Benoit LadouxManagement2019-01-09T09:55:32+08:00
Benoit LADOUX

Benoit LADOUX

Visiting Faculty, Mechanobiology Institute, National University of Singapore, Research Director, Université Paris Diderot & Centre National de la Recherche Scientifique (CNRS)

benoit.ladoux@ijm.fr

Laboratory website
Cell Adhesion and Mechanics Lab

Research Program
Mechanotransduction in Tissues Group

Affiliations
Research Director, Université Paris Diderot & Centre National de la Recherche Scientifique (CNRS)

What is the role of Rho GTPases in the regulation of focal adhesion assembly?

What is the role of Rho GTPases in the regulation of focal adhesion assembly? Synergistic integrin-syndecan signaling The rate and extent of focal adhesion formation and maturation are regulated by factors such as synergistic [...]

By Management|Nov 30th, 2023|Categories: MBInfo, Mechanosignaling|Comments Off on What is the role of Rho GTPases in the regulation of focal adhesion assembly?

What steps are involved in the formation of focal adhesions?

What steps are involved in the formation of focal adhesions? The assembly of focal adhesions is highly regulated, with protein recruitment occurring in a sequential manner [1], and resulting in structures that are organized [...]

By Management|Nov 30th, 2023|Categories: MBInfo, Mechanosignaling|Comments Off on What steps are involved in the formation of focal adhesions?

What are actin filaments?

What are actin filaments? Actin filaments (F-actin) are linear polymers of globular actin (G-actin) subunits and occur as microfilaments in the cytoskeleton and as thin filaments, which are part of the contractile apparatus, in [...]

By Management|Nov 20th, 2023|Categories: Cytoskeleton Dynamics, MBInfo|Comments Off on What are actin filaments?

What is the cytoskeleton?

What is the Cytoskeleton? The eukaryotic cytoskeleton is a network of three long filament systems, made from the repetitive assembly and disassembly of dynamic protein components. The primary filament systems comprising the cytoskeleton are [...]

By Management|Nov 20th, 2023|Categories: Cytoskeleton Dynamics, MBInfo|Comments Off on What is the cytoskeleton?

Arikta and Yuting shared their research as speakers at the MBI Conference 2023

Congratulations to Arikta and Yuting for being selected as speakers and sharing their latest research on ovarian folliculogenesis in MBI Conference 2023: Mechanobiology in Health and Disease. Thanks to various feedback following the talks!

By Shu Chian Tay|Nov 17th, 2023|Categories: Chan Lab News|Comments Off on Arikta and Yuting shared their research as speakers at the MBI Conference 2023

Benoit Ladoux

Visiting Faculty

Research Areas

Epithelial cell migration; microfabrication for cell mechanics; influence of the mechanical environments on cell functions; mechanotransduction

Research Interests

Our research aims at understanding how living organisms interact with their environment. In particular, we are studying the cooperation between adhesion, biomechanical and biochemical signaling for the adaptation of living organisms to changes in their environment. To probe these questions, our laboratory has developed a repertoire of micro- and nano-fabrication tools to control and measure the chemical and mechanical environment of cells. Our research programme thus focuses on the integration of novel microfabricated devices for the quantitative imaging of living organisms.

Biography

With a background in Physics, Prof Ladoux started his career at Curie Institute working on single molecule biophysics. He worked on two main problems combining statistical physics, microfabrication and molecular biology: 1) chromatin condensation in real time; 2) fluctuations of a single polymer under shear flows. After a post-doc on cell mechanics, he used his knowledge in biophysics and microfabrication to start a new subject on mechanical studies of cell migration and adhesion at the University Paris Diderot. He developed microsystems to characterise the mechanical interactions of cells with their migration support. He is currently working on rigidity sensing, collective cell migration and tissue homeostasis.

