Selenium supplementation via modulation of selenoproteins ameliorates binge drinkinginduced oxidative, energetic, metabolic, and endocrine imbalance in adolescent rats’ skeletal muscle
Metadatos
Mostrar el registro completo del ítemAutor
Romero-Herrera, Inés; Nogales, Fátima; Gallego‑Lopez, María del Carmen; Díaz Castro, Javier; Carreras, Olimpia; Ojeda, María LuisaEditorial
Royal Society of Chemistry
Fecha
2024-07-10Referencia bibliográfica
Romero Herrera, I. et. al. Food Funct., 2024, 15, 7988–8007. [https://doi.org/10.1039/D4FO01354A]
Patrocinador
Andalusian Regional Government, which support the CTS-193 research group (2021/CTS-193; 2019/CTS-193); VII Plan Propio de Investigación y Transferencia – University of Seville 2022; Research, Technology and Innovation Centre (CITIUS, Centro de Investigación, Tecnología e Innovación) of the University of SevilleResumen
Adolescence is characterized by increased vulnerability to addiction and ethanol (EtOH) toxicity, particularly
through binge drinking (BD), a favored acute EtOH-ingestion pattern among teenagers. BD, highly
pro-oxidant, induces oxidative stress (OS), affecting skeletal muscle (SKM), where selenium (Se), an antioxidant
element and catalytic center of selenoproteins, is stored, among other tissues. Investigating the
effects of Se supplementation on SKM after BD exposure holds therapeutic promise. For this, we randomised
32 adolescent Wistar rats into 4 groups, exposed or not to intermittent i.p. BD [BD and control (C)]
(3 g EtOH per kg per day), and supplemented with selenite [BDSe and CSe] (0.4 ppm). In SKM, we examined
the oxidative balance, energy status (AMPK, SIRT-1), protein turnover (IRS-1, Akt1, mTOR, IGF-1, NF-
κB p65, MAFbx, ULK1, pelF2α), serum myokines (myostatin, IL-6, FGF21, irisin, BDNF, IL-15, fractalkine,
FSTL-1, FABP-3), and selenoproteins (GPx1, GPx4, SelM, SelP). In the pancreas, we studied the oxidative
balance and SIRT-1 expression. Selenite supplementation mitigated BD-induced OS by enhancing the
expression of selenoproteins, which restored oxidative balance, notably stimulating protein synthesis and
normalizing the myokine profile, leading to improved SKM mass growth and metabolism, and reduced
inflammation and apoptosis (caspase-3). Selenite restoration of SelP’s receptor LRP1 expression, reduced
by BD, outlines the crucial role of SKM in the SelP cycle, linking Se levels to SKM development.
Furthermore, Se attenuated pancreatic OS, preserving insulin secretion. Se supplementation shows
potential for alleviating SKM damage from BD, with additional beneficial endocrine effects on the pancreas,
adipose tissue, liver, heart and brain that position it as a broad-spectrum treatment for adolescent
alcohol consumption, preventing metabolic diseases in adulthood.





