Schayan Yousefian

Doctoral researcher at Charité Berlin | Cell- and immunotherapies | Cellular interactions | Innovation & Entrepeneurship

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Glyoxal as an alternative fixative for single-cell RNA sequencing


Journal article


J. Bageritz, Niklas Krausse, S. Yousefian, Svenja Leible, Erica Valentini, M. Boutros
bioRxiv, 2021

Semantic Scholar DOI PubMedCentral PubMed
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APA   Click to copy
Bageritz, J., Krausse, N., Yousefian, S., Leible, S., Valentini, E., & Boutros, M. (2021). Glyoxal as an alternative fixative for single-cell RNA sequencing. BioRxiv.


Chicago/Turabian   Click to copy
Bageritz, J., Niklas Krausse, S. Yousefian, Svenja Leible, Erica Valentini, and M. Boutros. “Glyoxal as an Alternative Fixative for Single-Cell RNA Sequencing.” bioRxiv (2021).


MLA   Click to copy
Bageritz, J., et al. “Glyoxal as an Alternative Fixative for Single-Cell RNA Sequencing.” BioRxiv, 2021.


BibTeX   Click to copy

@article{j2021a,
  title = {Glyoxal as an alternative fixative for single-cell RNA sequencing},
  year = {2021},
  journal = {bioRxiv},
  author = {Bageritz, J. and Krausse, Niklas and Yousefian, S. and Leible, Svenja and Valentini, Erica and Boutros, M.}
}

Abstract

Single cell RNA sequencing (scRNA-seq) has become an important method to identify cell types, delineate the trajectories of cell differentiation in whole organisms and understand the heterogeneity in cellular responses. Nevertheless, sample collection and processing remain a severe bottleneck for scRNA-seq experiments. Cell isolation protocols often lead to significant changes in the transcriptomes of cells, requiring novel methods to preserve cell states. Here, we developed and benchmarked protocols using glyoxal as a fixative for scRNA-seq application. Using Drop-seq methodology, we detected high numbers of transcripts and genes from glyoxal-fixed Drosophila cells after scRNA-seq. The effective glyoxal fixation of transcriptomes in Drosophila and human cells was further supported by a high correlation of gene expression data between glyoxal-fixed and unfixed samples. Accordingly, we also found highly expressed genes overlapping to a large extent between experimental conditions. These results indicated that our fixation protocol did not induce considerable changes in gene expression and conserved the transcriptome for subsequent single cell isolation procedures. In conclusion, we present glyoxal as a suitable fixative for Drosophila cells and potentially cells of other species that allows high-quality scRNA-seq applications.


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