Recent Publications

  1. Shiratsuchi N, Fujita Y, Simon de Beco , Daubech C, Ladoux B, Grata A, Levayer R, Magny E, O'Brien LE, Priya R, Mitchell SJ, Rosenblatt J, Rupprecht J, Stockmann L, Sedzinski J, Roquin L, Suzanne M, Toyama Y, Matekcic M, Trepat X, Vinzens S, Wickström SA, Lwin AKO, and Yap AS. Meeting report - CellExIt#1, the first international symposium on cell extrusion. J Cell Sci 2026; 139(14). [PMID: 42504880]
  2. Balasubramaniam L, Monfared S, Ardaševa A, Rosse C, Schoenit A, Dang T, Maric C, Hautefeuille M, Kocgozlu L, Chilupuri R, Dubey S, Marangoni E, L Doss B, Chavrier P, Mège R, Doostmohammadi A, and Ladoux B. Dynamic forces shape the survival fate of eliminated cells. Nat Phys 2025;. [PMID: 40636322]
  3. Kawaue T, Yow I, Pan Y, Le AP, Lou Y, Loberas M, Shagirov M, Teng X, Prost J, Hiraiwa T, Ladoux B, and Toyama Y. Inhomogeneous mechanotransduction defines the spatial pattern of apoptosis-induced compensatory proliferation. Dev Cell 2023;. [PMID: 36800994]
  4. Sonam S, Balasubramaniam L, Lin S, Ivan YMY, Jaumà IP, Jebane C, Karnat M, Toyama Y, Marcq P, Prost J, Mège R, Rupprecht J, and Ladoux B. Mechanical stress driven by rigidity sensing governs epithelial stability. Nat Phys 2022; 19:132-141. [PMID: 36686215]
  5. Rose N, Estrada Chavez B, Sonam S, Nguyen T, Grenci G, Bigot A, Muchir A, Ladoux B, Cadot B, Le Grand F, and Trichet L. Bioengineering a miniaturized in vitro 3D myotube contraction monitoring chip to model muscular dystrophies. Biomaterials 2022; 293:121935. [PMID: 36584444]
  6. . https://www.ncbi.nlm.nih.gov/pubmed/36103541
  7. Yang Y, Nguyen E, Sankara Narayana GHN, Heuzé M, Fu C, Yu H, Mège R, Ladoux B, and Sheetz MP. Local contractions regulate E-cadherin rigidity sensing. Sci Adv 2022; 8(4):eabk0387. [PMID: 35089785]
  8. . https://www.ncbi.nlm.nih.gov/pubmed/33850145
  9. Latorre E, Kale S, Casares L, Gómez-González M, Uroz M, Valon L, Nair RV, Garreta E, Montserrat N, Del Campo A, Ladoux B, Arroyo M, and Trepat X. Addendum: Active superelasticity in three-dimensional epithelia of controlled shape. Nature 2021;. [PMID: 33846613]
  10. Balasubramaniam L, Doostmohammadi A, Saw TB, Narayana GHNS, Mueller R, Dang T, Thomas M, Gupta S, Sonam S, Yap AS, Toyama Y, Mège R, Yeomans JM, and Ladoux B. Author Correction: Investigating the nature of active forces in tissues reveals how contractile cells can form extensile monolayers. Nat Mater 2021;. [PMID: 33750921]

Lab Members

Chen Tianchi

Apr 11th, 2017|Comments Off on Chen Tianchi

Alumni, Ladoux Group

Hayri Emrah Balcioglu

Apr 11th, 2017|Comments Off on Hayri Emrah Balcioglu

Alumni, Ladoux Group

Bryant Lee Doss

Apr 11th, 2017|Comments Off on Bryant Lee Doss

Alumni, Ladoux Group

Anand Pratap Singh

Apr 11th, 2017|Comments Off on Anand Pratap Singh

Alumni, Saunders Group, now a post-doctoral researcher at Princeton University, USA

Christopher Preveen Amourda

Apr 11th, 2017|Comments Off on Christopher Preveen Amourda

Alumni, Saunders Group

Sham Leilah Tlili

Apr 11th, 2017|Comments Off on Sham Leilah Tlili

Alumni, Saunders Group

Chong Wen Hui Jeronica

Apr 11th, 2017|Comments Off on Chong Wen Hui Jeronica

Alumni, Saunders Group

Kerh Yun Yi

Apr 11th, 2017|Comments Off on Kerh Yun Yi

Alumni, Saunders Group

Huang Anqi

Apr 11th, 2017|Comments Off on Huang Anqi

Alumni, Saunders Group

Yin Jianmin

Apr 11th, 2017|Comments Off on Yin Jianmin

Alumni, Saunders Lab

Zhang Shaobo

Apr 11th, 2017|Comments Off on Zhang Shaobo

Alumni, Saunders Lab

Naila Alieva

Apr 11th, 2017|Comments Off on Naila Alieva

Alumni, Bershadsky Group

About the National University of Singapore

About NUSA leading global university centred in Asia, NUS is Singapore's flagship university, offering a global approach to education and research with a focus on Asian perspectives and expertise.

About the Mechanobiology Institute, National University of Singapore

About MBIOne of four Research Centres of Excellence at NUS, MBI is working to identify, measure and describe how the forces for motility and morphogenesis are expressed at the molecular, cellular and tissue level.
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