Literature DB >> 29298864

Targeting extracellular matrix stiffness to attenuate disease: From molecular mechanisms to clinical trials.

Marsha C Lampi1, Cynthia A Reinhart-King2.   

Abstract

Tissues stiffen during aging and during the pathological progression of cancer, fibrosis, and cardiovascular disease. Extracellular matrix stiffness is emerging as a prominent mechanical cue that precedes disease and drives its progression by altering cellular behaviors. Targeting extracellular matrix mechanics, by preventing or reversing tissue stiffening or interrupting the cellular response, is a therapeutic approach with clinical potential. Major drivers of changes to the mechanical properties of the extracellular matrix include phenotypically converted myofibroblasts, transforming growth factor β (TGFβ), and matrix cross-linking. Potential pharmacological interventions to overcome extracellular matrix stiffening are emerging clinically. Aside from targeting stiffening directly, alternative approaches to mitigate the effects of increased matrix stiffness aim to identify and inhibit the downstream cellular response to matrix stiffness. Therapeutic interventions that target tissue stiffening are discussed in the context of their limitations, preclinical drug development efforts, and clinical trials.
Copyright © 2018 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works.

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Year:  2018        PMID: 29298864     DOI: 10.1126/scitranslmed.aao0475

Source DB:  PubMed          Journal:  Sci Transl Med        ISSN: 1946-6234            Impact factor:   19.319


  118 in total

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Authors:  Kai Shen; Harshavardhan Kenche; Hua Zhao; Jinping Li; Jasimine Stone
Journal:  Biochem Biophys Res Commun       Date:  2018-11-28       Impact factor: 3.575

Review 2.  The role of the cell-matrix interface in aging and its interaction with the renin-angiotensin system in the aged vasculature.

Authors:  Maria De Luca
Journal:  Mech Ageing Dev       Date:  2018-04-04       Impact factor: 5.432

3.  Tunable hydrogels for controlling phenotypic cancer cell states to model breast cancer dormancy and reactivation.

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Journal:  Biomaterials       Date:  2019-05-10       Impact factor: 12.479

Review 4.  Scaling up single-cell mechanics to multicellular tissues - the role of the intermediate filament-desmosome network.

Authors:  Joshua A Broussard; Avinash Jaiganesh; Hoda Zarkoob; Daniel E Conway; Alexander R Dunn; Horacio D Espinosa; Paul A Janmey; Kathleen J Green
Journal:  J Cell Sci       Date:  2020-03-16       Impact factor: 5.285

5.  Interleukin-17 Drives Interstitial Entrapment of Tissue Lipoproteins in Experimental Psoriasis.

Authors:  Li-Hao Huang; Bernd H Zinselmeyer; Chih-Hao Chang; Brian T Saunders; Andrew Elvington; Osamu Baba; Thomas J Broekelmann; Lina Qi; Joseph S Rueve; Melody A Swartz; Brian S Kim; Robert P Mecham; Helge Wiig; Michael J Thomas; Mary G Sorci-Thomas; Gwendalyn J Randolph
Journal:  Cell Metab       Date:  2018-11-08       Impact factor: 27.287

Review 6.  Stiffness Sensing by Cells.

Authors:  Paul A Janmey; Daniel A Fletcher; Cynthia A Reinhart-King
Journal:  Physiol Rev       Date:  2019-11-21       Impact factor: 37.312

7.  TENSCell: Imaging of Stretch-Activated Cells Reveals Divergent Nuclear Behavior and Tension.

Authors:  Benjamin Seelbinder; Adrienne K Scott; Isabel Nelson; Stephanie E Schneider; Kristin Calahan; Corey P Neu
Journal:  Biophys J       Date:  2020-04-23       Impact factor: 4.033

Review 8.  Charting the unexplored extracellular matrix in cancer.

Authors:  Elysse C Filipe; Jessica L Chitty; Thomas R Cox
Journal:  Int J Exp Pathol       Date:  2018-04-19       Impact factor: 1.925

9.  The biophysics and mechanics of blood from a materials perspective.

Authors:  Yongzhi Qiu; David R Myers; Wilbur A Lam
Journal:  Nat Rev Mater       Date:  2019-03-28       Impact factor: 66.308

10.  Editorial: Special Issue on Heart Valve Mechanobiology : New Insights into Mechanical Regulation of Valve Disease and Regeneration.

Authors:  Craig A Simmons; Hanjoong Jo
Journal:  Cardiovasc Eng Technol       Date:  2018-06       Impact factor: 2.495

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