Role of sialidase Neu3 and ganglioside GM3 in cardiac fibroblasts activation

Author:

Ghiroldi Andrea1ORCID,Piccoli Marco1,Creo Pasquale1,Cirillo Federica1,Rota Paola2,D'Imperio Sara134,Ciconte Giuseppe4,Monasky Michelle M.4,Micaglio Emanuele4,Garatti Andrea5,Aureli Massimo6,Carsana Emma Veronica6,Menicanti Lorenzo5,Pappone Carlo47,Anastasia Luigi17ORCID

Affiliation:

1. Laboratory of Stem Cells for Tissue Engineering, IRCCS Policlinico San Donato, San Donato Milanese, Milan, Italy

2. Department of Biomedical, Surgical and Dental Sciences, University of Milan, Milan, Italy

3. Department of Biomedical Sciences for Health, University of Milan, Milan, Italy

4. Arrhythmology Department, IRCCS Policlinico San Donato, San Donato Milanese, Milan, Italy

5. Department of Cardiovascular Disease ‘E. Malan’, Cardiac Surgery Unit, IRCCS Policlinico San Donato, San Donato Milanese, Milan, Italy

6. Department of Medical Biotechnology and Translational Medicine, University of Milan, Milan, Italy

7. University of Vita-Salute San Raffaele, Milan, Italy

Abstract

Cardiac fibrosis is a key physiological response to cardiac tissue injury to protect the heart from wall rupture. However, its progression increases heart stiffness, eventually causing a decrease in heart contractility. Unfortunately, to date, no efficient antifibrotic therapies are available to the clinic. This is primarily due to the complexity of the process, which involves several cell types and signaling pathways. For instance, the transforming growth factor beta (TGF-β) signaling pathway has been recognized to be vital for myofibroblasts activation and fibrosis progression. In this context, complex sphingolipids, such as ganglioside GM3, have been shown to be directly involved in TGF-β receptor 1 (TGF-R1) activation. In this work, we report that an induced up-regulation of sialidase Neu3, a glycohydrolytic enzyme involved in ganglioside cell homeostasis, can significantly reduce cardiac fibrosis in primary cultures of human cardiac fibroblasts by inhibiting the TGF-β signaling pathway, ultimately decreasing collagen I deposition. These results support the notion that modulating ganglioside GM3 cell content could represent a novel therapeutic approach for cardiac fibrosis, warranting for further investigations.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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