School of Pharmacy, Taizhou Polytechnic College, Taizhou, China.
Bone Tissue Engineering Research Center of Taizhou, Taizhou, China.
Cell Biol Int. 2021 Sep;45(9):1926-1934. doi: 10.1002/cbin.11632. Epub 2021 Jun 9.
In the treatment of cardiovascular diseases, vascular scaffold materials play an extremely important role. The appropriate substrate chemistries and 15 dynes/cm physiological fluid shear stress (FSS) are both required to ensure normal physiological activity of human umbilical vein endothelial cells (HUVECs). The present study reported the collective influence of substrate chemistries and FSS on HUVECs in the sense of its biological functions. The CH , NH , and OH functional groups were adopted to offer a variety of substrate chemistries on glass slides by the technology of self-assembled monolayers, whereas FSS was generated by a parallel-plate fluid flow system. Substrate chemistries on its own by no means had noticeable effects on eNOS, ATP, NO, and PGI expressions, while FSS stimuli enhanced their production. While substrate chemistries, as well as FSS, were both exerted, the releases of ATP, NO, and PGI were dependent on substrate chemistries. Study of F-actin organization and focal adhesions (FAs) formation of HUVECs before FSS exposure proves that F-action organization and FAs formation followed similar chemistry-dependence. Hereby proposed a feasible mechanism, that is, the F-actin organization and FAs formation of HUVECs are controlled by substrate chemistries, further advancing the modulation of FSS-triggered responses of HUVECs.
在心血管疾病的治疗中,血管支架材料起着极其重要的作用。为了确保人脐静脉内皮细胞(HUVEC)的正常生理活性,需要适当的基底化学物质和 15 达因/厘米的生理流体剪切力(FSS)。本研究报道了基底化学物质和 FSS 对 HUVEC 的集体影响,从其生物学功能的角度来看。通过自组装单层技术,采用 CH、NH 和 OH 官能团在载玻片上提供多种基底化学物质,而 FSS 则由平行板流体流动系统产生。单独的基底化学物质对 eNOS、ATP、NO 和 PGI 的表达没有明显影响,而 FSS 刺激增强了它们的产生。当同时施加基底化学物质和 FSS 时,ATP、NO 和 PGI 的释放取决于基底化学物质。在暴露于 FSS 之前对 HUVEC 的 F-肌动蛋白组织和焦点粘连(FA)形成的研究表明,F-肌动蛋白组织和 FA 的形成遵循类似的化学依赖性。由此提出了一种可行的机制,即 HUVEC 的 F-肌动蛋白组织和 FA 的形成受基底化学物质的控制,从而进一步促进 FSS 触发的 HUVEC 反应的调制。