Department of Chemistry, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, India.
Langmuir. 2024 Aug 6;40(31):16093-16102. doi: 10.1021/acs.langmuir.4c00933. Epub 2024 Jul 24.
Cataract is one of the leading causes of blindness worldwide. Till date, the only solution for cataracts is surgery, which is a resource-intensive solution. A much simpler solution is to find a potential drug that could inhibit aggregation. It is well established that nonamyloid aggregates of eye lens protein result in cataract. γD-Crystallin, a thermodynamically stable protein, is one of the most abundant proteins in the core of the eye lens and is found to aggregate under stress conditions, leading to the cataract. It has also been found that in cataractous lens, the concentration of metals like copper is elevated significantly as compared to healthy eye lens, suggesting their role in inducing aggregation. In our present study, aggregation of γD-Crystallin was carried out in the presence of Cu (II). Using techniques like turbidity assay, CD spectroscopy, ANS binding assay, and microscopic studies like TEM, it could be confirmed that protein aggregates in the presence of Cu (II) and the nature of aggregates is amorphous. Various polyphenols were tested to suppress aggregation of the protein. Quercetin was observed to be the most efficient. To overcome the problems associated with the delivery of polyphenols, such as solubility and bioavailability, quercetin was encapsulated in two types of nanocarriers. Their characterization was done using TEM, DLS, and other techniques. The potency of quercetin-loaded CS-TPP/CS-PLGA NPs as inhibitors of γD-Crystallin aggregation was confirmed by various experiments.
白内障是全球致盲的主要原因之一。迄今为止,白内障的唯一解决方案是手术,这是一种资源密集型的解决方案。一个更简单的解决方案是找到一种潜在的药物来抑制聚集。众所周知,眼晶状体蛋白的非淀粉样聚集物导致白内障。γD-晶体蛋白是一种热力学稳定的蛋白质,是眼晶状体核心中最丰富的蛋白质之一,在应激条件下会聚集,导致白内障。还发现,在白内障晶状体中,金属如铜的浓度明显高于健康眼晶状体,表明它们在诱导聚集中的作用。在我们目前的研究中,在 Cu(II)存在下进行了γD-晶体蛋白的聚集。通过浊度测定、CD 光谱、ANS 结合测定和 TEM 等微观研究,可以证实蛋白质在 Cu(II)存在下的聚集物是无定形的。测试了各种多酚来抑制蛋白质的聚集。槲皮素被观察到是最有效的。为了克服多酚传递中存在的问题,如溶解度和生物利用度,将槲皮素包封在两种类型的纳米载体中。使用 TEM、DLS 和其他技术对其进行了表征。通过各种实验证实了载有槲皮素的 CS-TPP/CS-PLGA NPs 作为γD-晶体蛋白聚集抑制剂的效力。