Differentiation of Mesenchymal Stem Cells Into Cardiac-like Cells by Co-induction of Lentiviruses Containing Mir-1 and Myocd in Chitosan Collagen Hydrogel Scaffold

S. Khazaei, M. Soleimani, Seyed Hossein Ahmadi Tafti, Z. Hojati
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Abstract

Background and Objectives Cardiovascular disease is one of the leading causes of death worldwide. Mesenchymal stem cells (MSCs) are one of the most common sources of cell-based therapies in heart regeneration. There are several approaches to differentiate MSCs into cardiac-like cells, such as genetic modification. In addition, using of 3D culture, such as hydrogels, increases the efficiency of differentiation. Methods In the present study, lentiviruses containing microRNA 1 (miR- 1) and myocardium (Myocd) were co-transducted to mouse adipose-derived MSCs. Three days after, transduced MSCs were transferred to a hydrogel containing chitosan and collagen. After 21 days, the differentiation of encapsulated cells was evaluated. In this regard, the expression of cardiac markers such as NK2 homeobox 5 (Nkx2-5), GATA binding protein 4 (Gata4) and troponin T type 2 (Tnnt2) at the level of gene and protein were investigated. Results The results of real-time quantitative polymerase chain reaction (qRT-PCR) and immunocytochemistry showed that co-induction of miR-1 and Myocd in MSCs followed by transfer to composite hydrogel increased the expression of cardiac markers. Conclusion The use of 3D culture such as chitosan/collagen hydrogel improves the differentiation of MSCs and subsequently obtains more mature cells for use in cell-based regenerative medicine
含Mir-1和心肌慢病毒在壳聚糖胶原水凝胶支架内共诱导间充质干细胞向心脏样细胞分化
背景与目的心血管疾病是世界范围内导致死亡的主要原因之一。间充质干细胞(MSCs)是心脏再生中最常见的细胞治疗来源之一。有几种方法可以将间充质干细胞分化为心脏样细胞,比如基因修饰。此外,使用三维培养,如水凝胶,可以提高分化效率。方法将含有microRNA 1 (miR- 1)和心肌(心肌)的慢病毒共转导至小鼠脂肪源性间充质干细胞。三天后,将转导的间充质干细胞转移到含有壳聚糖和胶原蛋白的水凝胶中。21 d后,观察被包被细胞的分化情况。为此,我们研究了NK2同源盒5 (Nkx2-5)、GATA结合蛋白4 (Gata4)和肌钙蛋白T型2 (Tnnt2)等心脏标志物在基因和蛋白水平上的表达。结果实时定量聚合酶链反应(qRT-PCR)和免疫细胞化学结果显示,miR-1和心肌在MSCs中共诱导后转移到复合水凝胶中,心脏标志物的表达增加。结论壳聚糖/胶原水凝胶等三维培养物可促进间充质干细胞的分化,获得更成熟的细胞,可用于细胞再生医学
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