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天然含咪唑肽模拟物N-乙酰肌肽、肌肽和L-肌肽在眼科和护肤品中的生物活性。

Biological activities of the natural imidazole-containing peptidomimetics n-acetylcarnosine, carcinine and L-carnosine in ophthalmic and skin care products.

作者信息

Babizhayev Mark A

机构信息

Innovative Vision Products, Inc., 3511 Silverside Road, Suite 105, County of New Castle, Delaware 19810, USA.

出版信息

Life Sci. 2006 Apr 11;78(20):2343-57. doi: 10.1016/j.lfs.2005.09.054. Epub 2006 Jan 4.

Abstract

Apart from genetically programmed cell aging, different external aggressors related to oxidative stress and lipid peroxidation (LPO) can accelerate the skin aging phenomenon. Oxidative stress associated with the formation of lipid peroxides is suggested to contribute to pathological processes in aging and systemic diseases known as the risk factors for cataract. Despite the fact that L-carnosine-related peptidomimetics N-acetylcarnosine (N-acetyl-beta-alanyl-L-histidine) (NAC) and carcinine (beta-alanylhistamine) are metabolically related to L-carnosine and have been demonstrated to occur in tissues of many vertebrates, including humans, these compounds were shown resistant toward enzymatic hydrolysis. A series of related biocompatible imidazole-containing peptidomimetics were synthesized in order to confer resistance to enzymatic hydrolysis and ex vivo improvement of protective antioxidative properties related to L-carnosine. The included findings revealed a greater role of N-acetylcarnosine (NAC) and carcinine ex vivo in the prolongation and potentiation of physiological responses to the therapeutical and cosmetics treatments with L-carnosine as antioxidant. 3-D molecular conformation studies proposed the antioxidant activity of peptidomimetics (carcinine, L-prolylhistamine, N-acetylcarnosine, L-carnosine) for metal ion binding, quenching of a number free radicals, and binding of hydroperoxide or aldehyde (including dialdehyde LPO products) in an imidazole-peroxide adducts. NAC can act as a time release (carrier) stable version of L-carnosine during application in ophthalmic pharmaceutical and cosmetics formulations which include lubricants. Carcinine, L-prolylhistamine show efficient deactivation of lipid hydroperoxides monitored by HPLC and protection of membrane phospholipids and water soluble proteins from the lipid peroxides-induced damages. This activity is superior over the lipophilic antioxidant vitamin E. The biologically significant applications of carnosine mimetics were patented by Dr. Babizhayev and the alliance Groups (WO 2004/028536 A1; WO 94/19325; WO 95/12581; WO 2004/064866 A1).

摘要

除了基因编程的细胞衰老外,与氧化应激和脂质过氧化(LPO)相关的不同外部侵害因素会加速皮肤衰老现象。与脂质过氧化物形成相关的氧化应激被认为会导致衰老和全身性疾病中的病理过程,这些疾病被称为白内障的危险因素。尽管与L-肌肽相关的拟肽N-乙酰肌肽(N-乙酰-β-丙氨酰-L-组氨酸)(NAC)和肌肽(β-丙氨酰组胺)在代谢上与L-肌肽相关,并且已被证明存在于包括人类在内的许多脊椎动物的组织中,但这些化合物对酶促水解具有抗性。合成了一系列相关的生物相容性含咪唑拟肽,以赋予对酶促水解的抗性,并在体外改善与L-肌肽相关的保护性抗氧化性能。纳入的研究结果揭示了N-乙酰肌肽(NAC)和肌肽在体外对以L-肌肽作为抗氧化剂的治疗和化妆品治疗的生理反应的延长和增强作用更大。三维分子构象研究提出了拟肽(肌肽、L-脯氨酰组胺、N-乙酰肌肽、L-肌肽)对金属离子结合、淬灭多种自由基以及在咪唑-过氧化物加合物中结合氢过氧化物或醛(包括二醛LPO产物)的抗氧化活性。在包含润滑剂的眼科药物和化妆品配方应用过程中,NAC可以作为L-肌肽的缓释(载体)稳定形式。通过高效液相色谱监测发现,肌肽、L-脯氨酰组胺能有效使脂质氢过氧化物失活,并保护膜磷脂和水溶性蛋白质免受脂质过氧化物诱导的损伤。这种活性优于亲脂性抗氧化剂维生素E。肌肽模拟物的生物学重要应用已由巴比扎耶夫博士和联盟集团申请专利(WO 2004/028536 A1;WO 94/19325;WO 95/12581;WO 2004/064866 A1)。

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