Comparison of optimized methodologies for isolating nuclei from esophageal tissue

Author:

Kimbley Lucy M1ORCID,Parker Rachel1,Harrington Jack1ORCID,Walker Robert C1ORCID,Grace Ben1,West Jonathan J123ORCID,Underwood Tim J13ORCID,Rose-Zerilli Matthew JJ13ORCID

Affiliation:

1. Cancer Sciences, Faculty of Medicine, University of Southampton, Southampton, UK

2. Centre for Hybrid Biodevices, University of Southampton, Southampton, UK

3. Institute for Life Sciences, University of Southampton, Southampton, UK

Abstract

Single-nuclei RNA sequencing allows single cell-based analysis in frozen tissue, ameliorating cell recovery biases associated with enzymatic dissociation methods. The authors present two optimized methods for isolating and sequencing nuclei from esophageal tissue using a commercial EZ and citric acid (CA)-based method. Despite high endogenous RNase activity, these protocols produced libraries of expected fragment length (average length EZ: 745 bp; CA: 1232 bp) with comparable complexity (median Transcript/Gene number, EZ: 496/254; CA: 483/256). CA nuclei showed a higher proportion of ribosomal gene reads, potentially reflecting co-isolation of nuclei and adherent ribosomes. The authors identified 11 cell lineages in the combined datasets, with differences in cell type recovery between the two methods, providing utility dependent on experimental needs.

Funder

Southampton CR UK Development Fund

Chan Zuckerberg Initiative

Cancer Research UK

MRC

Publisher

Future Science Ltd

Subject

General Biochemistry, Genetics and Molecular Biology,Biotechnology

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