Foresee Novel Targets for Alzheimer’s Disease by Investigating Repurposed Drugs

药物重新定位 药物数据库 医学 重新调整用途 齐留顿 药品 药理学 系统药理学 疾病 多奈哌齐 艾瑞布林 罗格列酮 多药 吡格列酮 二甲双胍 药物发现 生物信息学 痴呆 2型糖尿病 糖尿病 生物 癌症 内科学 受体 胰岛素 内分泌学 生态学 花生四烯酸5-脂氧合酶 花生四烯酸 转移性乳腺癌 生物化学 乳腺癌
作者
Kritie Agarwal,Deepshikha Pande Katare,Ruchi Jakhmola Mani
出处
期刊:Cns & Neurological Disorders-drug Targets [Bentham Science Publishers]
卷期号:22 (8): 1209-1231 被引量:2
标识
DOI:10.2174/1871527321666220622162622
摘要

Alzheimer's Disease (AD) is the most rampant neurodegenerative disorder which has caused havoc worldwide. More than a century has passed since the first case of AD was reported, but still no stable treatment is known to mankind. The available medications only provide temporary relief and are not a cure for the disease. The hunt for advanced techniques in drug development has paved the way for drug repurposing, i.e., repositioning or reutilizing drugs as an innovative approach.Several drugs which were repurposed for AD were collected by following PRISMA 2020 systemic review. Databases like PubMed, ScienceDirect, JSTOR, and SciELO were used for data extraction. Further, Drugbank database was used to download all the identified drugs. Later, the Swiss Target Prediction tool was used to identify protein receptors for these drugs and the biological pathway followed by them.Drugs like Zileuton, Salbutamol, Baricitinib, Carmustine, Paclitaxel, and Nilotinib were observed to be involved in regulation of neurotransmitters. Similarly, Metformin, Liraglutide, UDCA, and Bexarotene are involved in protein kinase cascades which also is one of the prime processes in metabolic disorders like AD. Furthermore, drugs like Rosiglitazone, Pioglitazone, and Lonafarnib are involved in interleukin-3 biosynthetic processes, which is again one of the most important processes studied in AD treatment.The study concluded that the reviewed drugs that follow similar biological and molecular processes can be repurposed for AD if chosen judiciously with current medications and thus drug repurposing is a promising approach that can be utilized to find a cure for AD within a brief time and fewer resources compared to de novo drug synthesis. Although certain loopholes still need to be worked upon, the technique has great prospects. Furthermore, in silico methods can be utilized to justify the findings and identify the best drug candidate.
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