Mukherjee Neil, Chen Zhenzhen, Sambanis Athanassios, Song Ying
School of Chemical & Biomolecular Engineering, Georgia Institute of Technology, Atlanta 30332, USA.
Cell Transplant. 2005;14(7):449-56. doi: 10.3727/000000005783982882.
The use of encapsulated insulin-secreting cells constitutes a promising approach towards the treatment of insulin-dependent diabetes. However, long- term storage for off-the-shelf availability still remains an issue, which can be addressed by cryopreservation. This study investigated cryopreservation of a model tissue-engineered pancreatic substitute by two ice-free cryopreservation (vitrification) solutions (designated VS55 and PEG400) in comparison to a conventional freezing protocol. The model substitute consisted of insulin-secreting mouse insulinoma betaTC3 cells entrapped in calcium alginate/poly-L-lysine/alginate (APA) beads. Cell viability and static insulin secretion from the thawed cryopreserved groups were characterized and compared against fresh controls. Cell viability tests using alamarBlue showed that, compared to the fresh groups, the VS55 had the highest viability (p < 0.05), followed by both the PEG400 (p < 0.001) and the frozen groups (p < 0.001). In response to a square wave of glucose, the static insulin secretion data showed that the VS55 and PEG400 groups had similar induction levels against the fresh group, whereas the frozen group had the poorest secretion rate. Cryosubstitution of capsules showed ice formation in the frozen group but no ice in the vitrified groups. Microscopic observations revealed holes and/or tears within beads subjected to freezing, whereas no such abnormalities were detected in the vitrified samples. Overall, vitrification was found to be a promising preservation procedure for this encapsulated cell system.
使用封装的胰岛素分泌细胞是治疗胰岛素依赖型糖尿病的一种有前景的方法。然而,为实现现货供应的长期储存仍然是一个问题,而冷冻保存可以解决这一问题。本研究调查了两种无冰冷冻保存(玻璃化)溶液(命名为VS55和PEG400)与传统冷冻方案相比,对一种模型组织工程胰腺替代物的冷冻保存效果。该模型替代物由包裹在海藻酸钙/聚-L-赖氨酸/海藻酸盐(APA)微珠中的胰岛素分泌小鼠胰岛素瘤betaTC3细胞组成。对解冻后的冷冻保存组的细胞活力和静态胰岛素分泌进行了表征,并与新鲜对照组进行了比较。使用alamarBlue进行的细胞活力测试表明,与新鲜组相比,VS55组的活力最高(p < 0.05),其次是PEG400组(p < 0.001)和冷冻组(p < 0.001)。在葡萄糖方波刺激下,静态胰岛素分泌数据显示,VS55组和PEG400组对新鲜组的诱导水平相似,而冷冻组的分泌率最差。胶囊的冷冻替代显示,冷冻组有冰晶形成,而玻璃化组没有。显微镜观察发现,冷冻处理的微珠内有孔洞和/或撕裂,而玻璃化样品中未检测到此类异常。总体而言,玻璃化被发现是这种封装细胞系统一种有前景的保存方法。