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降解和挑战性新鲜冷冻样本的空间分辨转录组分析。

Spatially resolved transcriptomic profiling of degraded and challenging fresh frozen samples.

机构信息

Department of Gene Technology, KTH Royal Institute of Technology, Science for Life Laboratory, Stockholm, Sweden.

Department of Women's and Children's Health, Karolinska Institute, Solna, Sweden and Astrid Lindgren Children's Hospital, Karolinska University Hospital, Solna, Sweden.

出版信息

Nat Commun. 2023 Jan 31;14(1):509. doi: 10.1038/s41467-023-36071-5.

Abstract

Spatially resolved transcriptomics has enabled precise genome-wide mRNA expression profiling within tissue sections. The performance of methods targeting the polyA tails of mRNA relies on the availability of specimens with high RNA quality. Moreover, the high cost of currently available spatial resolved transcriptomics assays requires a careful sample screening process to increase the chance of obtaining high-quality data. Indeed, the upfront analysis of RNA quality can show considerable variability due to sample handling, storage, and/or intrinsic factors. We present RNA-Rescue Spatial Transcriptomics (RRST), a workflow designed to improve mRNA recovery from fresh frozen specimens with moderate to low RNA quality. First, we provide a benchmark of RRST against the standard Visium spatial gene expression protocol on high RNA quality samples represented by mouse brain and prostate cancer samples. Then, we test the RRST protocol on tissue sections collected from five challenging tissue types, including human lung, colon, small intestine, pediatric brain tumor, and mouse bone/cartilage. In total, we analyze 52 tissue sections and demonstrate that RRST is a versatile, powerful, and reproducible protocol for fresh frozen specimens of different qualities and origins.

摘要

空间分辨转录组学使人们能够在组织切片内精确地进行全基因组 mRNA 表达谱分析。针对 mRNA 多聚 A 尾巴的方法的性能依赖于具有高质量 RNA 的标本的可用性。此外,目前可用的空间分辨转录组学检测方法的高成本需要仔细的样本筛选过程,以增加获得高质量数据的机会。事实上,由于样本处理、储存和/或内在因素,RNA 质量的前期分析可能会显示出相当大的可变性。我们提出了 RNA 挽救空间转录组学(RRST),这是一种旨在从具有中等到低 RNA 质量的新鲜冷冻标本中提高 mRNA 回收率的工作流程。首先,我们在代表小鼠大脑和前列腺癌样本的高 RNA 质量样本上,对 RRST 与标准 Visium 空间基因表达方案进行了基准测试。然后,我们在五个具有挑战性的组织类型(包括人肺、结肠、小肠、小儿脑肿瘤和小鼠骨/软骨)收集的组织切片上测试了 RRST 方案。总共分析了 52 个组织切片,证明了 RRST 是一种针对不同质量和来源的新鲜冷冻标本的通用、强大且可重复的方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a70/9889806/86b84717d28e/41467_2023_36071_Fig1_HTML.jpg

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