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首页> 外文期刊>Biochemistry (Moscow). Supplement, Series B. Biomedical chemistry >Lipoylcarnosine: Synthesis, Study of Physico-Chemical and Antioxidant Properties, Biological Activity
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Lipoylcarnosine: Synthesis, Study of Physico-Chemical and Antioxidant Properties, Biological Activity

机译:Lipoylcarnosine:合成,物理化学和抗氧化性能研究,生物活性

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Abstract— Synthesis of lipoylcarnosine (LipС), a conjugated molecule based on two natural antioxidants, carnosine and α-lipoic acid, is described and its physico-chemical, antioxidant properties and biological activity are characterized. According to reversed-phase HPLC with a UV detector, purity of the final product was 89.3%. The individuality of the obtained sodium salt of LipС was confirmed by tandem HPLC-mass spectrometry. LipC demonstrated high resistance to hydrolysis with serum carnosinase. The antioxidant activity of LipC evaluated by the reaction with the formation of thiobarbituric acid reacting substances and kinetic parameters of iron-induced chemiluminescence was higher than that of carnosine and lipoic acid. LipC did not affect viability of SH-SY5Y human neuroblastoma cells, differentiated to the dopaminergic phenotype, at concentrations not exceeding 5 mM. In the concentration range of 0.1–0.25 mM LipC protected neuronal cells against 1-methyl-4-phenylpyridinium (MPP_(+))-induced toxicity.
机译:描述了脂肪酰辣椒碱(LIPÑ),基于两种天然抗氧化剂,肉藻胺和α-硫辛酸的共轭分子及其物理化学,抗氧化性能和生物活性。根据具有UV检测器的反相HPLC,最终产品的纯度为89.3%。通过串联HPLC质谱法证实所得脂钠盐的个性。 LIPC展示了高含有血清羧烯酶的水解的高抗性。通过与硫氨基甲酸反应物质的反应评价LiPC的抗氧化活性和铁诱导的化学发光的动力学参数高于肉毒肽和硫辛酸的动力学。 LIPC不影响SH-SY5Y人神经母细胞瘤细胞的活力,以与多巴胺能表型分化为不超过5mm的浓度。在0.1-0.25mm的浓度范围内,LIPC保护的神经元细胞对1-甲基-4-苯基吡啶(MPP _(+))诱导的毒性。

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