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首页> 外文期刊>Biopreservation and biobanking >Validation of Vacuum-Based Refrigerated System for Biobanking Tissue Preservation: Analysis of Cellular Morphology, Protein Stability, and RNA Quality
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Validation of Vacuum-Based Refrigerated System for Biobanking Tissue Preservation: Analysis of Cellular Morphology, Protein Stability, and RNA Quality

机译:基于真空的冷藏系统用于生物库组织保存的验证:细胞形态,蛋白质稳定性和RNA质量的分析

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Biobanks of fresh, unfixed human normal and malignant tissues represent a valuable source for gene expression analysis in translational cancer research and molecular pathology. However, the success of molecular and cellular analysis in both clinical and translational research is strongly dependent on the collection, handling, storage, and quality control of fresh human tissue samples. The aim of this study was to evaluate an innovative vacuum-based refrigerated system, as a logistically feasible technology to increase the collection of tissue specimens, preserving the integrity of cellular and molecular components. We tested randomly-selected tissues stored under vacuum at 4℃ by using endpoints important for research and diagnosis, including tissue morphology, epitope stability, and RNA integrity. Gene expression was evaluated by qualitative and quantitative RT analysis of selected housekeeping and tissue-specific genes. Tissue morphology and overall protein stability were generally well preserved, being compromised only in gallbladder tissue. By contrast, phosphoprotein and RNA analysis demonstrated a time-dependent degree of degradation, with progressive loss of stability from 24 to 72 hours. However, this reduction in RNA quality did not represent a limitation for successful expression analysis of selected genes. Indeed, a comparative qualitative and quantitative RT-PCR analysis showed that RNA extracted from tissues stored under vacuum is suitable for gene expression profiling, but requires highly sensitive technologies, such as quantitative RT-PCR. These data suggest that the refrigerated vacuum-based system represents a suitable and feasible technology for routine transport of fresh specimens from surgery to biobanks, thus increasing the opportunity to collect biospecimens.
机译:新鲜的,未固定的人类正常和恶性组织的生物库代表了转化癌症研究和分子病理学中基因表达分析的宝贵资源。但是,分子和细胞分析在临床和转化研究中的成功很大程度上取决于新鲜人体组织样品的收集,处理,储存和质量控制。这项研究的目的是评估一种创新的基于真空的制冷系统,这是一种在逻辑上可行的技术,可以增加组织标本的收集量,并保持细胞和分子成分的完整性。我们使用对研究和诊断重要的终点(包括组织形态,表位稳定性和RNA完整性)对随机选择的组织进行了测试,这些组织在4℃的真空下保存。通过定性和定量RT分析选定的管家基因和组织特异性基因来评估基因表达。组织形态和总体蛋白质稳定性通常被很好地保存,仅在胆囊组织中受到损害。相比之下,磷蛋白和RNA分析显示了降解的时间依赖性,稳定性从24到72小时逐渐丧失。但是,RNA质量的下降并不代表成功进行所选基因表达分析的局限性。实际上,比较的定性和定量RT-PCR分析表明,从真空下存储的组织中提取的RNA适合进行基因表达谱分析,但需要高度敏感的技术,例如定量RT-PCR。这些数据表明,基于冷藏的基于真空的系统代表了一种合适的可行技术,用于将新鲜标本从外科手术常规转移到生物库,从而增加了收集生物标本的机会。

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