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首页> 外文期刊>Journal of pineal research >Protective effect of N-acetyl-serotonin on the nonenzymatic lipid peroxidation in rat testicular microsomes and mitochondria.
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Protective effect of N-acetyl-serotonin on the nonenzymatic lipid peroxidation in rat testicular microsomes and mitochondria.

机译:N-乙酰5-羟色胺对大鼠睾丸微粒体和线粒体非酶脂质过氧化的保护作用。

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N-acetyl-serotonin, the immediate precursor of melatonin in the tryptophan metabolic pathway in the pineal gland, has been reported to be an antioxidant. The aim of this study was to test the in vitro protective effect of N-acetyl-serotonin on the ascorbate-Fe(++) induced lipid peroxidation of polyunsaturated fatty acids (PUFAs) located in testis microsomes and mitochondria. We assayed increasing concentrations (0-10 mM) of N-acetyl-serotonin in testis microsomes and (0-1 mM) of N-acetyl-serotonin in testis mitochondria. Control experiments were performed by incubating microsomal and mitochondrial membranes with N-acetyl-serotonin in the absence of lipid peroxidation-inducing drugs. Special attention was paid to the changes produced on the highly PUFAs C20:4 n6 and C22:5 n6. The light emission (chemiluminescence) used as a marker of lipid peroxidation was similar in both organelles when the control and peroxidized groups were compared. N-acetyl-serotonin reduced lipid peroxidation in testicular microsomes or mitochondria for both C20:4 n6 and C22:5 n6. Both long chain PUFAs were protected when N-acetyl-serotonin was incorporated either into microsomes or mitochondria. The N-acetyl-serotonin concentration required to inhibit by approximately 70% lipid peroxidation process was 10 mM in microsomes and between 0.50 and 1 mM in mitochondria. IC 50 values calculated from the inhibition curve of N-acetyl-serotonin on the chemiluminescence rates were higher in microsomes (4.50 mM) than in mitochondria (0.25 mM). In these experimental conditions, N-acetyl-serotonin was about 18 times more potent in testicular mitochondria in inhibiting the oxidative processes than it was in testicular microsomes. These results suggest that the protective role of N-acetyl-serotonin in preserving the long PUFAs may be related to its ability to reduce lipid peroxidation.
机译:据报道,N-乙酰5-羟色胺是褪黑激素在松果体色氨酸代谢途径中的直接前体,是一种抗氧化剂。这项研究的目的是测试N-乙酰5-羟色胺对抗坏血酸-Fe(++)诱导的睾丸微粒体和线粒体中多不饱和脂肪酸(PUFAs)脂质过氧化的体外保护作用。我们测定了睾丸微粒体中N-乙酰基5-羟色胺浓度的增加(0-10 mM)和睾丸线粒体中N-乙酰基5-羟色胺浓度的增加(0-1 mM)。在没有脂质过氧化诱导药物的情况下,将微粒体和线粒体膜与N-乙酰基5-羟色胺温育进行对照实验。特别注意高度PUFA C20:4 n6和C22:5 n6产生的变化。当比较对照组和过氧化组时,用作脂质过氧化标记的发光(化学发光)在两个细胞器中相似。对于C20:4 n6和C22:5 n6,N-乙酰基5-羟色胺均能降低睾丸微粒体或线粒体的脂质过氧化。当将N-乙酰基5-羟色胺掺入微粒体或线粒体中时,两个长链PUFA均受到保护。抑制约70%脂质过氧化过程所需的N-乙酰基5-羟色胺浓度在微粒体中为10 mM,在线粒体中为0.50至1 mM。根据N-乙酰基5-羟色胺对化学发光速率的抑制曲线计算的IC 50值在微粒体(4.50 mM)中比线粒体(0.25 mM)高。在这些实验条件下,N-乙酰5-羟色胺在睾丸线粒体中抑制氧化过程的效力是在睾丸微粒体中的约18倍。这些结果表明,N-乙酰基5-羟色胺在保存长PUFA中的保护作用可能与其减少脂质过氧化的能力有关。

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