Department of Electrical and Computer Engineering, Isfahan University of Technology, Isfahan, 84156-83111, Iran.
Department of Computer Engineering, University of Shahreza, Shahreza, 86149-56841, Iran.
Sci Rep. 2020 Jun 1;10(1):8846. doi: 10.1038/s41598-020-65658-x.
Rare or orphan diseases affect only small populations, thereby limiting the economic incentive for the drug development process, often resulting in a lack of progress towards treatment. Drug repositioning is a promising approach in these cases, due to its low cost. In this approach, one attempts to identify new purposes for existing drugs that have already been developed and approved for use. By applying the process of drug repositioning to identify novel treatments for rare diseases, we can overcome the lack of economic incentives and make concrete progress towards new therapies. Adrenocortical Carcinoma (ACC) is a rare disease with no practical and definitive therapeutic approach. We apply Heter-LP, a new method of drug repositioning, to suggest novel therapeutic avenues for ACC. Our analysis identifies innovative putative drug-disease, drug-target, and disease-target relationships for ACC, which include Cosyntropin (drug) and DHCR7, IGF1R, MC1R, MAP3K3, TOP2A (protein targets). When results are analyzed using all available information, a number of novel predicted associations related to ACC appear to be valid according to current knowledge. We expect the predicted relations will be useful for drug repositioning in ACC since the resulting ranked lists of drugs and protein targets can be used to expedite the necessary clinical processes.
罕见病或孤儿病仅影响小部分人群,因此限制了药物开发过程的经济激励,这往往导致在治疗方面进展缓慢。药物重定位是一种很有前途的方法,因为它的成本低。在这种方法中,人们试图为已经开发并批准使用的现有药物确定新的用途。通过应用药物重定位的过程来确定治疗罕见病的新疗法,我们可以克服经济激励不足的问题,并在新疗法方面取得具体进展。肾上腺皮质癌 (ACC) 是一种罕见疾病,目前尚无实用和明确的治疗方法。我们应用 Heter-LP,一种新的药物重定位方法,为 ACC 提出新的治疗途径。我们的分析确定了 ACC 的创新潜在药物-疾病、药物-靶标和疾病-靶标关系,包括促肾上腺皮质激素 (药物) 和 DHCR7、IGF1R、MC1R、MAP3K3、TOP2A (蛋白靶标)。当使用所有可用信息分析结果时,根据现有知识,似乎有一些与 ACC 相关的新预测关联是有效的。我们预计这些预测关系将对 ACC 的药物重定位有用,因为由此产生的药物和蛋白靶标排名列表可用于加速必要的临床过程。