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Research.

Every peer-reviewed study on fascia in one place — graded for strength of evidence, summarised in plain language for clinicians, researchers, and curious readers.

We grade studies from A to 1A+++ using the Fascia Research Database rubric — 1A+++ is the strongest.

Researchers behind the studies
2,806
studies
602
top-graded
2,783
with plain-language summary
Showing 13–24 of 28 studies · page 2/3extracellular matrixA
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  1. A
    2011

    Remodeling and homeostasis of the extracellular matrix: implications for fibrotic diseases and cancer

    Thomas R Cox, Janine T Erler

    In this perspective article, the authors discuss how the extracellular matrix (ECM) is constantly being remodeled, a process essential for normal bodily functions like wound healing and tissue maintenance. When this rem…

    fasciaextracellular matrixcancerfibrosisstiffness
  2. A
    2009

    From mechanotransduction to extracellular matrix gene expression in fibroblasts

    Matthias Chiquet, Laurent Gelman, Roman Lutz, Silke Maier

    This 2009 review article explores how connective tissue cells, or fibroblasts, sense and respond to mechanical forces from their environment. Cells attach to the surrounding extracellular matrix via adhesion contacts, w…

    fasciaextracellular matrixfibroblastcytoskeletonmechanotransduction
  3. A
    2009

    Mechanotransduction at a distance: mechanically coupling the extracellular matrix with the nucleus

    Ning Wang, Jessica D Tytell, Donald E Ingber

    In this narrative review, the authors explore how mechanical forces can influence the cell nucleus from a distance. Research has often focused on how external forces are converted into chemical signals at the cell's sur…

    fasciaextracellular matrixcytoskeletonmechanotransductioncell nucleus
  4. A
    2008

    Tensegrity-Based Mechanosensing from Macro to Micro

    Donald E Ingber

    This review article, based on a lecture, explores how cells convert mechanical signals into biochemical responses. The author proposes that the body uses "tensegrity" (tensional integrity) principles, where interconnect…

    fasciaextracellular matrixTensegritycytoskeletonmechanotransduction
  5. A
    2008

    Differential effects of hyaluronan and its fragments on fibroblasts: Relation to wound healing

    Maha David-Raoudi, Frederic Tranchepain, Brigitte Deschrevel, Jean-Claude Vincent, Patrick Bogdanowicz, Karim Boumedien…

    This lab study investigated how hyaluronan (HA) of different molecular sizes affects human fibroblast cells, which are key to wound healing. Researchers exposed fibroblasts to native HA and two smaller fragments. All th…

    hyaluronanfasciawound healingextracellular matrixfibrosis
  6. A
    2008

    Can cancer be reversed by engineering the tumor microenvironment?

    Donald E Ingber

    In this perspective article, the author proposes a different way of looking at cancer. Instead of focusing solely on genetic mutations, he argues that the physical environment around a tumor, particularly the extracellu…

    fasciaextracellular matrixmechanicalcytoskeletonstroma
  7. A
    2007

    Extracellular matrix, mechanotransduction and structural hierarchies in heart tissue engineering

    Kevin K Parker, Donald E Ingber

    This narrative review explores the challenges of engineering artificial heart tissue. The heart functions across vast scales of time and space, from tiny ion channels to the whole organ's pumping action. The authors sug…

    fasciaextracellular matrixcytoskeletonmechanotransductionmyocardial cell
  8. A
    2007

    Formation and Function of the Myofibroblast during Tissue Repair

    Boris Hinz

    Myofibroblasts are specialized cells that play a key role in wound healing and tissue repair. Formed from fibroblasts, their primary function is to contract, which helps pull the edges of a wound together. While this is…

    fasciaextracellular matrixfibrosisMyofibroblastwound healing TGF-beta
  9. A
    2006

    Migration of tumor cells in 3D matrices is governed by matrix stiffness along with cell-matrix adhesion and proteolysis

    Muhammad H Zaman, Linda M Trapani, Alisha L Sieminski, Drew MacKellar, Haiyan Gong, Roger D Kamm, Alan Wells, Douglas A…

    This study investigated how tumor cells move in a three-dimensional environment similar to body tissues. Researchers found that in addition to the cell's ability to adhere to and pull on its surroundings, the stiffness…

    extracellular matrixmatrix metalloproteinasecell motilityEGF receptor
  10. A
    2006

    Mechanisms of Mechanotransduction

    A Wayne Orr, Brian P Helmke, Brett R Blackman, Martin A Schwartz

    This review describes mechanotransduction, the process by which cells sense and respond to physical forces. The researchers explain that nearly all living organisms, from bacteria to humans, are sensitive to mechanical…

    extracellular matrixcytoskeletonmechanotransductionfocal adhesion
  11. A
    2005

    Cell tension, matrix mechanics, and cancer development

    Sui Huang, Donald E Ingber

    Doctors can often diagnose cancer by feeling for tissue stiffness, and this study explores how this mechanical property contributes to cancer development. The researchers suggest that the stiff extracellular matrix in t…

    extracellular matrixcancercytoskeletonmechanotransduction
  12. A
    2003

    Mechanobiology and diseases of mechanotransduction

    Donald E Ingber

    This 2003 article argues that medicine often overlooks the physical and mechanical aspects of disease, focusing instead on genetics. The author reviews how physical forces and the extracellular matrix are vital for norm…

    extracellular matrixcytoskeletonmechanotransductionIntegrinstissue engineering