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Semi-Automated Assessment of Human Islet Viability Predicts Transplantation Outcomes in a Diabetic Mouse Model

机译:人胰岛活力的半自动评估预测糖尿病小鼠模型中的移植结果

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摘要

In clinical and experimental human pancreatic islet transplantations, establishing pretransplant assessments that accurately predict transplantation outcomes is crucial. Conventional in vitro viability assessment that relies on manual counting of viable islets is a routine pretransplant assessment. However, this method does not correlate with transplantation outcomes; to improve the method, we recently introduced a semi-automated method using imaging software to objectively determine area-based viability. The goal of the present study was to correlate semi-automated viability assessment with posttransplantation outcomes of human islet transplantations in diabetic immunodeficient mice, the gold standard for in vivo functional assessment of isolated human islets. We collected data from 61 human islet isolations and 188 subsequent in vivo mouse transplantations. We assessed islet viability by fluorescein diacetate and propidium iodide staining using both the conventional and semi-automated method. Transplantations of 1,200 islet equivalents under the kidney capsule were performed in streptozotocin-induced diabetic immunodeficient mice. Among the pretransplant variables, including donor factors and post-isolation assessments, viability measured using the semi-automated method demonstrated a strong influence on in vivo islet transplantation outcomes in multivariate analysis. We calculated an optimized cutoff value (96.1%) for viability measured using the semi-automated method and showed a significant difference in diabetes reversal rate for islets with viability above this cutoff (77% reversal) vs. below this cutoff (49% reversal). We performed a detailed analysis to show that both the objective measurement and the improved area-based scoring system, which distinguished between small and large islets, were key features of the semi-automated method that allowed for precise evaluation of viability. Taken together, our results suggest that semi-automated viability assessment offers a promising alternative pretransplant assessment over conventional manual assessment to predict human islet transplantation outcomes.
机译:在临床和实验性人胰岛移植中,建立准确预测移植结果至关重要的预防植物评估至关重要。依赖于手动计数的可行性胰岛的常规体外存用评估是常规预防措施评估。然而,这种方法与移植结果没有相关;为了改进方法,我们最近推出了一种使用成像软件来象然地确定基于区域的活力的半自动方法。本研究的目的是将半自动的活力评估与糖尿病免疫缺陷小鼠的人口胰岛移植的后翻透结果相关联,该研究的体内官能胰岛体内函数评估的金标准。我们在体内小鼠移植中收集了61人胰岛分离和188的数据。我们通过常规和半自动方法评估荧光素二乙酸酯和碘化丙锭染色的胰岛活力。在链脲佐菌素诱导的糖尿病免疫缺陷小鼠中进行肾囊下的1,200个胰岛等同物的移植。在预防植物变量中,包括供体因子和隔离后评估,使用半自动方法测量的活力表明了多元分析中体内胰岛移植结果的强烈影响。我们计算了使用半自动方法测量的可行性的优化截止值(96.1%),并且对于胰岛上的糖尿病逆转率显着差异,具有高于该截止值(77%的逆转)对此截止值(49%逆转) 。我们进行了详细的分析,以表明客观测量和改进的基于区域的评分系统,这些评分系统在小型和大胰岛之间区分,是允许精确评估活力的半自动方法的关键特征。我们的结果表明,半自动的活力评估提供了对传统手动评估的有前途的替代预防措施评估,以预测人类胰岛移植结果。

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