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Applied physiology, nutrition, and metabolism = Physiologie appliquee, nutrition et metabolisme 2019-May

Preventive effects of L-glutamine on gestational fructose-induced cardiac hypertrophy: Involvement of pyruvate dehydrogenase kinase-4.

يمكن للمستخدمين المسجلين فقط ترجمة المقالات
الدخول التسجيل فى الموقع
يتم حفظ الارتباط في الحافظة
Kehinde Olaniyi
Lawrence Olatunji

الكلمات الدالة

نبذة مختصرة

Gestational fructose exposure (GFE) has detrimental health consequences on both the maternal and fetus or offspring in the early or later life, contributing to epidemic rise in cardiometabolic syndrome including cardiac events. L-glutamine has been shown to mitigate cardiac metabolic stress. However, the effect of L-glutamine (GLN) on cardiac hypertrophy induced by gestational fructose exposure is not known. We therefore hypothesized that L-glutamine would prevent gestational fructose-induced cardiac hypertrophy, possibly by suppression of pyruvate dehydrogenase kinase-4 (PDK-4). Pregnant Wistar rats were allotted into the Control, GLN, GFE and GFE plus GLN groups (6rats in each group). The groups received distilled water (vehicle, p.o), 1g/kg body weight L-glutamine (p.o), 10% Fructose (w/v) and 10% Fructose (w/v) plus 1g/kg L-glutamine (p.o) respectively, daily for 19 days. Data from this study showed that gestational fructose-enriched drink caused cardiac hypertrophy with correspondent body weight gain, glucose dysregulation, increased cardiac PDK-4, triglyceride, glycogen, lactate and uric acid production. On the other hand, defective glutathione-dependent antioxidant barrier was also observed in pregnant rats taking fructose-enriched drink. However, the GFE-induced cardiac hypertrophy and its correlates were attenuated by L-glutamine. The present results demonstrate that gestational fructose-enriched drink induces cardiac hypertrophy that is accompanied by increased PDK-4. The findings also suggest that the inhibitory effect of L-glutamine on PDK-4 prevents the development of cardiac hypertrophy, thereby implying that PDK-4 may be a potential novel therapeutic intervention for cardiac hypertrophy particularly in pregnancy.

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