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PMID: 42702991 Published · ppublish English

Stiffness-Dependent Mechanotransductive Signaling in Silicone Implant-Associated Fibrotic Encapsulation.

ACS applied bio materials ·Vol. 9 ·No. 17 ·2026-09-07

Park JH, Lee MH, Kim KM, Lee Y, Park JU

Abstract

Fibrotic encapsulation remains a major limitation of silicone-based soft-tissue implants and contributes to capsular contracture. Although biochemical and immunological factors have been extensively investigated, the contribution of implant stiffness to the peri-implant foreign body response remains incompletely defined. Here, we evaluated whether silicone implant stiffness is associated with fibrotic remodeling and changes in mechanotransductive signaling. Polydimethylsiloxane (PDMS) substrates and implants with elastic moduli ranging from 60 to 2000 kPa were fabricated and examined using human dermal fibroblasts and a rat subcutaneous implantation model. Increasing stiffness was associated with enhanced β1 integrin expression, FAK phosphorylation, ROCK1 expression, actin cytoskeletal organization, nuclear YAP localization, and upregulation of profibrotic markers, including α-SMA, CTGF, COL1A1, and COL3A1. In vivo, stiffer implants showed greater capsule thickness, collagen deposition, inflammatory cell infiltration, MPO and TGF-β1 expression, and sustained stiffness-associated changes in mechanotransductive proteins at 4 and 12 weeks. In contrast, the most compliant silicone condition attenuated these fibrosis-associated responses. These findings support material stiffness as a modifiable design parameter for silicone-based implantable biomaterials and suggest that relative softening within a feasible silicone material range may help reduce peri-implant fibrotic encapsulation.

Keywords
YAP/TAZ capsular contracture fibrotic encapsulation foreign body response implant stiffness mechanotransduction silicone implant
Article Info
Journal
ACS applied bio materials
Abbr.
ACS Appl Bio Mater
ISSN
2576-6422
Published
2026-09-07
Language
English
Country/Region
United States
NLM ID
101729147
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