首页> 外文期刊>Recent patents on drug delivery & formulation >Structural and functional properties, chaperone activity and posttranslational modifications of alpha-crystallin and its related subunits in the crystalline lens: N-acetylcarnosine, carnosine and carcinine act as alpha-crystallin/small heat shock protein enhancers in prevention and dissolution of cataract in ocular drug delivery formulations of novel therapeutic agents
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Structural and functional properties, chaperone activity and posttranslational modifications of alpha-crystallin and its related subunits in the crystalline lens: N-acetylcarnosine, carnosine and carcinine act as alpha-crystallin/small heat shock protein enhancers in prevention and dissolution of cataract in ocular drug delivery formulations of novel therapeutic agents

机译:α-晶状蛋白及其相关亚基在晶状体中的结构和功能特性,分子伴侣活性和翻译后修饰:N-乙酰肌肽,肌氨酸和肌氨酸可作为α-晶状蛋白/小热激蛋白增强剂预防和溶解眼用药物中的白内障新型治疗剂的给药配方

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摘要

Cataract is a leading cause of blindness worldwide and is responsible for ~40-80% of the estimated 45 million cases of blindness that occur across the globe. In addition to providing refractive properties to the lens for focusing the image, it is believed that the molecular chaperone function of α-crystallin is essential in preventing the light scattering due to aggregation of other proteins and thus in the maintenance of lens transparency and thereby prevention of cataract. By now, it is fairly acknowledged that chaperoning ability of α-crystallin is instrumental in the maintenance of crystalline lens transparency, and decreased chaperone-like activity of α-crystallin is associated with various types and stages of cataract. A better pharmacological targeting of safeguarding the α-crystallin chaperone activity may aid the development of therapeutic strategies that could evade the need for cataract surgery and revive lens transparency of the cataractous lenses. This article originally summarizes the significance of modulation and enhancing of α-crystallin chaperone activity with imidazole-containing dipeptides N-acetylcarnosine, carnosine and carcinine in consequence to prevent, delay or dissolve the human cataract. A growing evidence and discussion of recent patents are presented in this study that demonstrate the ability of N-acetylcarnosine (lubricant eye drops) or carcinine (lubricant eye drops) (universal antioxidant and deglycation agent) resistant to enzymatic hydrolysis with carnosinase to act as pharmacological chaperones, to decrease oxidative stress and ameliorate oxidative and excessive glycation stress-related eye disease phenotypes, suggesting that the field of chaperone therapy might hold novel treatments for age-related cataracts, age-related macular degeneration (AMD) and ocular complications of diabetes (OCD). The therapeutic strategies are highlighted in the study for identifying potential chaperone compounds and for experimentally demonstrating chaperone activity in in vitro and in vivo models of human age-related eye disease, such as cataracts and advanced glycation tissue proteins - engineered systems.
机译:白内障是全球失明的主要原因,在全球估计发生的4,500万失明病例中,约有40-80%是白内障。人们相信,除了为透镜提供聚焦图像的折射特性外,α-晶体蛋白的分子伴侣功能对于防止由于其他蛋白质的聚集而引起的光散射并因此在保持透镜的透明性并从而防止晶状体形成方面是必不可少的。白内障。到现在为止,已经众所周知,α-晶状蛋白的伴侣能力在维持晶状体透明性中起作用,并且α-晶状蛋白的伴侣状活性降低与白内障的各种类型和阶段有关。更好的保护α-晶状蛋白伴侣分子活性的药理学目标可能有助于制定治疗策略,从而避免白内障手术的需要并恢复白内障晶状体的透明度。本文最初总结了含咪唑的二肽N-乙酰肌肽,肌肽和可卡因调节和增强α-晶状蛋白伴侣活性对于预防,延迟或溶解人白内障的重要性。这项研究提出了越来越多的证据和对最近专利的讨论,这些证据证明了N-乙酰肌肽(润滑性眼药水)或肉碱(润滑性眼药水)(通用抗氧化剂和脱糖剂)具有抵抗肌醇酶水解的能力,具有药理作用。伴侣,以减少氧化应激并改善与氧化和过度糖基化应激相关的眼病表型,这表明伴侣治疗领域可能会为年龄相关性白内障,年龄相关性黄斑变性(AMD)和糖尿病眼部并发症提供新的治疗方法( OCD)。该研究突出了治疗策略,以鉴定潜在的伴侣化合物,并通过实验证明在与人类年龄相关的眼部疾病(例如白内障和高级糖基化组织蛋白)的体外和体内模型中的伴侣活性。

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