A 3D adipogenesis platform to study the fate of fibro/adipogenic progenitors in muscular dystrophies

Author:

Reggio Alessio1ORCID,De Paolis Francesca12ORCID,Bousselmi Salma1ORCID,Cicciarelli Felice1ORCID,Bernardini Sergio1,Rainer Alberto34ORCID,Seliktar Dror5ORCID,Testa Stefano6ORCID,Cirillo Carmine7ORCID,Grumati Paolo78ORCID,Cannata Stefano1,Fuoco Claudia1ORCID,Gargioli Cesare1ORCID

Affiliation:

1. University of Rome ‘Tor Vergata’ 1 Department of Biology , , 00133 Rome , Italy

2. University of Rome ‘Tor Vergata’ 2 Cellular and Molecular Biology, Department of Biology , , 00133 Rome , Italy

3. Università Campus Bio-Medico 3 Department of Engineering , , 00128 Rome , Italy

4. Institute of Nanotechnology (NANOTEC), National Research Council 4 , 73100 Lecce , Italy

5. Techion Institute 5 Department of Biomedical Engineering , , 32000 Haifa , Israel

6. Aix Marseille University, INSERM, Marseille Medical Genetics (MMG) 6 , 13005 Marseille , France

7. Telethon Institute of Genetics and Medicine (TIGEM) 7 , 80078 Pozzuoli , Italy

8. Federico II University 8 Department of Clinical Medicine and Surgery , , 80138 Naples , Italy

Abstract

ABSTRACT In human dystrophies, progressive muscle wasting is exacerbated by ectopic deposition of fat and fibrous tissue originating from fibro/adipogenic progenitors (FAPs). In degenerating muscles, the ability of these cells to promote successful healing is attenuated, and FAPs aberrantly expand and differentiate into adipocytes and fibroblasts. Thus, arresting the fibro/adipogenic fate of FAPs, without affecting their physiological role, represents a valuable therapeutic strategy for patients affected by muscle diseases. Here, using a panel of adipose progenitor cells, including human-derived FAPs, coupled with pharmacological perturbations and proteome profiling, we report that LY2090314 interferes with a genuine adipogenic program acting as WNT surrogate for the stabilization of a competent β-catenin transcriptional complex. To predict the beneficial impact of LY2090314 in limiting ectopic deposition of fat in human muscles, we combined a poly-ethylene-glycol-fibrinogen biomimetic matrix with these progenitor cells to create a miniaturized 3D model of adipogenesis. Using this scalable system, we demonstrated that a two-digit nanomolar dose of this compound effectively represses adipogenesis at higher 3D scale, thus indicating the potential for LY2090314 to limit FAP-derived fat infiltrates in dystrophic muscles.

Funder

AFM-Téléthon

Fondazione Telethon

Muscular Dystrophy Association

Ministero dell'Istruzione, dell'Università e della Ricerca

Universita degli Studi di Roma Tor Vergata

Publisher

The Company of Biologists

Subject

General Biochemistry, Genetics and Molecular Biology,Immunology and Microbiology (miscellaneous),Medicine (miscellaneous),Neuroscience (miscellaneous)

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