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1.
Matrix Biol ; 112: 90-115, 2022 09.
Artículo en Inglés | MEDLINE | ID: mdl-35963565

RESUMEN

Obesity triggers skeletal muscle physio-pathological alterations. However, the crosstalk between adipose tissue and myogenic cells remains poorly understood during obesity. We identified NID-1 among the adipose tissue secreted factors impairing myogenic potential of human myoblasts and murine muscle stem cells in vitro. Mice under High Fat Diet (HFD) displayed increased NID-1 expression in the skeletal muscle endomysium associated with intramuscular fat adipose tissue expansion and compromised muscle stem cell function. We show that NID-1 is highly secreted by skeletal muscle fibro-adipogenic/mesenchymal progenitors (FAPs) during obesity. We demonstrate that increased muscle NID-1 impairs muscle stem cells proliferation and primes the fibrogenic differentiation of FAPs, giving rise to an excessive deposition of extracellular matrix. Finally, we propose a model in which obesity leads to skeletal muscle extracellular matrix remodeling by FAPs, mediating the alteration of myogenic function by adipose tissue and highlighting the key role of NID-1 in the crosstalk between adipose tissue and skeletal muscle.


Asunto(s)
Adipogénesis , Desarrollo de Músculos , Animales , Diferenciación Celular , Matriz Extracelular , Humanos , Ratones , Músculo Esquelético/metabolismo , Obesidad/genética , Obesidad/metabolismo
3.
Cell Metab ; 33(2): 283-299.e9, 2021 02 02.
Artículo en Inglés | MEDLINE | ID: mdl-33400911

RESUMEN

Platelets are known to enhance the wound-healing activity of mesenchymal stem cells (MSCs). However, the mechanism by which platelets improve the therapeutic potential of MSCs has not been elucidated. Here, we provide evidence that, upon their activation, platelets transfer respiratory-competent mitochondria to MSCs primarily via dynamin-dependent clathrin-mediated endocytosis. We found that this process enhances the therapeutic efficacy of MSCs following their engraftment in several mouse models of tissue injury, including full-thickness cutaneous wound and dystrophic skeletal muscle. By combining in vitro and in vivo experiments, we demonstrate that platelet-derived mitochondria promote the pro-angiogenic activity of MSCs via their metabolic remodeling. Notably, we show that activation of the de novo fatty acid synthesis pathway is required for increased secretion of pro-angiogenic factors by platelet-preconditioned MSCs. These results reveal a new mechanism by which platelets potentiate MSC properties and underline the importance of testing platelet mitochondria quality prior to their clinical use.


Asunto(s)
Plaquetas/metabolismo , Células Madre Mesenquimatosas/metabolismo , Mitocondrias/metabolismo , Animales , Masculino , Ratones , Ratones Endogámicos C57BL , Ratones Transgénicos , Cicatrización de Heridas
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