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胰腺保存溶液的研发:低温保存后用于β细胞存活和代谢状态的细胞保护补充剂的初步筛选。

Development of pancreas storage solutions: Initial screening of cytoprotective supplements for β-cell survival and metabolic status after hypothermic storage.

作者信息

Campbell Lia H, Taylor Michael J, Brockbank Kelvin G M

机构信息

1 Cell and Tissue Systems, Inc. , North Charleston, South Carolina.

出版信息

Biopreserv Biobank. 2013 Feb;11(1):12-8. doi: 10.1089/bio.2012.0023. Epub 2013 Feb 6.

Abstract

Insulin-dependent diabetes mellitus is one of the leading causes of death world-wide. Donor-derived pancreas and Islet of Langerhans transplantation are potential cures; however, postmortem ischemia impacts islet quality. The murine βt3 cell line was employed as a model to study cell viability and proliferation after hypothermic storage by comparing Belzer's Machine Perfusion Solution with Unisol™ Solution. The objective was to determine which of these solutions provided the best base line support for βt3 cells and to screen potential cytoprotective additives to the solutions. Initial βt3 cell viability was similar in the two storage solutions; however, better proliferation was observed after storage in Unisol Solution. The caspase inhibitor, Q-VD-OPH, and α-tocopherol improved viability in both storage solutions, suggesting that apoptotic pathways may be responsible for cell death during hypothermic storage of βt3 cells. Analysis of apoptosis markers, caspase activity, and DNA laddering showed a reduction in apoptosis when these additives were included. The effects of Q-VD-OPH and α-tocopherol were also synergistic when employed together during either hypothermic exposure, post-hypothermic physiologic incubation, or combinations of hypothermic exposure and physiologic incubation. These results suggest that both supplements should be included in pancreas hypothermic storage solutions and in islet culture media during post-isolation culture prior to transplantation.

摘要

胰岛素依赖型糖尿病是全球主要死因之一。供体来源的胰腺和胰岛移植是潜在的治疗方法;然而,死后缺血会影响胰岛质量。通过将Belzer机器灌注液与Unisol™溶液进行比较,采用小鼠βt3细胞系作为模型来研究低温保存后的细胞活力和增殖情况。目的是确定这些溶液中哪一种能为βt3细胞提供最佳的基线支持,并筛选溶液中潜在的细胞保护添加剂。两种保存溶液中初始βt3细胞活力相似;然而,在Unisol溶液中保存后观察到更好的增殖情况。半胱天冬酶抑制剂Q-VD-OPH和α-生育酚在两种保存溶液中均提高了细胞活力,这表明凋亡途径可能是βt3细胞低温保存期间细胞死亡的原因。对凋亡标志物、半胱天冬酶活性和DNA梯状条带的分析表明,加入这些添加剂后凋亡减少。在低温暴露、低温后生理孵育或低温暴露与生理孵育的组合过程中同时使用Q-VD-OPH和α-生育酚时,其效果也具有协同性。这些结果表明,在胰腺低温保存溶液以及移植前分离后培养期间的胰岛培养基中均应加入这两种添加剂。

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