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Hair Follicle-Derived Smooth Muscle Cells and Small Intestinal Submucosa for Engineering Mechanically Robust and Vasoreactive Vascular Media

机译:毛发卵泡衍生的平滑肌细胞和用于工程机械稳健和血管反应性血管介质的小肠脊髓凋亡

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摘要

Our laboratory recently reported a new source of smooth muscle cells (SMCs) derived from hair follicle (HF) mesenchymal stem cells. HF-SMCs demonstrated high proliferation and clonogenic potential as well as contractile function. In this study, we aimed at engineering the vascular media using HF-SMCs and a natural biomaterial, namely small intestinal submucosa (SIS). Engineering functional vascular constructs required application of mechanical force, resulting in actin reorganization and cellular alignment. In turn, cell alignment was necessary for development of receptor- and nonreceptor-mediated contractility as soon as 24 h after cell seeding. Within 2 weeks in culture, the cells migrated into SIS and secreted collagen and elastin, the two major extracellular matrix components of the vessel wall. At 2 weeks, vascular reactivity increased significantly up to three-to fivefold and mechanical properties were similar to those of native ovine arteries. Taken together, our data demonstrate that the combination of HF-SMCs with SIS resulted in mechanically strong, biologically functional vascular media with potential for arterial implantation.
机译:我们的实验室最近报告了衍生自毛囊(HF)间充质干细胞的新来源的光滑肌细胞(SMC)。 HF-SMC证明了高增殖和克隆源性以及收缩功能。在这项研究中,我们针对使用HF-SMC和天然生物材料,即小肠脊髓粘膜(SIS)来工程血管介质。工程功能血管结构所需的机械力施加,导致肌动蛋白重组和细胞比对。反过来,在细胞播种后24小时,在24小时后,必须对受体和非受体介导的收缩性进行细胞对准。在培养2周内,细胞迁移到SIS和分泌的胶原蛋白和弹性蛋白中,血管壁的两个主要细胞外基质组分。在2周,血管反应性显着增加至三倍至五倍,而机械性能与天然绵羊动脉相似。我们的数据一起表明,HF-SMC与SIS的组合导致机械强的生物功能血管介质,具有动脉植入潜力。

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