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首页> 外文期刊>Current Directions in Biomedical Engineering >A step towards enzyme-free tissue dissociation : Current Directions in Biomedical Engineering
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A step towards enzyme-free tissue dissociation : Current Directions in Biomedical Engineering

机译:迈向无酶组织解离的一步:生物医学工程学的最新方向

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The future of personalized diagnostics commences on the single cell level. Even high-end technologies like Next Generation Sequencing can be improved if applied on pure single cell populations (e.g., tumor cells without contaminating stromal cells) or on a single cell level (DNA/RNA sequencing). The vast majority of these technologies need individual and preferably undistorted cells for the analytical process. Thus, decisive prerequisite for high-end analytics is to remove cells from their tissue matrix as gently as possible. This can be accomplished by an enzyme-free, fast and reproducible approach of generating pure and individual single cells from tissue samples. In this study we demonstrate the utility of a semi-automated Tissue Grinder that is compatible with standard 50 ml centrifuge tubes and standard cell strainer for mechanically, nonenzymatic and parallel processing of tissue samples. We show that without enzymatic treatment viable single-cell yields match or exceed reference enzymatic methods, while reducing processing time by at least 80%.
机译:个性化诊断的未来始于单细胞水平。如果将其应用于纯单细胞群体(例如不污染基质细胞的肿瘤细胞)或单细胞水平(DNA / RNA测序),甚至可以改进下一代测序等高端技术。这些技术中的绝大多数需要单独的,最好是未变形的细胞进行分析过程。因此,高端分析的决定性先决条件是尽可能轻柔地从组织矩阵中去除细胞。这可以通过无酶,快速且可重现的方法来完成,该方法可从组织样本中生成纯净的单个细胞。在这项研究中,我们演示了与标准50 ml离心管和标准细胞过滤器兼容的半自动组织研磨机的实用性,可对组织样品进行机械,非酶促和并行处理。我们显示,没有酶处理,可行的单细胞产量达到或超过参考酶方法,同时将处理时间缩短至少80%。

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