PBMC fixation and processing for Chromium single-cell RNA sequencing

Abstract Background Interest in single-cell transcriptomic analysis is growing rapidly, especially for profiling rare or heterogeneous populations of cells. In almost all reported works investigators have used live cells, which introduces cell stress during preparation and hinders complex study desi...

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Main Authors: Jinguo Chen, Foo Cheung, Rongye Shi, Huizhi Zhou, Wenrui Lu, CHI Consortium
Format: Article
Language:English
Published: BMC 2018-07-01
Series:Journal of Translational Medicine
Subjects:
SSC
Online Access:http://link.springer.com/article/10.1186/s12967-018-1578-4
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spelling doaj-ecc86007f1734042a79a32526ec24c732020-11-25T00:39:19ZengBMCJournal of Translational Medicine1479-58762018-07-0116111110.1186/s12967-018-1578-4PBMC fixation and processing for Chromium single-cell RNA sequencingJinguo Chen0Foo Cheung1Rongye Shi2Huizhi Zhou3Wenrui Lu4CHI ConsortiumCenter for Human Immunology, Autoimmunity and Inflammation (CHI), National Institutes of HealthCenter for Human Immunology, Autoimmunity and Inflammation (CHI), National Institutes of HealthCenter for Human Immunology, Autoimmunity and Inflammation (CHI), National Institutes of HealthCenter for Human Immunology, Autoimmunity and Inflammation (CHI), National Institutes of HealthCenter for Human Immunology, Autoimmunity and Inflammation (CHI), National Institutes of HealthAbstract Background Interest in single-cell transcriptomic analysis is growing rapidly, especially for profiling rare or heterogeneous populations of cells. In almost all reported works investigators have used live cells, which introduces cell stress during preparation and hinders complex study designs. Recent studies have indicated that cells fixed by denaturing fixative can be used in single-cell sequencing, however they did not usually work with most types of primary cells including immune cells. Methods The methanol-fixation and new processing method was introduced to preserve human peripheral blood mononuclear cells (PBMCs) for single-cell RNA sequencing (scRNA-Seq) analysis on 10× Chromium platform. Results When methanol fixation protocol was broken up into three steps: fixation, storage and rehydration, we found that PBMC RNA was degraded during rehydration with PBS, not at cell fixation and up to 3-month storage steps. Resuspension but not rehydration in 3× saline sodium citrate (SSC) buffer instead of PBS preserved PBMC RNA integrity and prevented RNA leakage. Diluted SSC buffer did not interfere with full-length cDNA synthesis. The methanol-fixed PBMCs resuspended in 3× SSC were successfully implemented into 10× Chromium standard scRNA-seq workflows with no elevated low quality cells and cell doublets. The fixation process did not alter the single-cell transcriptional profiles and gene expression levels. Major subpopulations classified by marker genes could be identified in fixed PBMCs at a similar proportion as in live PBMCs. This new fixation processing protocol also worked in several other fixed primary cell types and cell lines as in live ones. Conclusions We expect that the methanol-based cell fixation procedure presented here will allow better and more effective batching schemes for a complex single cell experimental design with primary cells or tissues.http://link.springer.com/article/10.1186/s12967-018-1578-4FixationMethanolSSCPBMCPrimary cellsDroplet-based single-cell RNA-Seq
collection DOAJ
language English
format Article
sources DOAJ
author Jinguo Chen
Foo Cheung
Rongye Shi
Huizhi Zhou
Wenrui Lu
CHI Consortium
spellingShingle Jinguo Chen
Foo Cheung
Rongye Shi
Huizhi Zhou
Wenrui Lu
CHI Consortium
PBMC fixation and processing for Chromium single-cell RNA sequencing
Journal of Translational Medicine
Fixation
Methanol
SSC
PBMC
Primary cells
Droplet-based single-cell RNA-Seq
author_facet Jinguo Chen
Foo Cheung
Rongye Shi
Huizhi Zhou
Wenrui Lu
CHI Consortium
author_sort Jinguo Chen
title PBMC fixation and processing for Chromium single-cell RNA sequencing
title_short PBMC fixation and processing for Chromium single-cell RNA sequencing
title_full PBMC fixation and processing for Chromium single-cell RNA sequencing
title_fullStr PBMC fixation and processing for Chromium single-cell RNA sequencing
title_full_unstemmed PBMC fixation and processing for Chromium single-cell RNA sequencing
title_sort pbmc fixation and processing for chromium single-cell rna sequencing
publisher BMC
series Journal of Translational Medicine
issn 1479-5876
publishDate 2018-07-01
description Abstract Background Interest in single-cell transcriptomic analysis is growing rapidly, especially for profiling rare or heterogeneous populations of cells. In almost all reported works investigators have used live cells, which introduces cell stress during preparation and hinders complex study designs. Recent studies have indicated that cells fixed by denaturing fixative can be used in single-cell sequencing, however they did not usually work with most types of primary cells including immune cells. Methods The methanol-fixation and new processing method was introduced to preserve human peripheral blood mononuclear cells (PBMCs) for single-cell RNA sequencing (scRNA-Seq) analysis on 10× Chromium platform. Results When methanol fixation protocol was broken up into three steps: fixation, storage and rehydration, we found that PBMC RNA was degraded during rehydration with PBS, not at cell fixation and up to 3-month storage steps. Resuspension but not rehydration in 3× saline sodium citrate (SSC) buffer instead of PBS preserved PBMC RNA integrity and prevented RNA leakage. Diluted SSC buffer did not interfere with full-length cDNA synthesis. The methanol-fixed PBMCs resuspended in 3× SSC were successfully implemented into 10× Chromium standard scRNA-seq workflows with no elevated low quality cells and cell doublets. The fixation process did not alter the single-cell transcriptional profiles and gene expression levels. Major subpopulations classified by marker genes could be identified in fixed PBMCs at a similar proportion as in live PBMCs. This new fixation processing protocol also worked in several other fixed primary cell types and cell lines as in live ones. Conclusions We expect that the methanol-based cell fixation procedure presented here will allow better and more effective batching schemes for a complex single cell experimental design with primary cells or tissues.
topic Fixation
Methanol
SSC
PBMC
Primary cells
Droplet-based single-cell RNA-Seq
url http://link.springer.com/article/10.1186/s12967-018-1578-4
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