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Protocol to dissociate healthy and infected murine- and hamster-derived lung tissue for single-cell transcriptome analysis.


ABSTRACT: In infectious disease research, single-cell RNA sequencing allows dissection of host-pathogen interactions. As a prerequisite, we provide a protocol to transform solid and complex organs such as lungs into representative diverse, viable single-cell suspensions. Our protocol describes performance of vascular perfusion, pneumonectomy, enzymatic digestion, and mechanical dissociation of lung tissue, as well as red blood cell lysis and counting of isolated cells. A challenge remains, however, to further increase the proportion of pulmonary endothelial cells without compromising on viability. For complete details on the use and execution of this protocol, please refer to Nouailles et al. (2021),1 Wyler et al. (2022),2 and Ebenig et al. (2022).3.

SUBMITTER: Pennitz P 

PROVIDER: S-EPMC9765304 | biostudies-literature | 2023 Mar

REPOSITORIES: biostudies-literature

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Protocol to dissociate healthy and infected murine- and hamster-derived lung tissue for single-cell transcriptome analysis.

Pennitz Peter P   Goekeri Cengiz C   Trimpert Jakob J   Wyler Emanuel E   Ebenig Aileen A   Weissfuss Chantal C   Mühlebach Michael D MD   Witzenrath Martin M   Nouailles Geraldine G  

STAR protocols 20221220 1


In infectious disease research, single-cell RNA sequencing allows dissection of host-pathogen interactions. As a prerequisite, we provide a protocol to transform solid and complex organs such as lungs into representative diverse, viable single-cell suspensions. Our protocol describes performance of vascular perfusion, pneumonectomy, enzymatic digestion, and mechanical dissociation of lung tissue, as well as red blood cell lysis and counting of isolated cells. A challenge remains, however, to fur  ...[more]

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