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Miguel Á. del Pozo

Spanish National Centre for Cardiovascular Research · ES
Area of research
Cell Biology · Immunology and Allergy
Research interest
Research interests include Caveolin-1 and cellular processes, Cell Adhesion Molecules Research, Cellular Mechanics and Interactions, and Erythrocyte Function and Pathophysiology.
h-index
68
citations
13,850
works
162
NIH funding
primary concept
Biology
email

Recent publications

Progression of Established Atherosclerotic Lesions Is Not Inhibited by Endothelial Knockout of Caveolin-1-Brief Report.
2026cited by 0position: contributordoi
Loss of Gαq reshapes fibroblast traits and drives tumor-stroma remodeling in oral cancer progression.
2026cited by 0position: contributordoi
Immunotherapy with conventional type-1 dendritic cells induces immune memory and limits tumor relapse.
2025cited by 16position: contributordoi
De novo identification of universal cell mechanics gene signatures.
2025cited by 7position: contributordoi
A Survey for Human Tissue-Level Determinants of CAV1 Regulation and Function.
2025cited by 0position: contributordoi
Loss of Gαq reshapes key fibroblast traits and drives matrix remodeling and aggressive progression of oral cancer tumors
2025cited by 0position: contributordoi
Sprayable extracellular matrix hydrogel reduces postoperative adhesion formation and protects healing tissues in preclinical models.
2025cited by 0position: contributordoi
De novo identification of universal cell mechanics gene signatures
eLife 2025cited by 0position: contributordoi
Cell response to extracellular matrix viscous energy dissipation outweighs high-rigidity sensing
Science Advances 2024cited by 35position: middledoi
Cell response to extracellular matrix viscous energy dissipation outweighs high-rigidity sensing.
2024cited by 24position: contributordoi
HDAC1/2 control mesothelium/ovarian cancer adhesive interactions impacting on Talin-1-α5β1-integrin-mediated actin cytoskeleton and extracellular matrix protein remodeling.
2024cited by 14position: contributordoi
Plasma membrane remodeling determines adipocyte expansion and mechanical adaptability.
2024cited by 9position: contributordoi
Cancer cell invasion: Caveolae and invadosomes are partners in crime.
2024cited by 1position: contributordoi
De novo identification of universal cell mechanics gene signatures
2024cited by 1position: contributordoi
Author response: De novo identification of universal cell mechanics gene signatures
2024cited by 0position: contributordoi
Caveolin-1 dolines form a distinct and rapid caveolae-independent mechanoadaptation system.
2023cited by 55position: contributordoi
Caveolae Mechanotransduction at the Interface between Cytoskeleton and Extracellular Matrix.
2023cited by 35position: contributordoi
Remodeling arteries: studying the mechanical properties of 3D-bioprinted hybrid photoresponsive materials.
2023cited by 11position: contributordoi
De novo identification of universal cell mechanics gene signatures
2023cited by 5position: contributordoi
A deep learning-based tool for the automated detection and analysis of caveolae in transmission electron microscopy images.
2023cited by 2position: contributordoi
Mechanical control of nuclear import by Importin-7 is regulated by its dominant cargo YAP.
2022cited by 56position: contributordoi
Caveolae couple mechanical stress to integrin recycling and activation.
2022cited by 28position: contributordoi
Insights Into the Biogenesis and Emerging Functions of Lipid Droplets From Unbiased Molecular Profiling Approaches.
2022cited by 13position: contributordoi
An unexpected role for PD-L1 in front-rear polarization and directional migration.
2022cited by 2position: contributordoi
Caveolae couple mechanical stress to integrin recycling and activation
2022cited by 0position: contributordoi
Author response: Caveolae couple mechanical stress to integrin recycling and activation
2022cited by 0position: contributordoi
Caveolae: Mechanosensing and mechanotransduction devices linking membrane trafficking to mechanoadaptation.
2021cited by 70position: contributordoi
Extracellular Vesicles: An Emerging Mechanism Governing the Secretion and Biological Roles of Tenascin-C.
2021cited by 30position: contributordoi
Post-Translational Modification and Subcellular Compartmentalization: Emerging Concepts on the Regulation and Physiopathological Relevance of RhoGTPases.
2021cited by 17position: contributordoi
Cholesterol-enriched membrane micro-domaindeficiency induces doxorubicin resistancevia promoting autophagy in breast cancer.
2021cited by 17position: contributordoi

Grants

No grants ingested yet.

Frequent collaborators

· 27 papers (2019–2026)Fidel-Nicolás Lolo · Centro Nacional de Investigaciones Oncológicas13 papers (2021–2026) · 7 papers (2021–2025)Jochen Guck · Friedrich-Alexander-Universität Erlangen-Nürnberg7 papers (2021–2025)Martin Kräter · Max Planck Institute for the Science of Light6 papers (2021–2025)Oliver Florey · Kettering University6 papers (2021–2025)Federico Calegari · Technische Universität Dresden6 papers (2021–2025)Marta Urbanska · Wellcome Trust6 papers (2021–2025) · 6 papers (2021–2025)Carlo Vittorio Cannistraci · Memcomputing (United States)6 papers (2021–2025)Pere Roca-Cusachs · Departament de Salut5 papers (2022–2024)Robert G. Parton · O'Brien Institute5 papers (2015–2020) · 4 papers (2021–2025)Maik Herbig · Technische Universität Dresden4 papers (2021–2024)Inmaculada Navarro-Lérida · Universidad Complutense de Madrid4 papers (2020–2026)Shada Abuhattum · Max-Planck-Gesellschaft4 papers (2021–2024)Xavier Trepat · Institut Pasteur4 papers (2022–2023)A. Taubenberger · Max Bergmann Zentrum für Biomaterialien4 papers (2021–2024)Nicole Toepfner · University Hospital Carl Gustav Carus4 papers (2021–2024)Raffaele Strippoli · Istituto Pasteur4 papers (2019–2025)