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MicroRNA-mediated non-viral direct conversion of embryonic fibroblasts to cardiomyocytes: comparison of commercial and synthetic non-viral vectors

机译:MicroRNA介导的胚胎成纤维细胞对心肌细胞的非病毒直接转化:商业和合成非病毒载体的比较

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Technological advances opened up new ways of directing cell fate conversion from one cell lineage to another. The direct cell conversion technique has recently attracted much attention in regenerative medicine to treat devastated organs and tissues, particularly having limited regenerative capacity such as the heart and brain. Unfortunately, its clinical application is severely limited due to a safety concern and immunogenicity of viral vectors, as human gene therapy did in the beginning stages. In this study, we examined the possibility of adopting non-viral vectors to direct cell conversion from mouse embryonic fibroblasts to induced cardiomyocytes (iCM) by transient transfection of four types of chemically synthesized microRNA mimics (miRNA-1, 133, 208, and 499). Herein, we tested several commercial and synthetic non-viral gene delivery carriers, which could be divided into three different categories: polymers [branched PEI (bPEI), bioreducible PEI (PEI-SS), deoxycholic acid-conjugated PEI (DAPEI), jetPEI T, SuperFect T], lipids (Lipofectamine 2000 T), and peptides (PepMute T). According to the analyses of physicochemical properties, cellular uptake, and cytotoxicity of the carrier/miRNA complexes, DAPEI exhibited excellent miRNA delivery efficiency to mouse embryonic fibroblasts. One week after a single treatment of DA-PEI/miRNA without other adjuvants, the cells started to express cardiomyocyte-specific markers, such as alpha-actinin and alpha-MHC, indicating the formation of cardiomyocyte-like cells. Although the overall frequency of non-viral vector induced cardiomyogenic transdifferentiation was quite low (ca. 0.2%), this study can provide compelling support to develop clinically applicable transdifferentiation techniques.
机译:技术进步开辟了将细胞命运转化从一个细胞谱系指向另一个细胞的新方法。直接电池转化技术最近引起了再生药物的许多关注,以治疗破坏的器官和组织,特别是具有有限的再生能力,例如心脏和脑。不幸的是,由于病毒载体的安全问题和免疫原性,其临床应用严重限制,因为人类基因治疗在开始阶段。在这项研究中,我们检查了采用非病毒载体的可能性通过瞬时转染四种化学合成的MicroRNA模拟物(MiRNA-1,133,299和499 )。在此,我们测试了几种商业和合成的非病毒基因递送载体,可分为三种不同的类别:聚合物[支链PEI(BPEI),生物不可用PEI(PEI-SS),脱氧胆酸 - 缀合的PEI(DAPEI),JETPEI T,超细性T],脂质(Lipofectamine 2000 T)和肽(Pepmute T)。根据载体/ miRNA复合物的物理化学性质,细胞摄取和细胞毒性的分析,Dapei对小鼠胚胎成纤维细胞表现出优异的miRNA递送效率。在没有其他佐剂的情况下进行一次治疗DA-PEI / miRNA后的一周,开始表达特异性细胞特异性标记,例如α-挥发蛋白和α-MHC,表明形成有心肌细胞样细胞的形成。虽然非病毒载体诱导的心肌囊性转移细胞的总频率相当低(约0.2%),但该研究可以提供令人焦虑的支持,以在临床上进行临床应用的转化技术。

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