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Astaxanthin Supplementation Delays Physical Exhaustion and Prevents Redox Imbalances in Plasma and Soleus Muscles of Wistar Rats

机译:补充虾青素可延缓体力消耗并防止Wistar大鼠血浆和比目鱼肌中氧化还原失衡

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摘要

Astaxanthin (ASTA) is a pinkish-orange carotenoid commonly found in marine organisms, especially salmon. ASTA is a powerful antioxidant and suggested to provide benefits for human health, including the inhibition of LDL oxidation, UV-photoprotection, and prophylaxis of bacterial stomach ulcers. Exercise is associated to overproduction of free radicals in muscles and plasma, with pivotal participation of iron ions and glutathione (GSH). Thus, ASTA was studied here as an auxiliary supplement to improve antioxidant defenses in soleus muscles and plasma against oxidative damage induced by exhaustive exercise. Long-term 1 mg ASTA/kg body weight (BW) supplementation in Wistar rats (for 45 days) significantly delayed time to exhaustion by 29% in a swimming test. ASTA supplementation increased scavenging/iron-chelating capacities (TEAC/FRAP) and limited exercise-induced iron overload and its related pro-oxidant effects in plasma of exercising animals. On the other hand, ASTA induced significant mitochondrial Mn-dependent superoxide dismutase and cytosolic glutathione peroxidase antioxidant responses in soleus muscles that, in turn, increased GSH content during exercise, limited oxidative stress, and delayed exhaustion. We also provided significant discussion about a putative “mitochondrial-targeted” action of ASTA based on previous publications and on the positive results found in the highly mitochondrial populated (oxidative-type) soleus muscles here.
机译:虾青素(ASTA)是一种粉红色橙色的类胡萝卜素,通常存在于海洋生物,尤其是鲑鱼中。 ASTA是一种功能强大的抗氧化剂,并建议对人体健康有益,包括抑制LDL氧化,保护紫外线和预防细菌性胃溃疡。运动与肌肉和血浆中自由基的过度产生有关,其中铁离子和谷胱甘肽(GSH)的参与至关重要。因此,这里研究了ASTA作为辅助补充剂,以改善比目鱼肌和血浆中的抗氧化防御能力,以抵抗力竭运动引起的氧化损伤。在Wistar大鼠中长期补充1 mg ASTA / kg体重(BW)(连续45天),在游泳测试中将精疲力竭的时间显着延迟了29%。 ASTA补充剂提高了清除/铁螯合能力(TEAC / FRAP),并限制了运动引起的铁超负荷及其在运动动物血浆中的相关抗氧化剂作用。另一方面,ASTA在比目鱼肌中诱导明显的线粒体Mn依赖的超氧化物歧化酶和胞质谷胱甘肽过氧化物酶抗氧化反应,进而在运动过程中增加GSH含量,限制氧化应激和延迟疲劳。我们还根据以前的出版物以及这里高度线粒体(氧化型)比目鱼肌的阳性结果,对ASTA的“线粒体靶向”假定作用进行了重要讨论。

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