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优化用于单细胞应用的小鼠肾脏消化方案。

Optimization of mouse kidney digestion protocols for single-cell applications.

机构信息

Centre for Cardiovascular Biology and Disease Research, Department of Microbiology, Anatomy Physiology and Pharmacology, School of Agriculture, Biomedicine and Environment, La Trobe University, Bundoora, Victoria, Australia.

Baker Heart and Diabetes Research Institute, Melbourne, Victoria, Australia.

出版信息

Physiol Genomics. 2024 Jul 1;56(7):469-482. doi: 10.1152/physiolgenomics.00002.2024. Epub 2024 Mar 25.

Abstract

Single-cell technologies such as flow cytometry and single-cell RNA sequencing have allowed for comprehensive characterization of the kidney cellulome. However, there is a disparity in the various protocols for preparing kidney single-cell suspensions. We aimed to address this limitation by characterizing kidney cellular heterogeneity using three previously published single-cell preparation protocols. Single-cell suspensions were prepared from male and female C57BL/6 kidneys using the following kidney tissue dissociation protocols: a scRNAseq protocol (), a multi-tissue digestion kit from Miltenyi Biotec (), and a protocol established in our laboratory (). Following dissociation, flow cytometry was used to identify known major cell types including leukocytes (myeloid and lymphoid), vascular cells (smooth muscle and endothelial), nephron epithelial cells (intercalating, principal, proximal, and distal tubule cells), podocytes, and fibroblasts. Of the protocols tested, yielded significantly less leukocytes and type B intercalating cells compared with the other techniques. and produced similar yields for most cell types; however, endothelial and myeloid-derived cells were significantly enriched using . Significant sex differences were detected in only two cell types: granulocytes (increased in males) and smooth muscle cells (increased in females). Future single-cell studies that aim to enrich specific kidney cell types may benefit from this comparative analysis. This study is the first to evaluate published single-cell suspension preparation protocols and their ability to produce high-quality cellular yields from the mouse kidney. Three single-cell digestion protocols were compared and each produced significant differences in kidney cellular heterogeneity. These findings highlight the importance of the digestion protocol when using single-cell technologies. This study may help future single-cell science research by guiding researchers to choose protocols that enrich certain cell types of interest.

摘要

单细胞技术,如流式细胞术和单细胞 RNA 测序,使全面描述肾脏细胞外基质成为可能。然而,在制备肾脏单细胞悬液的各种方案中存在差异。我们旨在通过使用三种先前发表的单细胞制备方案来解决这个限制,以描述肾脏细胞异质性。使用以下三种肾脏组织解离方案从雄性和雌性 C57BL/6 肾脏中制备单细胞悬液:一种 scRNAseq 方案()、Miltenyi Biotec 的多组织消化试剂盒()和我们实验室建立的方案()。解离后,使用流式细胞术鉴定已知的主要细胞类型,包括白细胞(髓样和淋巴样)、血管细胞(平滑肌和内皮)、肾单位上皮细胞(闰盘、主细胞、近端和远端肾小管细胞)、足细胞和成纤维细胞。在测试的方案中,与其他技术相比,产生的白细胞和 B 型闰盘细胞明显较少。和产生类似的大多数细胞类型的产量;然而,使用产生明显富集的内皮细胞和髓样来源细胞。仅在两种细胞类型中检测到显著的性别差异:粒细胞(雄性增加)和平滑肌细胞(雌性增加)。未来旨在富集特定肾脏细胞类型的单细胞研究可能受益于这种比较分析。这项研究首次评估了已发表的单细胞悬浮液制备方案及其从小鼠肾脏中产生高质量细胞产量的能力。比较了三种单细胞消化方案,每种方案在肾脏细胞异质性方面都产生了显著差异。这些发现强调了在使用单细胞技术时消化方案的重要性。本研究可能通过指导研究人员选择富集特定感兴趣细胞类型的方案,为未来的单细胞科学研究提供帮助。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b0b/11368571/a239d1c7bc6c/pg-00002-2024r01.jpg

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