Reproducibility of scratch assays is affected by the initial degree of confluence: Experiments, modelling and model selection

, , , , , & (2016) Reproducibility of scratch assays is affected by the initial degree of confluence: Experiments, modelling and model selection. Journal of Theoretical Biology, 390, pp. 136-145.

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Description

Scratch assays are difficult to reproduce. Here we identify a previously overlooked source of variability which could partially explain this difficulty. We analyse a suite of scratch assays in which we vary the initial degree of confluence (initial cell density). Our results indicate that the rate of re-colonisation is very sensitive to the initial density. To quantify the relative roles of cell migration and proliferation, we calibrate the solution of the Fisher–Kolmogorov model to cell density profiles to provide estimates of the cell diffusivity, D, and the cell proliferation rate, λ. This procedure indicates that the estimates of D and λ are very sensitive to the initial density. This dependence suggests that the Fisher–Kolmogorov model does not accurately represent the details of the collective cell spreading process, since this model assumes that D and λ are constants that ought to be independent of the initial density. Since higher initial cell density leads to enhanced spreading, we also calibrate the solution of the Porous–Fisher model to the data as this model assumes that the cell flux is an increasing function of the cell density. Estimates of D and λ associated with the Porous–Fisher model are less sensitive to the initial density, suggesting that the Porous–Fisher model provides a better description of the experiments.

Impact and interest:

70 citations in Scopus
55 citations in Web of Science®
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ID Code: 220936
Item Type: Contribution to Journal (Journal Article)
Refereed: Yes
ORCID iD:
Jin, Wangorcid.org/0000-0002-4251-2173
Shah, Eshaorcid.org/0000-0002-7626-1085
Penington, Catherineorcid.org/0000-0002-9344-0122
McCue, Scottorcid.org/0000-0001-5304-2384
Chopin, Lisaorcid.org/0000-0002-3953-6342
Simpson, Mattheworcid.org/0000-0001-6254-313X
Measurements or Duration: 10 pages
DOI: 10.1016/j.jtbi.2015.10.040
ISSN: 0022-5193
Pure ID: 33033072
Divisions: Past > QUT Faculties & Divisions > Faculty of Health
Past > Institutes > Institute of Health and Biomedical Innovation
Past > QUT Faculties & Divisions > Science & Engineering Faculty
Current > Schools > School of Mathematical Sciences
Current > Schools > School of Biomedical Sciences
Funding:
Copyright Owner: Consult author(s) regarding copyright matters
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Deposited On: 06 Nov 2021 14:54
Last Modified: 31 Jul 2024 20:42