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平滑肌细胞Piezo1缺失导致小鼠小肠收缩特性受损。

Smooth muscle cell Piezo1 depletion results in impaired contractile properties in murine small bowel.

作者信息

Bautista Geoanna M, Du Yingjie, Matthews Michael J, Flores Allison M, Kushnir Nicole R, Sweeney Nicolle K, Nguyen Nam Phuong N, Tokhtaeva Elmira, Solorzano-Vargas R S, Lewis Michael, Stelzner Matthias, He Ximin, Dunn James C Y, Martin Martin G

机构信息

Department of Pediatrics, Division of Neonatology, University of California Davis Children's Hospital, Sacramento, CA, 95817, USA.

Department of Pediatrics, Division of Neonatal-Perinatal Medicine, Mattel Children's Hospital and the David Geffen School of Medicine, University of California Los Angeles, Los Angeles, CA, 90095, USA.

出版信息

Commun Biol. 2025 Mar 17;8(1):448. doi: 10.1038/s42003-025-07697-6.

Abstract

Piezo1 is a mechanosensitive cation channel expressed in intestinal muscularis cells (IMCs), including smooth muscle cells (SMCs), interstitial cells of Cajal, and Pdgfrα+ cells, which form the SIP syncytium, crucial for GI contractility. Here, we investigate the effects of SMC-specific Piezo1 deletion on small bowel function. Piezo1 depletion results in weight loss, delayed GI transit, muscularis thinning, and decreased SMCs. Ex vivo analyses demonstrated impaired contractile strength and tone, while in vitro studies using IMC co-cultures show dysrhythmic Ca flux with decreased frequency. Imaging reveal that Piezo1 localizes intracellularly, thereby likely impacting Ca signaling mechanisms modulated by Ca -handling channels located on the sarcoplasmic reticulum and plasma membrane. Our findings suggest that Piezo1 in small bowel SMCs contributes to contractility by maintaining intracellular Ca activity and subsequent signaling within the SIP syncytium. These findings provide new insights into the complex role of Piezo1 in small bowel SMCs and its implications for GI motility.

摘要

Piezo1是一种机械敏感阳离子通道,在肠道肌层细胞(IMC)中表达,包括平滑肌细胞(SMC)、 Cajal间质细胞和形成SIP合胞体的Pdgfrα+细胞,这对胃肠收缩性至关重要。在此,我们研究SMC特异性Piezo1缺失对小肠功能的影响。Piezo1缺失导致体重减轻、胃肠运输延迟、肌层变薄和SMC减少。体外分析表明收缩强度和张力受损,而使用IMC共培养的体外研究显示钙通量节律异常且频率降低。成像显示Piezo1定位于细胞内,从而可能影响由位于肌浆网和质膜上的钙处理通道调节的钙信号机制。我们的研究结果表明,小肠SMC中的Piezo1通过维持细胞内钙活性以及随后在SIP合胞体内的信号传导来促进收缩性。这些发现为Piezo1在小肠SMC中的复杂作用及其对胃肠动力的影响提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a8fe/11914552/9fb228015e0f/42003_2025_7697_Fig1_HTML.jpg

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