Baert Yoni, Onofre Jaime, Van Saen Dorien, Goossens Ellen
Biology of the Testis, Research Laboratory for Reproduction, Genetics and Regenerative Medicine, Vrije Universiteit Brussel (VUB), Brussels, Belgium.
Methods Mol Biol. 2018;1748:287-294. doi: 10.1007/978-1-4939-7698-0_20.
Tissue cryopreservation uses very low temperatures to preserve structurally intact living cells in their natural microenvironment. Cell survival is strongly influenced by the biophysical effects of ice during both the freezing and the subsequent thawing. These effects can be controlled by optimizing the fragment size, type of cryoprotectant, and cooling rate. The challenge is to determine cryopreservation parameters that suit all cell types present in the tissue. Here we describe a quick and convenient protocol for the cryopreservation of testicular tissue using an isopropyl-insulated freezing device, which was validated in both a mouse and a human model.
组织冷冻保存利用极低温度在其自然微环境中保存结构完整的活细胞。在冷冻及随后的解冻过程中,细胞存活受到冰的生物物理效应的强烈影响。这些效应可通过优化碎片大小、冷冻保护剂类型和冷却速率来控制。挑战在于确定适合组织中所有细胞类型的冷冻保存参数。在此,我们描述了一种使用异丙醇绝缘冷冻装置对睾丸组织进行冷冻保存的快速便捷方案,该方案已在小鼠和人类模型中得到验证。