Summary of 419-Hagiwara-CollectiveMigrate

SSBD:database
SSBD:database URL

SSBD:repository
SSBD:repository URL

Title
Time-lapse images of collective cell migration regulated by extracellular matrix
Description
Collective migration of epithelial cells is a fundamental process in multicellular pattern formation. As they expand their territory, cells are exposed to various physical forces generated by cell–cell interactions and the surrounding microenvironment. While the physical stress applied by neighbouring cells has been well studied, little is known about how the niches that surround cells are spatio-temporally remodelled to regulate collective cell migration and pattern formation. Here, the authors analysed how the spatio-temporally remodelled extracellular matrix (ECM) alters the resistance force exerted on cells so that the cells can expand their territory. Multiple microfabrication techniques, optical tweezers, as well as mathematical models were employed to prove the simultaneous construction and breakage of ECM during cellular movement, and to show that this modification of the surrounding environment can guide cellular movement. Furthermore, by artificially remodelling the microenvironment, they showed that the directionality of collective cell migration, as well as the three-dimensional branch pattern formation of lung epithelial cells, can be controlled. Their results thus confirm that active remodelling of cellular microenvironment modulates the physical forces exerted on cells by the ECM, which contributes to the directionality of collective cell migration and consequently, pattern formation.
Release date
2025-12-03
Updated date
-
License
CC BY 4.0
Kind
Image data based on Experiment
Number of Datasets
17 ( Image datasets: 17, Quantitative data datasets: 0 )
Size of Datasets
8.3 GB ( Image datasets: 8.3 GB, Quantitative data datasets: 0 bytes )

Organism(s)
Canis lupus familiaris, Homo sapiens
Cell lines(s)
NHBE cell, MDCK cell

Datatype
-
Molecular Function (MF)
-
Biological Process (BP)
regulation of cell shape, epithelial cell migration cell-matrix recognition
Cellular Component (CC)
, nucleus, actin cytoskeleton, extracellular matrix, cell-substrate junction, plasma membrane
Biological Imaging Method
fluorescence microscopy, phase contrast microscopy
T scale
NA, 5 minutes

Image Acquisition
Experiment type
-
Microscope type
-
Acquisition mode
-
Contrast method
-
Microscope model
-
Detector model
-
Objective model
-
Filter set
-

Related paper(s)

Masaya Hagiwara, Hisataka Maruyama, Masakazu Akiyama, Isabel Koh, Fumihito Arai (2021) Weakening of resistance force by cell-ECM interactions regulate cell migration directionality and pattern formation., Communications biology, Volume 4, Number 1, pp. 808

Published in 2021 Jun 28 (Electronic publication in June 28, 2021, midnight )

(Abstract) Collective migration of epithelial cells is a fundamental process in multicellular pattern formation. As they expand their territory, cells are exposed to various physical forces generated by cell-cell interactions and the surrounding microenvironment. While the physical stress applied by neighbouring cells has been well studied, little is known about how the niches that surround cells are spatio-temporally remodelled to regulate collective cell migration and pattern formation. Here, we analysed how the spatio-temporally remodelled extracellular matrix (ECM) alters the resistance force exerted on cells so that the cells can expand their territory. Multiple microfabrication techniques, optical tweezers, as well as mathematical models were employed to prove the simultaneous construction and breakage of ECM during cellular movement, and to show that this modification of the surrounding environment can guide cellular movement. Furthermore, by artificially remodelling the microenvironment, we showed that the directionality of collective cell migration, as well as the three-dimensional branch pattern formation of lung epithelial cells, can be controlled. Our results thus confirm that active remodelling of cellular microenvironment modulates the physical forces exerted on cells by the ECM, which contributes to the directionality of collective cell migration and consequently, pattern formation.
(MeSH Terms)

Contact
Masaya Hagiwara , RIKEN , Cluster for Pioneering Research , Cluster for Pioneering Research
Contributors


Dataset List of 419-Hagiwara-CollectiveMigrate

#
Dataset ID
Kind
Size
4D View
SSBD:OMERO
Download BDML
Download Images
# 13154
Dataset Kind Image data
Dataset Size 1020.1 MB
4D view
SSBD:OMERO
Download BDML
Download Image data

# 13155
Dataset Kind Image data
Dataset Size 428.5 MB
4D view
SSBD:OMERO
Download BDML
Download Image data

# 13156
Datast ID Fig1f_FNpattern
Dataset Kind Image data
Dataset Size 103.4 MB
4D view
SSBD:OMERO
Download BDML
Download Image data

# 13157
Datast ID Fig1g_noFN
Dataset Kind Image data
Dataset Size 140.3 MB
4D view
SSBD:OMERO
Download BDML
Download Image data

# 13158
Datast ID Fig2b_BasalApical
Dataset Kind Image data
Dataset Size 6.1 MB
4D view
SSBD:OMERO
Download BDML
Download Image data

# 13159
Datast ID Fig2d_WithoutCover
Dataset Kind Image data
Dataset Size 1.2 MB
4D view
SSBD:OMERO
Download BDML
Download Image data

# 13160
Datast ID Fig2e_WithCover
Dataset Kind Image data
Dataset Size 498.8 MB
4D view
SSBD:OMERO
Download BDML
Download Image data

# 13161
Datast ID Fig2g_ActinNucleus
Dataset Kind Image data
Dataset Size 309.4 MB
4D view
SSBD:OMERO
Download BDML
Download Image data

# 13162
Datast ID Fig3a_WithoutCover
Dataset Kind Image data
Dataset Size 102.0 MB
4D view
SSBD:OMERO
Download BDML
Download Image data

# 13163
Datast ID Fig3c_WithCover
Dataset Kind Image data
Dataset Size 107.7 MB
4D view
SSBD:OMERO
Download BDML
Download Image data

# 13164
Datast ID Fig3e_Lami_FN
Dataset Kind Image data
Dataset Size 78.0 MB
4D view
SSBD:OMERO
Download BDML
Download Image data

# 13165
Dataset Kind Image data
Dataset Size 374.6 MB
4D view
SSBD:OMERO
Download BDML
Download Image data

# 13166
Dataset Kind Image data
Dataset Size 1.6 GB
4D view
SSBD:OMERO
Download BDML
Download Image data

# 13167
Dataset Kind Image data
Dataset Size 1.6 GB
4D view
SSBD:OMERO
Download BDML
Download Image data

# 13168
Dataset Kind Image data
Dataset Size 1.6 GB
4D view
SSBD:OMERO
Download BDML
Download Image data

# 13169
Dataset Kind Image data
Dataset Size 61.5 MB
4D view
SSBD:OMERO
Download BDML
Download Image data

# 13170
Datast ID Movie7_WithCover
Dataset Kind Image data
Dataset Size 316.5 MB
4D view
SSBD:OMERO
Download BDML
Download Image data