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FixNCut: single-cell genomics through reversible tissue fixation and dissociation

Title: FixNCut: single-cell genomics through reversible tissue fixation and dissociation
Authors: Jimenez-Gracia, L; Marchese, D; Nieto, JC; Caratu, G; Melon-Ardanaz, E; Gudino, V; Roth, S; Wise, K; Ryan, NK; Jensen, KB; Hernando-Momblona, X; Bernardes, JP; Tran, F; Sievers, LK; Schreiber, S; van den Berge, M; Kole, T; van der Velde, PL; Nawijn, MC; Rosenstiel, P; Batlle, E; Butler, LM; Parish, IA; Plummer, J; Gut, I; Salas, A; Heyn, H; Martelotto, LG
Publisher Information: BMC
Publication Year: 2024
Collection: The University of Melbourne: Digital Repository
Description: The use of single-cell technologies for clinical applications requires disconnecting sampling from downstream processing steps. Early sample preservation can further increase robustness and reproducibility by avoiding artifacts introduced during specimen handling. We present FixNCut, a methodology for the reversible fixation of tissue followed by dissociation that overcomes current limitations. We applied FixNCut to human and mouse tissues to demonstrate the preservation of RNA integrity, sequencing library complexity, and cellular composition, while diminishing stress-related artifacts. Besides single-cell RNA sequencing, FixNCut is compatible with multiple single-cell and spatial technologies, making it a versatile tool for robust and flexible study designs.
Document Type: article in journal/newspaper
Language: English
ISSN: 1474-7596
Relation: https://hdl.handle.net/11343/353325
Availability: https://hdl.handle.net/11343/353325
Rights: https://creativecommons.org/licenses/by/4.0 ; CC BY
Accession Number: edsbas.3F73DC26
Database: BASE