| Literature DB >> 34153657 |
Peng Chen1, Gangyu Zhang2, Shan Jiang2, Yile Ning3, Bo Deng3, Xianmei Pan3, Silin Liu3, Yu He3, Lei Zhang3, Rentao Wan3, Zhiming Wu3, Qi He3, Jiang Yin4, Haibin Wang5, Jing Li6.
Abstract
Piezo1, a calcium-permeable non-selective cationic channel that senses mechanical stimulation in multicellular organisms, mediates various biological processes, including angiogenesis. The supply of nutrients and oxygen through newly formed blood vessels at the fractured lesion is critical for bone fracture repair. The elucidation of the underlying mechanisms involved in angiogenesis and bone repair can aid in improving fracture healing. Here, mice with endothelial cell-specific deletion of Piezo1 channels were used to examine the role of Piezo1 in the initiation of fracture healing. The expression and distribution of Piezo1 was explored in the vasculature of the bone. The deletion of endothelial Piezo1 resulted in impaired bone fracture repair, downregulation of calcium-activated proteolytic calpain activity during vascularization, inhibition of osteoblast maturation and ossification, downregulation of phosphorylated PI3K-AKT, and impaired Notch signaling during bone fracture union. These findings indicated that Piezo1 protein is a potential target for enhancing bone regeneration and treating delayed or nonunion bone fractures.Entities:
Keywords: Angiogenesis; Bone fracture healing; Notch; Piezo1
Year: 2021 PMID: 34153657 DOI: 10.1016/j.ceca.2021.102431
Source DB: PubMed Journal: Cell Calcium ISSN: 0143-4160 Impact factor: 6.817