Department of Pathology, Johns Hopkins University School of Medicine, Baltimore, Maryland.
Department of Genetic Medicine, Johns Hopkins University School of Medicine, Baltimore, Maryland.
Lab Invest. 2023 Jul;103(7):100133. doi: 10.1016/j.labinv.2023.100133. Epub 2023 Mar 28.
Cell-specific microRNA (miRNA) expression estimates are important in characterizing the localization of miRNA signaling within tissues. Much of these data are obtained from cultured cells, a process known to significantly alter miRNA expression levels. Thus, our knowledge of in vivo cell miRNA expression estimates is poor. We previously demonstrated expression microdissection-miRNA-sequencing (xMD-miRNA-seq) to acquire in vivo estimates, directly from formalin-fixed tissues, albeit with a limited yield. In this study, we optimized each step of the xMD process, including tissue retrieval, tissue transfer, film preparation, and RNA isolation, to increase RNA yields and ultimately show strong enrichment for in vivo miRNA expression by qPCR array. These method improvements, such as the development of a noncrosslinked ethylene vinyl acetate membrane, resulted in a 23- to 45-fold increase in miRNA yield, depending on the cell type. By qPCR, miR-200a increased by 14-fold in xMD-derived small intestine epithelial cells, with a concurrent 336-fold reduction in miR-143 relative to the matched nondissected duodenal tissue. xMD is now an optimized method to obtain robust in vivo miRNA expression estimates from cells. xMD will allow formalin-fixed tissues from surgical pathology archives to make theragnostic biomarker discoveries.
细胞特异性 microRNA (miRNA) 表达估计对于描述 miRNA 信号在组织内的定位非常重要。这些数据大多来自于培养细胞,而这一过程已知会显著改变 miRNA 的表达水平。因此,我们对体内细胞 miRNA 表达估计的了解是有限的。我们之前曾通过表达微切割 miRNA 测序 (xMD-miRNA-seq) 直接从福尔马林固定组织中获得体内估计值,尽管产量有限。在这项研究中,我们优化了 xMD 过程的每一步,包括组织采集、组织转移、膜片制备和 RNA 分离,以提高 RNA 产量,并最终通过 qPCR 阵列显示出对体内 miRNA 表达的强烈富集。这些方法改进,例如开发非交联的乙烯-醋酸乙烯酯膜,导致 miRNA 产量增加了 23 到 45 倍,具体取决于细胞类型。通过 qPCR,xMD 衍生的小肠上皮细胞中 miR-200a 增加了 14 倍,而相对于匹配的非解剖十二指肠组织,miR-143 则降低了 336 倍。xMD 现在是一种从细胞中获得稳健的体内 miRNA 表达估计的优化方法。xMD 将允许从外科病理学档案中的福尔马林固定组织中进行治疗诊断生物标志物的发现。