Ossanna Riccardo, Veronese Sheila, Quintero Sierra Lindsey Alejandra, Conti Anita, Conti Giamaica, Sbarbati Andrea
Department of Neuroscience, Biomedicine, and Movement Sciences, University of Verona, 37124 Verona, Italy.
Biomedicines. 2023 May 30;11(6):1587. doi: 10.3390/biomedicines11061587.
Cell-based therapy in regenerative medicine is a powerful tool that can be used both to restore various cells lost in a wide range of human disorders and in renewal processes. Stem cells show promise for universal use in clinical medicine, potentially enabling the regeneration of numerous organs and tissues in the human body. This is possible due to their self-renewal, mature cell differentiation, and factors release. To date, pluripotent stem cells seem to be the most promising. Recently, a novel stem cell niche, called multilineage-differentiating stress-enduring (Muse) cells, is emerging. These cells are of particular interest because they are pluripotent and are found in adult human mesenchymal tissues. Thanks to this, they can produce cells representative of all three germ layers. Furthermore, they can be easily harvested from fat and isolated from the mesenchymal stem cells. This makes them very promising, allowing autologous treatments and avoiding the problems of rejection typical of transplants. Muse cells have recently been employed, with encouraging results, in numerous preclinical studies performed to test their efficacy in the treatment of various pathologies. This review aimed to (1) highlight the specific potential of Muse cells and provide a better understanding of this niche and (2) originate the first organized review of already tested applications of Muse cells in regenerative medicine. The obtained results could be useful to extend the possible therapeutic applications of disease healing.
再生医学中的细胞疗法是一种强大的工具,可用于恢复在各种人类疾病和更新过程中丢失的各种细胞。干细胞有望在临床医学中广泛应用,有可能使人体众多器官和组织实现再生。这是因为它们具有自我更新、分化为成熟细胞以及释放因子的能力。迄今为止,多能干细胞似乎最具前景。最近,一种名为多谱系分化应激耐受(Muse)细胞的新型干细胞生态位正在兴起。这些细胞特别受关注,因为它们具有多能性,且存在于成人的间充质组织中。正因如此,它们能够产生代表所有三个胚层的细胞。此外,它们可以很容易地从脂肪中获取,并与间充质干细胞分离。这使得它们非常有前景,能够实现自体治疗并避免移植中典型的排斥问题。最近,Muse细胞已被用于众多临床前研究,以测试其在治疗各种病症方面的疗效,结果令人鼓舞。本综述旨在(1)突出Muse细胞的特殊潜力,更好地理解这个生态位,以及(2)对Muse细胞在再生医学中已测试的应用进行首次系统性综述。所获得的结果可能有助于扩展疾病治疗的潜在应用范围。