A computational modelling framework to quantify the effects of passaging cell lines

, , , & (2017) A computational modelling framework to quantify the effects of passaging cell lines. PLoS One, 12(7), Article number: e0181941 1-16.

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Description

In vitro cell culture is routinely used to grow and supply a sufficiently large number of cells for various types of cell biology experiments. Previous experimental studies report that cell characteristics evolve as the passage number increases, and various cell lines can behave differently at high passage numbers. To provide insight into the putative mechanisms that might give rise to these differences, we perform in silico experiments using a random walk model to mimic the in vitro cell culture process. Our results show that it is possible for the average proliferation rate to either increase or decrease as the passaging process takes place, and this is due to a competition between the initial heterogeneity and the degree to which passaging damages the cells. We also simulate a suite of scratch assays with cells from near±homogeneous and heterogeneous cell lines, at both high and low passage numbers. Although it is common in the literature to report experimental results without disclosing the passage number, our results show that we obtain significantly different closure rates when performing in silico scratch assays using cells with different passage numbers. Therefore, we suggest that the passage number should always be reported to ensure that the experiment is as reproducible as possible. Furthermore, our modelling also suggests some avenues for further experimental examination that could be used to validate or refine our simulation results.

Impact and interest:

12 citations in Scopus
10 citations in Web of Science®
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ID Code: 115391
Item Type: Contribution to Journal (Journal Article)
Refereed: Yes
ORCID iD:
Jin, Wangorcid.org/0000-0002-4251-2173
Penington, Catherineorcid.org/0000-0002-9344-0122
McCue, Scottorcid.org/0000-0001-5304-2384
Simpson, Mattheworcid.org/0000-0001-6254-313X
Measurements or Duration: 16 pages
DOI: 10.1371/journal.pone.0181941
ISSN: 1932-6203
Pure ID: 33256399
Divisions: Past > Institutes > Institute of Health and Biomedical Innovation
Past > QUT Faculties & Divisions > Science & Engineering Faculty
Funding:
Copyright Owner: Consult author(s) regarding copyright matters
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Deposited On: 11 Jan 2018 00:54
Last Modified: 01 Mar 2024 18:15