PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
April 28, 2021Respiratory Research16 citationsOpen Access

Tropomyosin 2.1 collaborates with fibronectin to promote TGF-β1-induced contraction of human lung fibroblasts

PBPeta BradburyCNCassandra P. NaderACAylin Cidem

Key Result

Knocking down Tpm2.1 significantly reduced human lung fibroblast-mediated collagen gel contraction compared to scrambled control, demonstrating that Tpm2.1 collaborates with fibronectin to promote TGF-β1-induced contraction.

Structured PICO

P
Population
Primary human lung fibroblasts isolated from 26 patients undergoing lung transplantation or surgical resection for various respiratory conditions, including idiopathic pulmonary fibrosis and COPD.
I
Intervention
TGF-β1 stimulation (2 ng/mL) and Tpm2.1 siRNA knockdown (50 nM).
C
Comparator
Untreated (vehicle control) or scrambled control siRNA.
O
Outcome
Fibroblast-mediated collagen gel contraction, fibronectin mRNA/protein expression, and Tropomyosin isoform expression over up to 96 hours.surrogate

Tpm2.1 collaborates with fibronectin to promote TGF-β1-induced contraction of human lung fibroblasts, suggesting Tpm2.1 as a potential therapeutic target in lung fibrosis.

Main Result

p-value: p=<0.05

Limitations

  • The study was not powered to link specific disease diagnoses to the resultant cellular responses.
  • Findings are based on an in vitro model of extracellular matrix remodeling.
  • The study was not powered to link specific lung diseases to the resultant cellular responses.

Abstract

Abstract Many lung diseases are characterized by fibrosis, leading to impaired tissue patency and reduced lung function. Development of fibrotic tissue depends on two-way interaction between the cells and the extra-cellular matrix (ECM). Concentration-dependent increased stiffening of the ECM is sensed by the cells, which in turn increases intracellular contraction and pulling on the matrix causing matrix reorganization and further stiffening. It is generally accepted that the inflammatory cytokine growth factor β1 (TGF-β1) is a major driver of lung fibrosis through the stimulation of ECM production. However, TGF-β1 also regulates the expression of members of the tropomyosin (Tm) family of actin associating proteins that mediate ECM reorganization through intracellular-generated forces. Thus, TGF-β1 may mediate the bi-directional signaling between cells and the ECM that promotes tissue fibrosis. Using combinations of cytokine stimulation, mRNA, protein profiling and cellular contractility assays with human lung fibroblasts, we show that concomitant induction of key Tm isoforms and ECM by TGF-β1, significantly accelerates fibrotic phenotypes. Knocking down Tpm2.1 reduces fibroblast-mediated collagen gel contraction. Collectively, the data suggest combined ECM secretion and actin cytoskeleton contractility primes the tissue for enhanced fibrosis. Our study suggests that Tms are at the nexus of inflammation and tissue stiffening. Small molecules targeting specific Tm isoforms have recently been designed; thus targeting Tpm2.1 may represent a novel therapeutic target in lung fibrosis.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Bradbury et al. (2021) studied Lung fibrosis (n=26). Tpm2.1 siRNA knockdown and TGF-β1 stimulation vs. Scrambled control siRNA and vehicle control was evaluated on Human lung fibroblast-mediated collagen gel contraction (p=<0.05). Knocking down Tpm2.1 significantly reduced human lung fibroblast-mediated collagen gel contraction compared to scrambled control, demonstrating that Tpm2.1 collaborates with fibronectin to promote TGF-β1-induced contraction.

synapsesocial.com/papers/6a932162b5de130c01e4bcd1https://doi.org/10.1186/s12931-021-01730-y
Ask AI
Helpful
Bookmark
Share
View Full Paper