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1.
Exp Dermatol ; 31(6): 906-917, 2022 06.
Artículo en Inglés | MEDLINE | ID: mdl-35119146

RESUMEN

Androgenetic alopecia (AGA) is a prevalent hair loss condition in males that develops due to the influence of androgens and genetic predisposition. With the aim of elucidating genes involved in AGA pathogenesis, we modelled AGA with three-dimensional culture of keratinocyte-surrounded dermal papilla (DP) cells. We co-cultured immortalised balding and non-balding human DP cells (DPCs) derived from male AGA patients with epidermal keratinocyte (NHEK) using multi-interfacial polyelectrolyte complexation technique. We observed up-regulated mitochondria-related gene expression in balding compared with non-balding DP aggregates which indicated altered mitochondria metabolism. Further observation of significantly reduced electron transport chain complex activity (complexes I, IV and V), ATP levels and ability to uptake metabolites for ATP generation demonstrated compromised mitochondria function in balding DPC. Balding DP was also found to be under significantly higher oxidative stress than non-balding DP. Our experiments suggest that application of antioxidants lowers oxidative stress levels and improves metabolite uptake in balding DPC. We postulate that the observed up-regulation of mitochondria-related genes in balding DP aggregates resulted from an over-compensatory effort to rescue decreased mitochondrial function in balding DP through the attempted production of new functional mitochondria. In all, our three-dimensional co-culturing revealed mitochondrial dysfunction in balding DPC, suggesting a metabolic component in the aetiology of AGA.


Asunto(s)
Alopecia , Andrógenos , Adenosina Trifosfato/metabolismo , Alopecia/patología , Andrógenos/metabolismo , Folículo Piloso/metabolismo , Humanos , Queratinocitos/metabolismo , Masculino , Mitocondrias/metabolismo
2.
Methods Mol Biol ; 1771: 55-66, 2018.
Artículo en Inglés | MEDLINE | ID: mdl-29633204

RESUMEN

We present here a method to create arrays of microcavities that can be differentially coated on their bottom, side, and top with different proteins. These cavities range in size from single cell to multicellular aggregate. We provide detailed protocols to create such arrays with some variations using different materials and different coating proteins. The use of such cavities as bona fide artificial microniches to mimic cellular microenvironments has been already established and is referenced.


Asunto(s)
Análisis por Micromatrices/métodos , Animales , Técnicas de Cultivo de Célula , Línea Celular , Análisis por Micromatrices/instrumentación , Análisis de Matrices Tisulares/instrumentación , Análisis de Matrices Tisulares/métodos
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