Functional screening identifies miRNAs with a novel function inhibiting vascular smooth muscle cell proliferation.

IF 12.1 1区 医学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Molecular Therapy Pub Date : 2024-12-30 DOI:10.1016/j.ymthe.2024.12.037
Julie Rodor, Eftychia Klimi, Simon D Brown, Georgios Krilis, Luca Braga, Nadja A R Ring, Margaret D Ballantyne, Despoina Kesidou, Aurelie Nguyen Dinh Cat, Vladislav Miscianinov, Francesca Vacante, Katarina Miteva, Matthew Bennett, Abdelaziz Beqqali, Mauro Giacca, Serena Zacchigna, Andrew H Baker
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Abstract

Proliferation of vascular smooth muscle cells (vSMCs) is a crucial contributor to pathological vascular remodeling. MicroRNAs (miRNAs) are powerful gene regulators and attractive therapeutic agents. Here, we aimed to systematically identify and characterize miRNAs with therapeutic potential in targeting vSMC proliferation. Using high-throughput screening, we assessed the impact of 2,042 human miRNA mimics on vSMC proliferation and identified seven miRNAs with novel vSMC anti-proliferative function: miR-323a-3p, miR-449b-5p, miR-491-3p, miR-892b, miR-1827, miR-4774-3p, and miR-5681b. miRNA-mimic treatment affects proliferation of vSMCs from different vascular beds. Focusing on vein graft failure, where miRNA-based therapeutics can be applied to the graft ex vivo, we showed that these miRNAs reduced human saphenous vein smooth muscle cell (HSVSMC) proliferation without toxic effect. HSVSMC transcriptomics revealed a distinct set of targets for each miRNA, leading to the common downregulation of a cell-cycle gene network for all miRNAs. For miR-449b-5p, we showed that its candidate target, CCND1, contributes to HSVSMC proliferation. In contrast to HSVSMCs, miRNA overexpression in endothelial cells led to a limited response in terms of proliferation and transcriptomics. In an ex vivo vein organ model, overexpression of miR-323a-3p and miR-449b-5p reduced medial proliferation. Collectively, the results of our study show the therapeutic potential of seven miRNAs to target pathological vascular remodeling.

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功能筛选鉴定出具有抑制血管平滑肌细胞增殖新功能的mirna。
血管平滑肌细胞(vSMCs)的增殖是病理性血管重构的重要因素。MicroRNAs (miRNAs)是一种强大的基因调节剂和有吸引力的治疗药物。在这里,我们的目标是系统地识别和表征具有治疗潜力的靶向vSMC增殖的mirna。通过高通量筛选,我们评估了2042种人类mirna模拟物对vSMC增殖的影响,并鉴定出7种具有新型vSMC抗增殖功能的mirna: miR-323a-3p、miR-449b-5p、miR-491-3p、miR-892b、miR-1827、miR-4774-3p、miR-5681b。mirna模拟治疗影响来自不同血管床的vSMCs的增殖。关注静脉移植失败,基于mirna的治疗方法可以应用于离体移植物,我们发现这些mirna减少了人隐静脉SMC (HSVSMC)的增殖而没有毒性作用。HSVSMC转录组学揭示了每种miRNA的不同靶点,导致所有miRNA的细胞周期基因网络共同下调。对于miR-449b-5p,我们发现其候选靶点CCND1有助于HSVSMC的增殖。与HSVSMC相反,内皮细胞中的miRNA过表达导致增殖和转录组学方面的有限反应。在离体静脉器官模型中,过表达miR-323a-3p和miR-449b-5p可减少内侧部增殖。总的来说,我们的研究显示了7种mirna针对病理性血管重构的治疗潜力。
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来源期刊
Molecular Therapy
Molecular Therapy 医学-生物工程与应用微生物
CiteScore
19.20
自引率
3.20%
发文量
357
审稿时长
3 months
期刊介绍: Molecular Therapy is the leading journal for research in gene transfer, vector development, stem cell manipulation, and therapeutic interventions. It covers a broad spectrum of topics including genetic and acquired disease correction, vaccine development, pre-clinical validation, safety/efficacy studies, and clinical trials. With a focus on advancing genetics, medicine, and biotechnology, Molecular Therapy publishes peer-reviewed research, reviews, and commentaries to showcase the latest advancements in the field. With an impressive impact factor of 12.4 in 2022, it continues to attract top-tier contributions.
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