PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
November 1, 2003AJP Heart and Circulatory Physiology268 citations

Mechanical force regulation of myofibroblast differentiation in cardiac fibroblasts

View Full Paper
JWJ. WangHCH. ChenASArun Seth

Key Result

Application of static tensile force to 1-day cultured rat cardiac fibroblasts induced a 1.5- to 2-fold increase in SMA expression within 4 hours, dependent on ERK phosphorylation.

Structured PICO

P
Population
In vitro study of rat neonatal cardiac fibroblasts subjected to static tensile forces to evaluate myofibroblast differentiation.
I
Intervention
Static tensile forces (0.65 pN/microm2) applied via collagen-coated magnetite beads
C
Comparator
Baseline/unstimulated state
O
Outcome
Alpha-smooth muscle actin (SMA) expression (protein and mRNA)surrogate

Mechanical force regulates alpha-smooth muscle actin expression in cardiac fibroblasts depending on their differentiation state and selective MAPK activation.

Main Result

Effect estimate: 1.5- to 2-fold increase

Abstract

The myocardium responds to chronic pressure or volume overload by activation and proliferation of cardiac fibroblasts and their differentiation into myofibroblasts. Because alpha-smooth muscle actin (SMA) expression is the classical marker for myofibroblast differentiation, we examined force-induced SMA expression and regulation by specific MAPK pathways. Rat cardiac fibroblasts were separated from myocytes and smooth muscle cells, cultured, and phenotyped by using the presence of SMA, vimentin, and ED-A fibronectin and the absence of desmin as myofibroblast markers. Static tensile forces (0.65 pN/microm2) were applied to fibroblasts via collagen-coated magnetite beads. In neonatal cardiac fibroblasts cultured for 1 day, immunostaining and Western and Northern blotting showed very low basal levels of SMA. After the application of force, there were 1.5- to 2-fold increases of SMA protein and mRNA within 4 h. Force-induced SMA expression was dependent on ERK phosphorylation and on intact actin filaments. In contrast to cells cultured for 1 day, cells grown for 3 days on rigid substrates showed prominent stress fibers and high basal levels of SMA, which were reduced by 32% within 4 h after force application. ERK was not activated by force, but p38 phosphorylation was required for force-induced inhibition of SMA expression. These results indicate that mechanical force-induced regulation of SMA content is dependent on myofibroblast differentiation and by selective activation of MAPKs.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Wang et al. (2003) studied Myofibroblast differentiation. Static tensile forces vs. Basal levels (no force) was evaluated on Alpha-smooth muscle actin (SMA) expression (1.5- to 2-fold increase). Application of static tensile force to 1-day cultured rat cardiac fibroblasts induced a 1.5- to 2-fold increase in SMA expression within 4 hours, dependent on ERK phosphorylation.

synapsesocial.com/papers/6a6b477956128ae23fcb3d09https://doi.org/10.1152/ajpheart.00387.2003
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Tumor Necrosis Factor-α Upregulates Angiotensin II Type 1 Receptors on Cardiac Fibroblasts1999 · 99 citations
  2. 2Mechanical stress-induced cardiac hypertrophy: mechanisms and signal transduction pathways2000 · 505 citations
  3. 3MAP Kinase Activation by Flow in Endothelial Cells1996 · 225 citations
  4. 4Angiotensin II Stimulated Expression of Transforming Growth Factor-β1in Cardiac Fibroblasts and Myofibroblasts1997 · 358 citations
  5. 5Apoptosis during wound healing, fibrocontractive diseases and vascular wall injury1997 · 181 citations