Wang Xinghua, Baksh Syeda S, Pratt Richard E, Dzau Victor J, Hodgkinson Conrad P
Mandel Center for Hypertension and Atherosclerosis, and the Duke Cardiovascular Research Center, Duke University Medical Center, Durham, NC 27710, USA.
Mol Ther Nucleic Acids. 2024 Feb 28;35(2):102160. doi: 10.1016/j.omtn.2024.102160. eCollection 2024 Jun 11.
Reprogramming scar fibroblasts into cardiomyocytes has been proposed to reverse the damage associated with myocardial infarction. However, the limited improvement in cardiac function calls for enhanced strategies. We reported enhanced efficacy of our miR reprogramming cocktail miR combo (miR-1, miR-133a, miR-208a, and miR-499) via RNA-sensing receptor stimulation. We hypothesized that we could combine RNA-sensing receptor activation with fibroblast reprogramming by chemically modifying miR combo. To test the hypothesis, miR combo was modified to enhance interaction with the RNA-sensing receptor Rig1 via the addition of a 5'-triphosphate (5'ppp) group. Importantly, when compared with unmodified miR combo, 5'ppp-modified miR combo markedly improved reprogramming efficacy . Enhanced reprogramming efficacy correlated with a type-I interferon immune response with strong and selective secretion of interferon β (IFNβ). Antibody blocking studies and media replacement experiments indicated that 5'ppp-miR combo utilized IFNβ to enhance fibroblast reprogramming efficacy. In conclusion, miRs can acquire powerful additional roles through chemical modification that potentially increases their clinical applications.
将瘢痕成纤维细胞重编程为心肌细胞已被提议用于逆转与心肌梗死相关的损伤。然而,心脏功能改善有限,需要改进策略。我们报道了通过RNA传感受体刺激,我们的miR重编程混合物miR组合(miR-1、miR-133a、miR-208a和miR-499)的功效得到增强。我们假设可以通过化学修饰miR组合将RNA传感受体激活与成纤维细胞重编程相结合。为了验证这一假设,通过添加5'-三磷酸(5'ppp)基团对miR组合进行修饰,以增强其与RNA传感受体Rig1的相互作用。重要的是,与未修饰的miR组合相比,5'ppp修饰的miR组合显著提高了重编程效率。重编程效率的提高与I型干扰素免疫反应相关,伴有干扰素β(IFNβ)的强烈且选择性分泌。抗体阻断研究和培养基置换实验表明,5'ppp-miR组合利用IFNβ增强成纤维细胞重编程效率。总之,通过化学修饰,miR可以获得强大的额外作用,这可能会增加它们的临床应用。