Literature DB >> 31759947

Automated Design of Pluripotent Stem Cell Self-Organization.

Ashley R G Libby1, Demarcus Briers2, Iman Haghighi3, David A Joy4, Bruce R Conklin5, Calin Belta6, Todd C McDevitt7.   

Abstract

Human pluripotent stem cells (hPSCs) have the intrinsic ability to self-organize into complex multicellular organoids that recapitulate many aspects of tissue development. However, robustly directing morphogenesis of hPSC-derived organoids requires novel approaches to accurately control self-directed pattern formation. Here, we combined genetic engineering with computational modeling, machine learning, and mathematical pattern optimization to create a data-driven approach to control hPSC self-organization by knock down of genes previously shown to affect stem cell colony organization, CDH1 and ROCK1. Computational replication of the in vitro system in silico using an extended cellular Potts model enabled machine learning-driven optimization of parameters that yielded emergence of desired patterns. Furthermore, in vitro the predicted experimental parameters quantitatively recapitulated the in silico patterns. These results demonstrate that morphogenic dynamics can be accurately predicted through model-driven exploration of hPSC behaviors via machine learning, thereby enabling spatial control of multicellular patterning to engineer human organoids and tissues. A record of this paper's Transparent Peer Review process is included in the Supplemental Information.
Copyright © 2019 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  bioengineering; control theory; machine learning; mathematical optimization; multicellular patterning; stem cell biology

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Year:  2019        PMID: 31759947      PMCID: PMC7089762          DOI: 10.1016/j.cels.2019.10.008

Source DB:  PubMed          Journal:  Cell Syst        ISSN: 2405-4712            Impact factor:   10.304


  49 in total

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Journal:  Phys Rev Lett       Date:  1992-09-28       Impact factor: 9.161

2.  Collective cell motion in endothelial monolayers.

Authors:  A Szabó; R Unnep; E Méhes; W O Twal; W S Argraves; Y Cao; A Czirók
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Review 3.  Gastrulation dynamics: cells move into focus.

Authors:  Juan-Antonio Montero; Carl-Philipp Heisenberg
Journal:  Trends Cell Biol       Date:  2004-11       Impact factor: 20.808

Review 4.  Forces in tissue morphogenesis and patterning.

Authors:  Carl-Philipp Heisenberg; Yohanns Bellaïche
Journal:  Cell       Date:  2013-05-23       Impact factor: 41.582

5.  High-throughput mathematical analysis identifies Turing networks for patterning with equally diffusing signals.

Authors:  Luciano Marcon; Xavier Diego; James Sharpe; Patrick Müller
Journal:  Elife       Date:  2016-04-08       Impact factor: 8.140

Review 6.  D'Arcy Thompson's 'on Growth and form': From soap bubbles to tissue self-organization.

Authors:  Carl-Philipp Heisenberg
Journal:  Mech Dev       Date:  2017-04-23       Impact factor: 1.882

Review 7.  Cytosystems dynamics in self-organization of tissue architecture.

Authors:  Yoshiki Sasai
Journal:  Nature       Date:  2013-01-17       Impact factor: 49.962

8.  Cell segregation and border sharpening by Eph receptor-ephrin-mediated heterotypic repulsion.

Authors:  Harriet B Taylor; Anaïs Khuong; Zhonglin Wu; Qiling Xu; Rosalind Morley; Lauren Gregory; Alexei Poliakov; William R Taylor; David G Wilkinson
Journal:  J R Soc Interface       Date:  2017-07       Impact factor: 4.118

9.  Spatial pattern dynamics of 3D stem cell loss of pluripotency via rules-based computational modeling.

Authors:  Douglas E White; Melissa A Kinney; Todd C McDevitt; Melissa L Kemp
Journal:  PLoS Comput Biol       Date:  2013-03-14       Impact factor: 4.475

10.  Dynamic intercellular transport modulates the spatial patterning of differentiation during early neural commitment.

Authors:  Chad M Glen; Todd C McDevitt; Melissa L Kemp
Journal:  Nat Commun       Date:  2018-10-05       Impact factor: 14.919

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  5 in total

1.  Deep neural net tracking of human pluripotent stem cells reveals intrinsic behaviors directing morphogenesis.

Authors:  David A Joy; Ashley R G Libby; Todd C McDevitt
Journal:  Stem Cell Reports       Date:  2021-05-11       Impact factor: 7.765

Review 2.  Opportunities and challenges with stem cell-based embryo models.

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Review 3.  Bioengineering Approaches for the Advanced Organoid Research.

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Journal:  Methods       Date:  2020-05-21       Impact factor: 3.608

Review 5.  Diseased, differentiated and difficult: Strategies for improved engineering of in vitro neurological systems.

Authors:  Nicholas Elder; Faranak Fattahi; Todd C McDevitt; Lyandysha V Zholudeva
Journal:  Front Cell Neurosci       Date:  2022-09-27       Impact factor: 6.147

  5 in total

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