Pant Tarun, Juric Matea, Bosnjak Zeljko J, Dhanasekaran Anuradha
Department of Medicine, Medical College of Wisconsin, Milwaukee, WI, United States.
Department of Biophysics, Medical College of Wisconsin, Milwaukee, WI, United States.
Front Cardiovasc Med. 2021 Oct 1;8:737512. doi: 10.3389/fcvm.2021.737512. eCollection 2021.
Advances in the field of regenerative medicine and tissue engineering over the past few decades have paved the path for cell-free therapy. Numerous stem cell types, including mesenchymal stem cells (MSCs), have been reported to impart therapeutic effects paracrine secretion of exosomes. The underlying factors and the associated mechanisms contributing to these MSC-derived exosomes' protective effects are, however, poorly understood, limiting their application in the clinic. The exosomes exhibit a diversified repertoire of functional non-coding RNAs (ncRNAs) and have the potential to transfer these biologically active transcripts to the recipient cells, where they are found to modulate a diverse array of functions. Altered expression of the ncRNAs in the exosomes has been linked with the regenerative potential and development of various diseases, including cardiac, neurological, skeletal, and cancer. Also, modulating the expression of ncRNAs in these exosomes has been found to improve their therapeutic impact. Moreover, many of these ncRNAs are expressed explicitly in the MSC-derived exosomes, making them ideal candidates for regenerative medicine, including tissue engineering research. In this review, we detail the recent advances in regenerative medicine and summarize the evidence supporting the altered expression of the ncRNA repertoire specific to MSCs under different degenerative diseases. We also discuss the therapeutic role of these ncRNA for the prevention of these various degenerative diseases and their future in translational medicine.
在过去几十年中,再生医学和组织工程领域的进展为无细胞疗法铺平了道路。据报道,包括间充质干细胞(MSC)在内的多种干细胞类型可通过外泌体的旁分泌发挥治疗作用。然而,导致这些源自MSC的外泌体发挥保护作用的潜在因素和相关机制尚不清楚,这限制了它们在临床上的应用。外泌体展示了多种功能性非编码RNA(ncRNA),并有可能将这些生物活性转录本转移到受体细胞中,在那里它们被发现可调节多种功能。外泌体中ncRNA的表达改变与包括心脏、神经、骨骼和癌症在内的各种疾病的再生潜力和发展有关。此外,调节这些外泌体中ncRNA的表达已被发现可提高它们的治疗效果。而且,许多这些ncRNA在源自MSC的外泌体中特异性表达,使其成为再生医学(包括组织工程研究)的理想候选者。在这篇综述中,我们详细介绍了再生医学的最新进展,并总结了支持不同退行性疾病下特定于MSC的ncRNA库表达改变的证据。我们还讨论了这些ncRNA在预防这些各种退行性疾病中的治疗作用及其在转化医学中的未来。