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Tissue tablet method: An efficient tissue banking procedure applicable to both molecular analysis and frozen tissue microarray

机译:组织片剂法:一种适用于分子分析和冷冻组织微阵列的高效组织库程序

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Summary Frozen human tissues are necessary for research purposes, but tissue banking methods have not changed for more than a decade. Many institutions use cryovial tubes or plastic molds with an optimal cutting temperature compound. However, these methods are associated with several problems, such as samples sticking to one another and the need for a larger storing space. We established an efficient tissue freezing and storing procedure ("tissue tablet method") applicable to both molecular analysis and frozen tissue microarray. Tissue samples were chopped into tiny fragments and embedded into tablet-shaped frozen optimal cutting temperature compound using our original tissue-freezing plate. These tablets can be sectioned and stored in cryovial tubes. We compared the tissue quality of tablet-shaped samples with that of conventional optimal cutting temperature blocks and found no significant difference between them. Tissue microarray is a key method to utilize tissue-banking specimens. However, most tissue microarrays require the coring out of cylindrically shaped tissues from formalin-fixed, paraffin-embedded tissue blocks. Antigenic changes and mRNA degradation are frequently observed with formalin-fixed, paraffin-embedded samples. Therefore, we have applied tablet-shaped samples to construct frozen tissue microarrays with our original mounting base. Constructed tissue microarray sections showed good morphology without obvious artifact and good immunohistochemistry and in situ hybridization results. These results suggest that the quality of arrayed samples was sufficiently appropriate for research purposes. In conclusion, the tissue tablet method and frozen tissue microarray procedure can save time, provides easy tissue handling and processing, and satisfies the demands of research methodologies and tissue banking.
机译:小结冷冻的人体组织对于研究目的是必不可少的,但是组织存储方法并没有改变十多年。许多机构使用具有最佳切削温度化合物的冷冻管或塑料模具。但是,这些方法存在一些问题,例如样品相互粘附以及需要更大的存储空间。我们建立了一种适用于分子分析和冷冻组织微阵列的有效组织冷冻和存储程序(“组织压片法”)。使用我们的原始组织冷冻板将组织样品切成小块,并嵌入片剂形状的冷冻最佳切割温度化合物中。这些片剂可以切片,并保存在冷冻管中。我们将片状样品的组织质量与常规最佳切割温度块的组织质量进行了比较,发现它们之间没有显着差异。组织微阵列是利用组织库标本的关键方法。但是,大多数组织微阵列需要从福尔马林固定的石蜡包埋的组织块中取出圆柱状组织。在福尔马林固定,石蜡包埋的样品中经常观察到抗原变化和mRNA降解。因此,我们已将片剂状样品应用于我们原始的安装基座,以构建冷冻的组织微阵列。构建的组织微阵列切片显示出良好的形态,没有明显的伪影,并且具有良好的免疫组织化学和原位杂交结果。这些结果表明,阵列样品的质量足以满足研究目的。总之,组织压片法和冷冻组织微阵列程序可以节省时间,提供容易的组织处理和处理,并满足研究方法和组织库的要求。

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