AdipoRon reduces TGFβ1‐mediated collagen deposition in vitro and alleviates knee stiffness in vivo

Author:

Dudakovic Amel12,Limberg Afton K.1,Bothun Cole E.1,Dilger Oliver B.1,Bayram Banu1,Bettencourt Jacob W.1,Salmons Harold I.1,Thaler Roman12,Karczewski Daniel C.1,Owen Aaron R.1,Iyer Varun G.1,Payne Ashley N.1,Carstens Mason F.1,van Wijnen Andre J.3,Berry Daniel J.1,Sanchez‐Sotelo Joaquin1,Morrey Mark E.1,Abdel Matthew P.1ORCID

Affiliation:

1. Department of Orthopedic Surgery Mayo Clinic Rochester Minnesota USA

2. Department of Biochemistry and Molecular Biology Mayo Clinic Rochester Minnesota USA

3. Department of Biochemistry University of Vermont College of Medicine Burlington Vermont USA

Abstract

AbstractArthrofibrosis, which causes joint motion restrictions, is a common complication following total knee arthroplasty (TKA). Key features associated with arthrofibrosis include myofibroblast activation, knee stiffness, and excessive scar tissue formation. We previously demonstrated that adiponectin levels are suppressed within the knee tissues of patients affected by arthrofibrosis and showed that AdipoRon, an adiponectin receptor agonist, exhibited anti‐fibrotic properties in human mesenchymal stem cells. In this study, the therapeutic potential of AdipoRon was evaluated on TGFβ1‐mediated myofibroblast differentiation of primary human knee fibroblasts and in a mouse model of knee stiffness. Picrosirius red staining revealed that AdipoRon reduced TGFβ1‐induced collagen deposition in primary knee fibroblasts derived from patients undergoing primary TKA and revision TKA for arthrofibrosis. AdipoRon also reduced mRNA and protein levels of ACTA2, a key myofibroblast marker. RNA‐seq analysis corroborated the anti‐myofibrogenic effects of AdipoRon. In our knee stiffness mouse model, 6 weeks of knee immobilization, to induce a knee contracture, in conjunction with daily vehicle (DMSO) or AdipoRon (1, 5, and 25 mg/kg) via intraperitoneal injections were well tolerated based on animal behavior and weight measurements. Biomechanical testing demonstrated that passive extension angles (PEAs) of experimental knees were similar between vehicle and AdipoRon treatment groups in mice evaluated immediately following immobilization. Interestingly, relative to vehicle‐treated mice, 5 mg/kg AdipoRon therapy improved the PEA of the experimental knees in mice that underwent 4 weeks of knee remobilization following the immobilization and therapy. Together, these studies revealed that AdipoRon may be an effective therapeutic modality for arthrofibrosis.

Publisher

Wiley

Subject

Cell Biology,Clinical Biochemistry,Physiology

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