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一种新型的单细胞 RNA 测序方法及其在衰老相关疾病中连接基因型与表型的适用性。

A novel single-cell RNA-sequencing approach and its applicability connecting genotype to phenotype in ageing disease.

机构信息

NGS- Core Unit for Integrative Genomics, Institute of Human Genetics, University Medical Center Göttingen, Göttingen, Germany.

Institute of Human Genetics, University Medical Center Göttingen, Göttingen, Germany.

出版信息

Sci Rep. 2022 Mar 8;12(1):4091. doi: 10.1038/s41598-022-07874-1.

Abstract

Single cell multi-omics analysis has the potential to yield a comprehensive understanding of the cellular events that underlie the basis of human diseases. The cardinal feature to access this information is the technology used for single-cell isolation, barcoding, and sequencing. Most currently used single-cell RNA-sequencing platforms have limitations in several areas including cell selection, documentation and library chemistry. In this study, we describe a novel high-throughput, full-length, single-cell RNA-sequencing approach that combines the CellenONE isolation and sorting system with the ICELL8 processing instrument. This method offers substantial improvements in single cell selection, documentation and capturing rate. Moreover, it allows the use of flexible chemistry for library preparations and the analysis of living or fixed cells, whole cells independent of sizing and morphology, as well as of nuclei. We applied this method to dermal fibroblasts derived from six patients with different segmental progeria syndromes and defined phenotype associated pathway signatures with variant associated expression modifiers. These results validate the applicability of our method to highlight genotype-expression relationships for molecular phenotyping of individual cells derived from human patients.

摘要

单细胞多组学分析有可能全面了解人类疾病基础的细胞事件。获取此信息的关键特征是用于单细胞分离、标记和测序的技术。大多数目前使用的单细胞 RNA 测序平台在包括细胞选择、文档记录和文库化学在内的几个领域都存在局限性。在这项研究中,我们描述了一种新颖的高通量、全长、单细胞 RNA 测序方法,它将 CellenONE 分离和分选系统与 ICELL8 处理仪器相结合。这种方法在单细胞选择、文档记录和捕获率方面有了很大的提高。此外,它还允许使用灵活的化学方法进行文库制备,并分析活细胞或固定细胞、无需大小和形态即可分析完整细胞、以及细胞核。我们将该方法应用于来自六个不同节段性早老综合征患者的皮肤成纤维细胞,并定义了与变体相关表达修饰物相关的表型相关途径特征。这些结果验证了我们的方法的适用性,可突出源自人类患者的单个细胞的基因型-表达关系,以进行分子表型分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f56b/8904555/04ee68292944/41598_2022_7874_Fig1_HTML.jpg

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