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Non-fouling encoded hydrogel microparticles for multiplex microRNA profiling directly from formalin-fixed paraffin-embedded tissue

机译:可直接从福尔马林固定的石蜡包埋的组织中进行多重microRNA分析的非污染编码水凝胶微粒

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摘要

MicroRNAs (miRNA) are short, non-coding RNAs that have been implicated in many diseases, including cancers. Because miRNAs are dysregulated in disease, miRNAs show promise as highly stable biomarkers. Formalin-fixed, paraffin-embedded (FFPE) tissue is a valuable sample type to assay for biomolecules because it is a convenient storage method and is often used by pathologists for histological staining. However, extracting biomolecules from FFPE tissue is challenging because of the presence of cellular and extracellular proteins, formaldehyde crosslinks, and paraffin. Moreover, most protocols to measure miRNA in FFPE tissue are time-consuming and laborious. Here, we report a simple protocol to directly measure miRNA from formalin-fixed cells, FFPE tissue sections after paraffin is removed, and FFPE tissue sections using encoded hydrogel microparticles fabricated using stop flow lithography. Measurements by these particles show agreement between formalin-fixed cells and fresh cells, and measurement of FFPE tissue with paraffin is 10% less than FFPE tissue when paraffin is removed before the assay. When normal and tumor FFPE tissue are compared using this microparticle assay, we observe differential miRNA signal for oncogenic miRNAs and tumor suppressing miRNAs. This approach reduces assay times, reduces the use of hazardous chemicals to remove paraffin, and provides a sensitive, quantitative, and multiplexed measurement of miRNA in FFPE tissue.
机译:微小RNA(miRNA)是短的非编码RNA,与多种疾病(包括癌症)有关。由于miRNA在疾病中失调,因此miRNA有望作为高度稳定的生物标记物。福尔马林固定,石蜡包埋(FFPE)组织是测定生物分子的重要样品类型,因为它是一种方便的保存方法,并且病理学家经常将其用于组织学染色。但是,由于存在细胞和细胞外蛋白,甲醛交联和石蜡,因此从FFPE组织中提取生物分子具有挑战性。此外,大多数用于测量FFPE组织中miRNA的方案既费时又费力。在这里,我们报告了一个简单的协议,可以直接从福尔马林固定的细胞,石蜡去除后的FFPE组织切片和使用停流光刻法制备的编码水凝胶微粒测量FFPE组织切片中直接测量miRNA。这些颗粒的测量结果表明,福尔马林固定的细胞与新鲜细胞之间存在一致性,并且在分析前去除石蜡时,用石蜡测量的FFPE组织比FFPE组织少10%。当使用此微粒测定法比较正常和肿瘤FFPE组织时,我们观察到致癌性miRNA和抑癌性miRNA的差异miRNA信号。这种方法减少了测定时间,减少了使用有害化学物质去除石蜡的可能性,并提供了FFPE组织中miRNA的灵敏,定量和多重测量。

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