info:eu-repo/semantics/article
Impaired insulin signaling pathways affect ovarian steroidogenesis in cows with COD
Fecha
2018-05Registro en:
Gareis, Natalia Carolina; Huber, Emilia; Hein, Gustavo Juan; Rodríguez, Fernanda Mariel; Salvetti, Natalia Raquel; et al.; Impaired insulin signaling pathways affect ovarian steroidogenesis in cows with COD; Elsevier Science; Animal Reproduction Science; 192; 5-2018; 298-312
0378-4320
CONICET Digital
CONICET
Autor
Gareis, Natalia Carolina
Huber, Emilia
Hein, Gustavo Juan
Rodríguez, Fernanda Mariel
Salvetti, Natalia Raquel
Angeli, Emmanuel
Ortega, Hugo Hector
Rey, Florencia
Resumen
Cystic ovarian disease (COD) represents an important cause of infertility in dairy cattle and is associated with multiple physiological disorders. Steroidogenesis, which is necessary to ensure normal ovarian functions, involves multiple enzymatic pathways coordinated by insulin and other proteins. We have previously shown that cows with COD have an altered insulin response. Therefore, in the present study, we evaluated further alterations in intermediates downstream of the PI3K pathway and pathways mediated by ERK as critical signals for the expression of steroidogenic enzymes in the ovaries of control cows and cows with spontaneous COD. To this end, we evaluated the gene and protein expression of pan-AKT, mTOR, ERK1/2, and steroidogenic enzymes by real-time PCR and immunohistochemistry. Steroid hormone concentrations were assessed at systemic and intrafollicular level. Results showed altered expression of intermediate molecules of the insulin signaling pathway, whose action might modify the synthetic pathway of steroidogenic hormones. Similarly, the expression of steroidogenic enzymes and the concentration of progesterone in serum and follicular fluid were altered. These alterations support the hypothesis that systemic factors contribute to the development and/or maintenance of COD, and that metabolic hormones within follicles such as insulin exert determinant effects on ovarian functionality in cows with COD.