4.3 Article

Overexpression of laminin α4 facilitates proliferation and migration of fibroblasts in knee arthrofibrosis by targeting canonical Shh/Gli1 signaling

Journal

CONNECTIVE TISSUE RESEARCH
Volume 62, Issue 4, Pages 464-474

Publisher

TAYLOR & FRANCIS INC
DOI: 10.1080/03008207.2020.1773451

Keywords

Laminin alpha 4; Shh/Gli1 signaling; knee arthrofibrosis; fibroblast; proliferation; migration

Funding

  1. National Natural Science Foundation of China [81772331, 81772332]
  2. Six talent peaks project of Jiangsu Province [2015-WSN-108]
  3. Jiangsu Provincial 333 Project Foundation [BRA2018194]
  4. Jiangsu Provincial Medical Youth Talent [QNRC2016344, QNRC2016343]
  5. Social Development Projects of Yangzhou Science and Technology Bureau [YZ2017073]
  6. China Postdoctoral Science Foundation [2016M590431]
  7. Postdoctoral Science Foundation of Jiangsu and Jiangsu Provincial Medical Innovation Team [CXTDB2017004]

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LAMA4 positively regulates cellular proliferation and migration in fibroblasts through activating the Shh/Gli1 signaling pathway. Blocking Shh/Gli1 signaling with cyclopamine can reverse the promoting effects of LAMA4 on fibroblast proliferation and migration. This signaling axis could potentially serve as a therapeutic target for preventing surgery-induced intraarticular fibrosis.
Aim Pathologic hyperplasia of fibroblast is responsible for the progression of intraarticular fibrosis. Laminin alpha 4 (LAMA4), a subunit of laminin macromolecule family, was found to be overexpressed in various fibrotic tissues. However, the role of LAMA4 in knee arthrofibrosis remains elusive. Therefore, the aim of this study was to investigate the effect and mechanism of LAMA4 on fibroblast proliferation and migration. Materials and methods Following knee surgery, LAMA4 expression was detected in intraarticular fibrous tissues in rabbits at week 2 and week 4, respectively. In lentivirus-mediated LAMA4-overexpressed fibroblasts, cellular proliferation was assessed by EdU labeling and cell cycle analysis, cellular migration was evaluated using Transwell assay, and the expressions of key components in Shh/Gli1 signaling were detected by qRT-PCR, western blot and immunofluorescence analysis. Additionally, canonical Shh cascade was further blocked in LAMA4-overexpressed fibroblasts by cyclopamine, and the changes in cellular proliferation and migration were investigated. Results LAMA4 expression was positively correlated with the severity of knee arthrofibrosis. Functional studies demonstrated that LAMA4 overexpression facilitated proliferation, cell cycle progression and migration in fibroblasts. Mechanically, LAMA4 activated the canonical Shh/Gli1 signaling and promoted the nuclear translocation of Gli1 to upregulate expression of genes associated with cellular proliferation and migration. Intriguingly, blockage of Shh/Gli1 signaling with cyclopamine reversed the promoting effects of LAMA4 on proliferation and migration of fibroblasts. Conclusions LAMA4 positively regulated cellular proliferation and migration in fibroblasts via activating the Shh/Gli1 signaling. LAMA4/Shh/Gli1 signaling axis might be a potential therapeutic target for the prevention of surgery-induced intraarticular fibrosis.

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