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González Hedström, Daniel and Fuente Fernández, María de la and Priego Cuadra, Teresa and Martín Velasco, Ana Isabel and Amor, Sara and López Calderón-Barreda, Asunción and Inarejos García, Antonio Manuel and García Villalón, Ángel Luís and Granado, Miriam (2021) Addition of Olive Leaf Extract to a Mixture of Algae and Extra Virgin Olive Oils Decreases Fatty Acid Oxidation and Synergically Attenuates Age-Induced Hypertension, Sarcopenia and Insulin Resistance in Rats. Antioxidants, 10 (7). p. 1066. ISSN 2076-3921
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Official URL: https://doi.org/10.3390/antiox10071066
Abstract
Olive-derived products, such as virgin olive oil (EVOO) and/or olive leaf extracts (OLE), exert anti-inflammatory, insulin-sensitizing and antihypertensive properties and may be useful for stabilizing omega 3 fatty acids (n-3 PUFA) due to their high content in antioxidant compounds. In this study, the addition of OLE 4:0.15 (w/w) to a mixture of algae oil (AO) rich in n-3 PUFA and EVOO (25:75, w/w) prevents peroxides formation after 12 months of storage at 30 °C. Furthermore, the treatment with the oil mixture (2.5 mL/Kg) and OLE (100 mg/Kg) to 24 month old Wistar rats for 21 days improved the lipid profile, increased the HOMA-IR and decreased the serum levels of miRNAs 21 and 146a. Treatment with this new nutraceutical also prevented age-induced insulin resistance in the liver, gastrocnemius and visceral adipose tissue by decreasing the mRNA levels of inflammatory and oxidative stress markers. Oil mixture + OLE also attenuated the age-induced alterations in vascular function and prevented muscle loss by decreasing the expression of sarcopenia-related markers. In conclusion, treatment with a new nutraceutical based on a mixture of EVOO, AO and OLE is a useful strategy for improving the stability of n-3 PUFA in the final product and to attenuate the cardiometabolic and muscular disorders associated with aging.
Item Type: | Article |
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Uncontrolled Keywords: | aging; olive leaf extract; omega 3 fatty acids; algae oil; extra virgin olive oil; insulin resistance; cardiovascular; inflammation; oxidative stress; endothelial dysfunction; hypertension |
Subjects: | Medical sciences > Medicine > Dietetics and Nutrition Medical sciences > Medicine > Physiology |
ID Code: | 72089 |
Deposited On: | 17 May 2022 14:00 |
Last Modified: | 18 May 2022 08:33 |
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