Xiangya School of Pharmaceutical Sciences, Central South University, Changsha, Hunan 410013, China.
ACS Biomater Sci Eng. 2023 Mar 13;9(3):1190-1204. doi: 10.1021/acsbiomaterials.2c01225. Epub 2023 Feb 13.
Cells and tissues are the foundation of translational medicine. At present, one of the main technological obstacles is their preservation for long-term usage while maintaining adequate viability and function. Optimized storage techniques must be developed to make them safer to use in the clinic. Cryopreservation is the most common long-term preservation method to maintain the vitality and function of cells and tissues. But, the formation of ice crystals in cells and tissues is considered to be the main mechanism that could harm cells and tissues during freezing and thawing. To reduce the formation of ice crystals, cryoprotective agents (CPAs) must be added to the cells and tissues to achieve the cryoprotective effect. However, conventional cryopreservation of cells and tissues often needs to use toxic organic solvents as CPAs. As a result, cryopreserved cells and tissues may need to go through a time-consuming washing process to remove CPAs for further applications in translational medicine, and multiple valuable cells are potentially lost or killed. Currently, trehalose has been researched as a nontoxic CPA due to its cryoprotective ability and stability during cryopreservation. Nevertheless, trehalose is a nonpermeable CPA, and the lack of an effective intracellular trehalose delivery method has become the main obstacle to its use in cryopreservation. This article illustrated the properties, mechanisms, delivery methods, and applications of trehalose, summarized the benefits and limits of trehalose, and summed up the findings and research direction of trehalose in biomedical cryopreservation.
细胞和组织是转化医学的基础。目前,主要的技术障碍之一是在保持足够的活力和功能的同时,对其进行长期保存。必须开发优化的储存技术,使其在临床上更安全地使用。冷冻保存是保持细胞和组织活力和功能的最常见的长期保存方法。但是,细胞和组织中冰晶的形成被认为是冷冻和解冻过程中损害细胞和组织的主要机制。为了减少冰晶的形成,必须向细胞和组织中添加冷冻保护剂(CPAs)以实现冷冻保护效果。然而,传统的细胞和组织的冷冻保存通常需要使用有毒的有机溶剂作为 CPAs。因此,为了在转化医学中进一步应用,冷冻保存的细胞和组织可能需要经过耗时的洗涤过程以去除 CPAs,并且可能会损失或杀死多个有价值的细胞。目前,海藻糖已被研究为一种无毒的 CPA,因为它在冷冻保存过程中具有冷冻保护能力和稳定性。然而,海藻糖是一种不可渗透的 CPA,缺乏有效的细胞内海藻糖输送方法已成为其在冷冻保存中应用的主要障碍。本文阐述了海藻糖的性质、机制、输送方法和应用,总结了海藻糖的优点和局限性,并总结了海藻糖在生物医学冷冻保存中的研究结果和研究方向。