Federal State Budgetary Educational Institution of Higher Education, Privolzhsky Research Medical University of the Ministry of Health of the Russian Federation, 603005 Nizhny Novgorod, Russia.
Cells. 2022 Aug 29;11(17):2691. doi: 10.3390/cells11172691.
Mesenchymal stem cells (MSCs) manifest vast opportunities for clinical use due both to their ability for self-renewal and for effecting paracrine therapeutic benefits. At the same time, difficulties with non-recurrent generation of large numbers of cells due to the necessity for long-term MSC expansion ex vivo, or the requirement for repeated sampling of biological material from a patient significantly limits the current use of MSCs in clinical practice. One solution to these problems entails the creation of a biobank using cell cryopreservation technology. This review is aimed at analyzing and classifying literature data related to the development of protocols for the cryopreservation of various types of MSCs and tissue-engineered structures. The materials in the review show that the existing techniques and protocols for MSC cryopreservation are very diverse, which significantly complicates standardization of the entire process. Here, the selection of cryoprotectors and of cryoprotective media shows the greatest variability. Currently, it is the cryopreservation of cell suspensions that has been studied most extensively, whereas there are very few studies in the literature on the freezing of intact tissues or of tissue-engineered structures. However, even now it is possible to develop general recommendations to optimize the cryopreservation process, making it less traumatic for cells.
间充质干细胞(MSCs)因其自我更新能力和旁分泌治疗益处而具有广泛的临床应用潜力。但同时,由于需要长期体外 MSC 扩增,或者需要从患者反复采集生物材料,导致难以反复生成大量细胞,这极大地限制了 MSCs 在临床实践中的应用。解决这些问题的一种方法是使用细胞冷冻保存技术创建生物库。本综述旨在分析和分类与开发各种类型 MSCs 和组织工程结构的冷冻保存方案相关的文献数据。综述中的材料表明,现有的 MSC 冷冻保存技术和方案非常多样化,这使得整个过程的标准化变得非常复杂。在这里,冷冻保护剂和冷冻保护介质的选择显示出最大的可变性。目前,细胞悬浮液的冷冻保存研究最为广泛,而关于完整组织或组织工程结构冷冻的文献研究却很少。然而,即使在现在,也有可能制定出优化冷冻保存过程的一般建议,使细胞受到的损伤更小。