Cells · 2021 · 28 citations · 47 references
Two of the main pathologies characterizing dysferlinopathies are disrupted muscle membrane repair and chronic inflammation, which lead to symptoms of muscle weakness and wasting. Here, we used recombinant human Galectin-1 (rHsGal-1) as a therapeutic for LGMD2B mouse and human models. Various redox and multimerization states of Gal-1 show that rHsGal-1 is the most effective form in both increasing muscle repair and decreasing inflammation, due to its monomer-dimer equilibrium. Dose-response testing shows an effective 25-fold safety profile between 0.54 and 13.5 mg/kg rHsGal-1 in Bla/J mice. Mice treated weekly with rHsGal-1 showed downregulation of canonical NF-κB inflammation markers, decreased muscle fat deposition, upregulated anti-inflammatory cytokines, increased membrane repair, and increased functional movement compared to non-treated mice. Gal-1 treatment also resulted in a positive self-upregulation loop of increased endogenous Gal-1 expression independent of NF-κB activation. A similar reduction in disease pathologies in patient-derived human cells demonstrates the therapeutic potential of Gal-1 in LGMD2B patients.
47
Fiji: an open-source platform for biological-image analysis
Johannes Schindelin, Ignacio Arganda‐Carreras, Erwin Frise et al. · Nature Methods · 2012 · 67.6K citations · Full text
NF-κB signaling in inflammation
Ting Liu, Lingyun Zhang, Donghyun Joo et al. · Signal Transduction and Targeted Therapy · 2017 · 7.7K citations · Full text
Defective membrane repair in dysferlin-deficient muscular dystrophy
Dimple Bansal, Katsuya Miyake, Steven S. Vogel et al. · Nature · 2003 · 1K citations
Macrophage function in tissue repair and remodeling requires IL-4 or IL-13 with apoptotic cells
Lidia Bosurgi, Ying Cao, Mar Cabeza-Cabrerizo et al. · Science · 2017 · 545 citations · Full text