Joddar Binata, Kumar Shweta Anil, Kumar Alok
Department of Metallurgical, Materials and Biomedical Engineering, University of Texas at El Paso, 500 W University Avenue, El Paso, TX, 79968, USA.
Border Biomedical Research Center, University of Texas at El Paso, 500W University Avenue, El Paso, TX, 79968, USA.
Cell Biochem Biophys. 2018 Jun;76(1-2):187-195. doi: 10.1007/s12013-017-0828-z. Epub 2017 Sep 23.
Adult stem cells such as mesenchymal stem cells (MSC) are known to possess the ability to augment neovascularization processes and are thus widely popular as an autologous source of progenitor cells. However there is a huge gap in our current knowledge of mechanisms involved in differentiating MSC into endothelial cells (EC), essential for lining engineered blood vessels. To fill up this gap, we attempted to differentiate human MSC into EC, by culturing the former onto chemically fixed layers of EC or its ECM, respectively. We expected direct contact of MSC when cultured atop fixed EC or its ECM, would coax the former to differentiate into EC. Results showed that human MSC cultured atop chemically fixed EC or its ECM using EC-medium showed enhanced expression of CD31, a marker for EC, compared to other cases. Further in all human MSC cultured using EC-medium, typically characteristic cobble stone shaped morphologies were noted in comparison to cells cultured using MSC medium, implying that the differentiated cells were sensitive to soluble VEGF supplementation present in the EC-medium. Results will enhance and affect therapies utilizing autologous MSC as a cell source for generating vascular cells to be used in a variety of tissue engineering applications.
诸如间充质干细胞(MSC)之类的成体干细胞已知具有增强新血管形成过程的能力,因此作为祖细胞的自体来源而广受欢迎。然而,目前我们对将MSC分化为内皮细胞(EC)(这对于构建工程化血管至关重要)所涉及的机制的了解存在巨大差距。为了填补这一差距,我们尝试通过将人MSC分别培养在化学固定的EC层或其细胞外基质(ECM)上来将其分化为EC。我们预期,当MSC培养在固定的EC或其ECM上时,两者的直接接触会促使MSC分化为EC。结果显示,与其他情况相比,使用EC培养基在化学固定的EC或其ECM上培养的人MSC显示出EC标志物CD31的表达增强。此外,在所有使用EC培养基培养的人MSC中,与使用MSC培养基培养的细胞相比,通常可以观察到典型的鹅卵石状形态,这意味着分化的细胞对EC培养基中存在的可溶性血管内皮生长因子(VEGF)补充敏感。这些结果将促进并影响利用自体MSC作为细胞来源来生成血管细胞,以用于各种组织工程应用的治疗方法。