scRNA-seq assessment of the human lung, spleen, and esophagus tissue stability after cold preservation
European Bioinformatics Institute · Wellcome Sanger Institute · +5 more institutions
Abstract
The Human Cell Atlas is a large international collaborative effort to map all cell types of the human body. Single-cell RNA sequencing can generate high-quality data for the delivery of such an atlas. However, delays between fresh sample collection and processing may lead to poor data and difficulties in experimental design.
This study assesses the effect of cold storage on fresh healthy spleen, esophagus, and lung from ≥ 5 donors over 72 h. We collect 240,000 high-quality single-cell transcriptomes with detailed cell type annotations and whole genome sequences of donors, enabling future eQTL studies. Our data provide a valuable resource for the study of these 3 organs and will allow cross-organ comparison of cell types. We see little effect of cold ischemic time on cell yield, total number of reads per cell, and other quality control metrics in any of the tissues within the first 24 h. However, we observe a decrease in the proportions of lung T cells at 72 h, higher percentage of mitochondrial reads, and increased contamination by background ambient RNA reads in the 72-h samples in the spleen, which is cell type specific.
Citation impact
- FWCI
- 30.08
- Percentile
- 100%
- References
- 52
Authors
22- EMElo MadissoonCorresponding
European Bioinformatics Institute, Wellcome Sanger Institute
- AWAnna Wilbrey-Clark
Wellcome Sanger Institute
- RJRicardo J. Miragaia
Wellcome Sanger Institute
- KSKourosh Saeb‐Parsy
University of Cambridge, NIHR Cambridge Biomedical Research Centre
- KTKrishnaa T. Mahbubani
University of Cambridge, NIHR Cambridge Biomedical Research Centre
Topics & keywords
- Biology
- Cell
- Transcriptome
- Lung
- Computational biology
- Cell type
- Esophagus
- Spleen