Migration av tumörceller i 3D-matriser styrs av matrix-styvhet tillsammans med cell-matrix-adhesion och proteolysis
- 01Matrixens styvhet är en nyckelfaktor för cellmigration i 3D
- 02Celler rör sig snabbast i mindre styva matrixer
- 03En balans mellan dragkraft och vidhäftning är nödvändig
- 04Enzymer krävs för att bana väg genom matrixen
Styvheten i omgivande vävnad, tillsammans med vidhäftning och enzymatisk aktivitet, styr hur tumörceller migrerar i en 3D-miljö.
Cell migration on 2D surfaces is governed by a balance between counteracting tractile and adhesion forces. Although biochemical factors such as adhesion receptor and ligand concentration and binding, signaling through cell adhesion complexes, and cytoskeletal structure assembly/disassembly have been studied in detail in a 2D context, the critical biochemical and biophysical parameters that affect cell migration in 3D matrices have not been quantitatively investigated. We demonstrate that, in addition to adhesion and tractile forces, matrix stiffness is a key factor that influences cell movement in 3D. Cell migration assays in which Matrigel density, fibronectin concentration, and beta1 integrin binding are systematically varied show that at a specific Matrigel density the migration speed of DU-145 human prostate carcinoma cells is a balance between tractile and adhesion forces. However, when biochemical parameters such as matrix ligand and cell integrin receptor levels are held constant, maximal cell movement shifts to matrices exhibiting lesser stiffness. This behavior contradicts current 2D models but is predicted by a recent force-based computational model of cell movement in a 3D matrix. As expected, this 3D motility through an extracellular environment of pore size much smaller than cellular dimensions does depend on proteolytic activity as broad-spectrum matrix metalloproteinase (MMP) inhibitors limit the migration of DU-145 cells and also HT-1080 fibrosarcoma cells. Our experimental findings here represent, to our knowledge, discovery of a previously undescribed set of balances of cell and matrix properties that govern the ability of tumor cells to migration in 3D environments.
- APA
- Muhammad H Zaman, Linda M Trapani, Alisha L Sieminski, Drew MacKellar, Haiyan Gong, Roger D Kamm, Alan Wells, Douglas A Lauffenburger, & Paul Matsudaira (2006). Migration av tumörceller i 3D-matriser styrs av matrix-styvhet tillsammans med cell-matrix-adhesion och proteolysis. https://fasciaresearchdatabase.com/migration-of-tumor-cells-in-3d-matrices-is-governed-by-matrix-stiffness-along-with-cell-matrix-adhesion-and-proteolysis/
- MLA
- Muhammad H Zaman, et al. "Migration av tumörceller i 3D-matriser styrs av matrix-styvhet tillsammans med cell-matrix-adhesion och proteolysis." 2006, https://fasciaresearchdatabase.com/migration-of-tumor-cells-in-3d-matrices-is-governed-by-matrix-stiffness-along-with-cell-matrix-adhesion-and-proteolysis/.
- Chicago
- Muhammad H Zaman et al. 2006. "Migration av tumörceller i 3D-matriser styrs av matrix-styvhet tillsammans med cell-matrix-adhesion och proteolysis.". https://fasciaresearchdatabase.com/migration-of-tumor-cells-in-3d-matrices-is-governed-by-matrix-stiffness-along-with-cell-matrix-adhesion-and-proteolysis/
- B2016Internal strain drives spontaneous periodic buckling in collagen and regulates remodeling
- A2011Remodeling and homeostasis of the extracellular matrix: implications for fibrotic diseases and cancer
- A2007Extracellular matrix, mechanotransduction and structural hierarchies in heart tissue engineering
- Ep. 01515. Dr Neil Theise om fascia, komplexitet och medvetandets natur
Avsnittet publicerades första gången i den svenska podcasten Fasciaguiden den 5 juni 2025. I detta tankeväckande samtal möter vi Dr Neil Theise – leverpatolog, fasciaforskare och…
- Ep. 01414. Dr. Gerald Pollack om vattnets fjärde fas – och dess roll för minne, energi och cancer
Avsnittet publicerades första gången i den svenska podcasten Fasciaguiden den 4 juni 2025. I detta unika avsnitt möter vi professor Gerald Pollack – en av världens mest inflytelse…
