road, Guangzhou, 510150, P. R. China.
Department of Critical Care Medicine, Hunan Cancer Hospital, Changsha, 410013, P. R. China.
出版信息
Exp Mol Med. 2019 Mar 20;51(3):1-11. doi: 10.1038/s12276-019-0228-0.
The goals of this study were to investigate the role of the Notch1/PDGFRβ/ROCK1 signaling pathway in the pathogenesis of pulmonary fibrosis and to explore the possibility of treating fibrosis by targeting Notch1. Lung tissues from patients with pulmonary fibrosis were examined for the expression of Notch1/PDGFRβ/ROCK1 using RT-qPCR, western blotting, and immunostaining. Cultured mouse lung pericytes were transfected with Notch1-overexpressed vectors or shRNA targeting PDGFRβ/ROCK1 to examine cell behaviors, including proliferation, cell cycle arrest, and differentiation toward myofibroblasts. Finally, a mouse pulmonary fibrosis model was prepared, and a Notch1 inhibitor was administered to observe tissue morphology and pericyte cell behaviors. Human pulmonary fibrotic tissues presented with overexpression of Notch1, PDGFRβ, and ROCK1, in addition to a prominent transition of pericytes into myofibroblasts. In cultured mouse lung pericytes, overexpression of Notch1 led to the accelerated proliferation and differentiation of cells, and it also increased the expression of the PDGFRβ and ROCK1 proteins. The knockdown of PDGFRβ/ROCK1 in pericytes remarkably suppressed pericyte proliferation and differentiation. As further substantiation, the administration of a Notch1 inhibitor in a mouse model of lung fibrosis inhibited the PDGFRβ/ROCK1 pathway, suppressed pericyte proliferation and differentiation, and alleviated the severity of fibrosis. Our results showed that the Notch1 signaling pathway was aberrantly activated in pulmonary fibrosis, and this pathway may facilitate disease progression via mediating pericyte proliferation and differentiation. The inhibition of the Notch1 pathway may provide one promising treatment strategy for pulmonary fibrosis.
本研究旨在探讨 Notch1/PDGFRβ/ROCK1 信号通路在肺纤维化发病机制中的作用,并探索靶向 Notch1 治疗纤维化的可能性。通过 RT-qPCR、western blot 和免疫组化检测肺纤维化患者肺组织中 Notch1/PDGFRβ/ROCK1 的表达。用 Notch1 过表达载体或靶向 PDGFRβ/ROCK1 的 shRNA 转染培养的小鼠肺周细胞,观察细胞行为,包括增殖、细胞周期阻滞和向肌成纤维细胞分化。最后,制备小鼠肺纤维化模型,并给予 Notch1 抑制剂,观察组织形态和周细胞行为。人肺纤维化组织中 Notch1、PDGFRβ 和 ROCK1 表达过度,周细胞向肌成纤维细胞的显著转化。在培养的小鼠肺周细胞中,Notch1 的过表达导致细胞增殖和分化加速,同时也增加了 PDGFRβ 和 ROCK1 蛋白的表达。周细胞中 PDGFRβ/ROCK1 的敲低显著抑制了周细胞的增殖和分化。进一步证实,在肺纤维化小鼠模型中给予 Notch1 抑制剂可抑制 PDGFRβ/ROCK1 通路,抑制周细胞增殖和分化,减轻纤维化程度。我们的结果表明,Notch1 信号通路在肺纤维化中异常激活,该通路可能通过介导周细胞增殖和分化促进疾病进展。抑制 Notch1 通路可能为肺纤维化提供一种有前途的治疗策略。
相似文献
Int J Radiat Oncol Biol Phys. 2025-6-16
Am J Physiol Heart Circ Physiol. 2021-2-1
Cochrane Database Syst Rev. 2018-2-9
引用本文的文献
EJNMMI Radiopharm Chem. 2025-7-15
JACC Basic Transl Sci. 2025-5
J Respir Biol Transl Med. 2025-3
Front Cell Dev Biol. 2024-10-10
MedComm (2020). 2024-9-23
Biophys Rev (Melville). 2023-4-28
J Intensive Med. 2022-10-22
本文引用的文献
Am J Respir Cell Mol Biol. 2018-4
Biochem Biophys Res Commun. 2016-9-23
Pharmacol Res. 2016-6
Int J Clin Exp Pathol. 2015-10-1
Stem Cell Res Ther. 2014-12-15