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Updated: Feb 19, 2026

Generation of Mosaic Mammary Organoids by Differential Trypsinization
Published on: March 11, 2020
Cellular automaton simulation examining progenitor hierarchy structure effects on mammary ductal carcinoma in situ
Armand Bankhead1, Nancy S Magnuson, Robert B Heckendorn
1Bioinformatics and Computational Biology, University of Idaho, Moscow, ID 83844, USA. bank2192@uidaho.edu
Abstract:
A computer simulation is used to model ductal carcinoma in situ, a form of non-invasive breast cancer. The simulation uses known histological morphology, cell types, and stochastic cell proliferation to evolve tumorous growth within a duct. The ductal simulation is based on a hybrid cellular automaton design using genetic rules to determine each cell's behavior. The genetic rules are a mutable abstraction that demonstrate genetic heterogeneity in a population. Our goal was to examine the role (if any) that recently discovered mammary stem cell hierarchies play in genetic heterogeneity, DCIS initiation and aggressiveness. Results show that simpler progenitor hierarchies result in greater genetic heterogeneity and evolve DCIS significantly faster. However, the more complex progenitor hierarchy structure was able to sustain the rapid reproduction of a cancer cell population for longer periods of time.
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