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CPM
Models
Published Models
Cell Culture
MDCK EMT D
Morpheus Model ID:
M7124
Multiscale model of epithelial-mesenchymal transition (EMT) with intracellular TGFβ signaling circuit Introduction The growth factor TGFβ regulates the snail-zeb intracellular circuit that affects EMT by controlling the levels of E and N-cadherin expression.
N. Mukhtar
,
E. N. Cytrynbaum
,
L. Edelstein-Keshet
(Authors)
E. N. Cytrynbaum
,
Y. Xiao
(Contributors)
DOI:10.1016/j.bpj.2022.04.010
Models
Published Models
Cell Culture
MDCK EMT C
Morpheus Model ID:
M7123
Multiple models in epithelial-mesenchymal transitions (EMT) Introduction We model epithelial-mesenchymal transition (EMT) by first assembling an ODE model for intracellular Yes-associated protein (YAP) signalling and then embedding this single cell model within individual cells in a multiscale simulation.
N. Mukhtar
,
E. N. Cytrynbaum
,
L. Edelstein-Keshet
(Authors)
E. N. Cytrynbaum
,
Y. Xiao
(Contributors)
DOI:10.1016/j.bpj.2022.04.010
Models
Published Models
Cell Culture
MDCK EMT B
Morpheus Model ID:
M7122
Simulated sheet morphology for YAP knockdown (KD) and overexpression (OE) Introduction We model epithelial-mesenchymal transition (EMT) by first assembling an ODE model for intracellular Yes-associated protein (YAP) signalling and then embedding this single cell model within individual cells in a multiscale simulation.
N. Mukhtar
,
E. N. Cytrynbaum
,
L. Edelstein-Keshet
(Authors)
E. N. Cytrynbaum
,
Y. Xiao
(Contributors)
DOI:10.1016/j.bpj.2022.04.010
Models
Published Models
Cell Culture
MDCK EMT A
Morpheus Model ID:
M7121
Multiscale simulation of EMT by minimal signaling circuit Introduction We model epithelial-mesenchymal transition (EMT) by first assembling an ODE model for intracellular Yes-associated protein (YAP) signalling and then embedding this single cell model within individual cells in a multiscale simulation.
N. Mukhtar
,
E. N. Cytrynbaum
,
L. Edelstein-Keshet
(Authors)
E. N. Cytrynbaum
,
Y. Xiao
(Contributors)
DOI:10.1016/j.bpj.2022.04.010
Models
Published Models
Cell Culture
Human iPSC Wildtype Colony Growth
Morpheus Model ID:
M7671
Introduction Human induced pluripotent stem cells (hiPSCs) can be grown in cell culture where they self-organize spatial patterns. Libby et al. have employed inducible CRISPR interference-driven genetic perturbations to modulate mechanical cell properties like cell-cell adhesion and cortical tension.
A. R. G. Libby
,
D. Briers
,
I. Haghighi
,
D. A. Joy
,
B. R. Conklin
,
C. Belta
,
T. C. McDevitt
(Authors)
L. Brusch
(Contributor)
DOI:10.1016/j.cels.2019.10.008
Models
Published Models
Cell Culture
Human iPSC ROCK1-KD : Wildtype Colony Patterning
Morpheus Model ID:
M7673
Introduction Human induced pluripotent stem cells (hiPSCs) can be grown in cell culture where they self-organize spatial patterns. Libby et al. have employed inducible CRISPR interference-driven genetic perturbations to modulate mechanical cell properties like cell-cell adhesion and cortical tension.
A. R. G. Libby
,
D. Briers
,
I. Haghighi
,
D. A. Joy
,
B. R. Conklin
,
C. Belta
,
T. C. McDevitt
(Authors)
L. Brusch
(Contributor)
DOI:10.1016/j.cels.2019.10.008
Models
Published Models
Cell Culture
Human iPSC CDH1-KD : Wildtype Colony Patterning
Morpheus Model ID:
M7672
Introduction Human induced pluripotent stem cells (hiPSCs) can be grown in cell culture where they self-organize spatial patterns. Libby et al. have employed inducible CRISPR interference-driven genetic perturbations to modulate mechanical cell properties like cell-cell adhesion and cortical tension.
A. R. G. Libby
,
D. Briers
,
I. Haghighi
,
D. A. Joy
,
B. R. Conklin
,
C. Belta
,
T. C. McDevitt
(Authors)
L. Brusch
(Contributor)
DOI:10.1016/j.cels.2019.10.008
Models
Published Models
Cell Culture
Human ESC Colony Patterning
Morpheus Model ID:
M7675
Introduction The formation and maintenance of three germ layers in colonies of human embryonic stem cells (ESCs) is sensitive to the geometry of the colony. In vitro experiments with micropatterns controlling colony shape have previously addressed the underlying spatio-temporal patterning in Warmflash et al.
H. Fooladi
,
P. Moradi
,
A. Sharifi-Zarchi and B. Hosein Khalaj
(Authors)
H. Fooladi
,
L. Brusch
(Contributors)
DOI:10.1093/bioinformatics/btz201
Models
Published Models
Cell Culture
Collective Motion of MDA-MB-231 Breast Cancer Cells
Morpheus Model ID:
M7678
Introduction Collective motion of human breast cancer cells of the cell line MDA-MB-231 was studied by Lee et al. for individual crawling cells, cell doublets, cell quadruplets and for confluent populations on a two-dimensional substrate.
H. G. Lee
,
K. J. Lee
(Authors)
L. Brusch
(Contributor)
DOI:10.1371/journal.pcbi.1009447
Models
Contributed Examples
PDE
Field-Cell Interaction
Morpheus Model ID:
M5481
Cells' consumption of cytokine concentration Introduction This example serves to demonstrate the implementation of cells consuming a substrate field, e.g. cytokine. Please also see the built-in docu at MorpheuML/Global/Field and Global/System/DiffEqn.
V. Ponce
,
W. de Back
,
F. El-Hendi
(Contributors)
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