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首页> 外文期刊>International Journal of Cosmetic Science >A survey and analysis of the role of molecular chaperone proteins and imidazole-containing dipeptide-based compounds as molecular escorts into the skin during stress, injury, water structuring and other types of cutaneous pathophysiology
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A survey and analysis of the role of molecular chaperone proteins and imidazole-containing dipeptide-based compounds as molecular escorts into the skin during stress, injury, water structuring and other types of cutaneous pathophysiology

机译:调查和分析分子伴侣蛋白和含咪唑的二肽基化合物在压力,损伤,水结构和其他类型的皮肤病理生理过程中作为分子护送进入皮肤的作用

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摘要

Molecular chaperone, heat shock proteins (HSPs), stabilizes intracellular processes of cells under stress. Little is known about the role of molecular chaperone proteins in the skin pathology, rejuvenation and wound healing, or whether their expression is altered by environmental and physiological stress to the skin or systemic disease. The focus of this study was to examine the role of molecular chaperone proteins in the skin's local response to wounding, skin ageing and a range of skin diseases. Free radicals, one form of insult, induce or contribute to adverse effects on the skin, including erythema, oedema, wrinkling, photoaging, inflammation, autoimmune reactions, hypersensitivity, keratinization abnormalities, preneoplastic lesions and skin cancer. A unified view of the molecular and cellular pathogenesis of the skin age-related pathology conditions has led to the search for molecular and chemical chaperones that can slow, arrest or revert disease progression. Specific alpha-crystallin domains and pharmacological imidazole-containing dipeptide chaperone molecules are now emerging that link our biophysical insights with developed skin therapeutic techniques. In this article, we discuss the molecular nature of the stress signals, the mechanisms that underlie activation of the heat shock response, the role of molecular chaperone proteins as skin protective molecules, and strategies for pharmacologically active chaperone molecules and their imidazole-containing dipeptide inducers as regulators of the skin stress response. We discuss how impairment in protein hydration may cause ultrastructural, mechanical and biochemical changes in structural proteins in the aged skin. We have pioneered the molecular chaperone protein activated therapeutic or cosmetic platform to enable simultaneous analysis of water-binding and structuring characteristics for biology of skin ageing and skin disease-related pathways. This cutting-edge technology has improved the way that proteins hydrate in photoaged skin. The mechanisms of skin diseases, ageing, cellular, and signalling pathways mediated by targeting with molecular chaperone protein(s) in patented formulations with imidazole containing dipeptide (N-acetylcarnosine, carcinine, carnosine) are also discussed within this review.
机译:分子伴侣,热休克蛋白(HSPs),可在压力下稳定细胞的细胞内过程。关于分子伴侣蛋白在皮肤病理,嫩化和伤口愈合中的作用,或者它们的表达是否由于环境和生理压力对皮肤或全身性疾病的影响而改变,人们所知甚少。这项研究的重点是研究分子伴侣蛋白在皮肤对伤口,皮肤衰老和一系列皮肤疾病的局部反应中的作用。自由基是一种侮辱形式,可引起皮肤不良反应或导致不良反应,包括红斑,水肿,皱纹,光老化,炎症,自身免疫反应,超敏反应,角化异常,肿瘤前病变和皮肤癌。皮肤年龄相关病理状况的分子和细胞发病机理的统一观点导致人们寻找可以减缓,阻止或逆转疾病进展的分子和化学伴侣。现在出现了特定的α-晶状体蛋白结构域和含咪唑的药理学分子伴侣分子,它们将我们的生物物理学见解与发达的皮肤治疗技术联系在一起。在本文中,我们讨论了应激信号的分子性质,热休克反应激活的基础机制,分子伴侣蛋白作为皮肤保护分子的作用以及药理活性伴侣分子及其含咪唑的二肽诱导剂的策略作为皮肤压力反应的调节剂。我们讨论蛋白质水合作用受损如何导致老年皮肤结构蛋白质的超微结构,机械和生化变化。我们开创了分子伴侣蛋白激活的治疗或美容平台,可同时分析水结合和结构特征,以用于皮肤衰老和皮肤疾病相关途径的生物学研究。这项尖端技术改善了蛋白质在光老化皮肤中水合的方式。在这篇综述中还讨论了在含咪唑的二肽(N-乙酰基肌氨酸,肌氨酸,肌氨酸)专利配方中,以分子伴侣蛋白为靶标介导的皮肤疾病,衰老,细胞和信号通路的机制。

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