BackgroundThe population of stallion spermatozoa that survive thawing experience compromised mitochondrial functionality and accelerated senescence, among other changes. It is known that stallion spermatozoa show very active oxidative phosphorylation that may accelerate sperm senescence through increased production of reactive oxygen species. Rosiglitazone has been proven to enhance the glycolytic capability of stallion spermatozoa maintained at ambient temperature.ObjectivesThus, we hypothesized that thawed sperm may also benefit from rosiglitazone supplementation.Materials and methodsThawed sperm were washed and resuspended in Tyrodes media, and the samples were divided and supplemented with 0 or 75 mu M rosiglitazone. After one and two hours of incubation, mitochondrial functionality, Akt phosphorylation and caspase 3 activity were evaluated. Additional samples were incubated in the presence of an Akt1/2 inhibitor, compound C (an AMPK inhibitor) or GW9662 (an antagonist of the PPAR. receptor).ResultsRosiglitazone maintained Akt phosphorylation and reduced caspase 3 activation (p< 0.01), both of which were prevented by incubation in the presence of the three inhibitors. Rosiglitazone also enhanced mitochondrial functionality (P< 0.01).ConclusionWe provide the first evidence that the functionality of frozen stallion spermatozoa can be potentially improved after thawing through the activation of pro survival pathways, providing new clues for improving current sperm biotechnology.

Ortiz-Rodriguez J.M., da Silva C.B., Masot J., Redondo E., Gazquez A., Tapia J.A., et al. (2019). Rosiglitazone in the thawing medium improves mitochondrial function in stallion spermatozoa through regulating Akt phosphorylation and reduction of caspase 3. PLOS ONE, 14(7), 1-22 [10.1371/journal.pone.0211994].

Rosiglitazone in the thawing medium improves mitochondrial function in stallion spermatozoa through regulating Akt phosphorylation and reduction of caspase 3

Ortiz-Rodriguez J. M.;
2019

Abstract

BackgroundThe population of stallion spermatozoa that survive thawing experience compromised mitochondrial functionality and accelerated senescence, among other changes. It is known that stallion spermatozoa show very active oxidative phosphorylation that may accelerate sperm senescence through increased production of reactive oxygen species. Rosiglitazone has been proven to enhance the glycolytic capability of stallion spermatozoa maintained at ambient temperature.ObjectivesThus, we hypothesized that thawed sperm may also benefit from rosiglitazone supplementation.Materials and methodsThawed sperm were washed and resuspended in Tyrodes media, and the samples were divided and supplemented with 0 or 75 mu M rosiglitazone. After one and two hours of incubation, mitochondrial functionality, Akt phosphorylation and caspase 3 activity were evaluated. Additional samples were incubated in the presence of an Akt1/2 inhibitor, compound C (an AMPK inhibitor) or GW9662 (an antagonist of the PPAR. receptor).ResultsRosiglitazone maintained Akt phosphorylation and reduced caspase 3 activation (p< 0.01), both of which were prevented by incubation in the presence of the three inhibitors. Rosiglitazone also enhanced mitochondrial functionality (P< 0.01).ConclusionWe provide the first evidence that the functionality of frozen stallion spermatozoa can be potentially improved after thawing through the activation of pro survival pathways, providing new clues for improving current sperm biotechnology.
2019
Ortiz-Rodriguez J.M., da Silva C.B., Masot J., Redondo E., Gazquez A., Tapia J.A., et al. (2019). Rosiglitazone in the thawing medium improves mitochondrial function in stallion spermatozoa through regulating Akt phosphorylation and reduction of caspase 3. PLOS ONE, 14(7), 1-22 [10.1371/journal.pone.0211994].
Ortiz-Rodriguez J.M.; da Silva C.B.; Masot J.; Redondo E.; Gazquez A.; Tapia J.A.; Gil C.; Ortega-Ferrusola C.; Peña F.J.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/927544
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