Department of Physiology and Cell Biology, University of Nevada, Reno School of Medicine, Reno, Nevada, United States.
Nevada Surgical Associates, Reno, Nevada, United States.
Am J Physiol Cell Physiol. 2023 May 1;324(5):C992-C1006. doi: 10.1152/ajpcell.00043.2023. Epub 2023 Mar 20.
The main function of the stomach is to digest ingested food. Gastric antrum muscular contractions mix ingested food with digestive enzymes and stomach acid and propel the chyme through the pyloric sphincter at a rate in which the small intestine can process the chyme for optimal nutrient absorption. Mfge8 binding to α8β1 integrins helps regulate gastric emptying by reducing the force of antral smooth muscle contractions. The source of Mfge8 within gastric muscles is unclear. Since Mfge8 is a secreted protein, Mfge8 could be delivered via the circulation, or be locally secreted by cells within the muscle layers. In this study, we identify a source of Mfge8 within human gastric antrum muscles using spatial transcriptomic analysis. We show that Mfge8 is expressed in subpopulations of Mef2c perivascular cells within the submucosa layer of the gastric antrum. Mef2c is expressed in subpopulations of NG2 and PDGFRB pericytes. Mfge8 is expressed in NG2/Mef2c pericytes, but not in NG2/Mef2c, PDGFRB/Mef2c, or PDGFRB/Mef2c pericytes. Mfge8 is absent from CD34 endothelial cells but is expressed in a small population of perivascular ACTA2 cells. We also show that α8 integrin is not expressed by interstitial cells of Cajal (ICC), supporting the findings that Mfge8 attenuates gastric antrum smooth muscle contractions by binding to α8β1 integrins on enteric smooth muscle cells. These findings suggest a novel, supplementary mechanism of regulation of gastric antrum motility by cellular regulators of capillary blood flow, in addition to the regulation of gastric antrum motility by the enteric nervous system and the SMC, ICC, and PDGFRα cell (SIP) syncytium.
胃的主要功能是消化摄入的食物。胃窦肌层收缩将摄入的食物与消化酶和胃酸混合,并通过幽门括约肌以小肠能够处理食糜以实现最佳营养吸收的速度推进食糜。Mfge8 与 α8β1 整联蛋白结合有助于通过减少胃窦平滑肌收缩的力度来调节胃排空。胃肌内 Mfge8 的来源尚不清楚。由于 Mfge8 是一种分泌蛋白,因此可以通过循环系统输送,也可以由肌肉层内的细胞局部分泌。在这项研究中,我们使用空间转录组分析鉴定了人胃窦肌肉中 Mfge8 的来源。我们表明,Mfge8 在胃窦黏膜下层的 Mef2c 血管周围细胞的亚群中表达。Mef2c 在 NG2 和 PDGFRB 周细胞的亚群中表达。Mfge8 在 NG2/Mef2c 周细胞中表达,但不在 NG2/Mef2c、PDGFRB/Mef2c 或 PDGFRB/Mef2c 周细胞中表达。Mfge8 不存在于 CD34 内皮细胞中,但存在于一小部分血管周 ACTA2 细胞中。我们还表明,α8 整联蛋白不表达于肠肌间细胞(ICC),这支持了 Mfge8 通过与肠平滑肌细胞上的 α8β1 整联蛋白结合来减弱胃窦平滑肌收缩的发现。这些发现表明,除了肠神经系统和 SMC、ICC 和 PDGFRα 细胞(SIP)合胞体对胃窦运动的调节外,毛细血管血流的细胞调节剂对胃窦运动具有一种新的、补充性的调节机制。