Rotational migration in human pancreatic ductal organoids depends on actin and myosin activity

Fuente: arXiv
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Main Authors: Xie, Gengqiang, Modak, Chaity, Usman, Olalekan H, Tan, Raphael WF, Coca, Nicole, De Jesus, Gabriela, Wang, Yue Julia, Thirumalai, D., Li, Xin, Irianto, Jerome
Format: Preprint
Published: 2025
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author Xie, Gengqiang
Modak, Chaity
Usman, Olalekan H
Tan, Raphael WF
Coca, Nicole
De Jesus, Gabriela
Wang, Yue Julia
Thirumalai, D.
Li, Xin
Irianto, Jerome
author_facet Xie, Gengqiang
Modak, Chaity
Usman, Olalekan H
Tan, Raphael WF
Coca, Nicole
De Jesus, Gabriela
Wang, Yue Julia
Thirumalai, D.
Li, Xin
Irianto, Jerome
contents Rotational migration is one specific form of collective cell migration when epithelial cells are confined in a spherical geometry, such as in the epithelial acini. This tissue-level rotation motion is crucial for the morphogenesis of multiple epithelial systems. Here, we introduce a new primary human model for the study of rotational migration, pancreatic ductal organoids. Live imaging revealed the persistent rotation of the organoids over time. By tracking the nuclei, the three-dimensional trajectory of the cellular movement was reconstructed and the velocity of the rotation was quantified. The presence of focal adhesion clusters and prominent actin stress fibers were observed at the basal side of the organoids, suggesting the interactions between the cells and the surrounding extracellular matrix. Finally, our inhibition study showed the dependence of pancreatic ductal organoid rotational migration on myosin activity, actin polymerization, and actin branching. We hope that this model will enable future studies with human primary cells, which are more faithful to normal epithelial cells.
format Preprint
id arxiv_https___arxiv_org_abs_2509_25680
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Rotational migration in human pancreatic ductal organoids depends on actin and myosin activity
Xie, Gengqiang
Modak, Chaity
Usman, Olalekan H
Tan, Raphael WF
Coca, Nicole
De Jesus, Gabriela
Wang, Yue Julia
Thirumalai, D.
Li, Xin
Irianto, Jerome
Soft Condensed Matter
Biological Physics
Cell Behavior
Rotational migration is one specific form of collective cell migration when epithelial cells are confined in a spherical geometry, such as in the epithelial acini. This tissue-level rotation motion is crucial for the morphogenesis of multiple epithelial systems. Here, we introduce a new primary human model for the study of rotational migration, pancreatic ductal organoids. Live imaging revealed the persistent rotation of the organoids over time. By tracking the nuclei, the three-dimensional trajectory of the cellular movement was reconstructed and the velocity of the rotation was quantified. The presence of focal adhesion clusters and prominent actin stress fibers were observed at the basal side of the organoids, suggesting the interactions between the cells and the surrounding extracellular matrix. Finally, our inhibition study showed the dependence of pancreatic ductal organoid rotational migration on myosin activity, actin polymerization, and actin branching. We hope that this model will enable future studies with human primary cells, which are more faithful to normal epithelial cells.
title Rotational migration in human pancreatic ductal organoids depends on actin and myosin activity
topic Soft Condensed Matter
Biological Physics
Cell Behavior
url https://arxiv.org/abs/2509.25680