A Novel Strategy for the Discovery of Drug Targets: Integrating Clinical Evidence with Molecular Studies.

IF 1.7 4区 医学 Q3 PHARMACOLOGY & PHARMACY
Shuji Kaneko
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Abstract

The mechanisms of several drugs remain unclear, limiting our understanding of how they exert their effects. Receptor affinities have not been comprehensively measured during drug development, and the safety investigations in humans are limited. Therefore, numerous unknown adverse and beneficial effects of drugs in humans persist. In this review, I highlight our achievements in identifying the unexpected beneficial effects of drugs through the analysis of real-world clinical data, which can contribute to drug repositioning and target finding. (1) Through the analysis of real-world data, we found that the anti-arrhythmic amiodarone induced interstitial lung disease, leading to fibrosis. Surprisingly, concurrent use of an anti-thrombin drug, dabigatran mitigated these adverse events. Pharmacological studies using animal models have mimicked this phenomenon and revealed the molecular mechanisms associated with the platelet-derived growth factor-alpha receptors. (2) The antidiabetic dipeptidyl-peptidase 4 inhibitors increased the risk of an autoimmune disease, bullous pemphigoid, which was reduced by the concomitant use of lisinopril. Pharmacological studies using human peripheral blood mononuclear cells have revealed that lisinopril suppressed the skin disorders by inhibiting the expression of cutaneous matrix metalloproteinase 9 in macrophages. (3) The antimicrobial fluoroquinolones increased the risk of tendinopathy, which was reduced by the concomitant use of dexamethasone. However, clinical guidelines have suggested that corticosteroid increases the risk of tendinopathy. Our investigation demonstrated that fluoroquinolones impaired tendon cells through DNA damage by generating reactive oxygen species. In contrast, dexamethasone exhibited an acute beneficial effect on tendon tissue by upregulating the expression of a radical scavenger, glutathione peroxidase 3.

发现药物靶点的新策略:将临床证据与分子研究相结合。
有几种药物的作用机制尚不清楚,限制了我们对其如何产生作用的了解。在药物开发过程中,尚未对受体亲和力进行全面测量,对人体的安全性调查也很有限。因此,许多未知的药物对人体的不良和有益影响依然存在。在这篇综述中,笔者将重点介绍我们在通过分析真实世界的临床数据来发现药物的意外有益效应方面所取得的成就,这些成就有助于药物的重新定位和靶点的寻找。(1)通过对真实世界数据的分析,我们发现抗心律失常药物胺碘酮会诱发间质性肺病,导致肺纤维化。令人惊讶的是,同时使用抗凝血酶药物达比加群能减轻这些不良反应。利用动物模型进行的药理学研究模拟了这一现象,并揭示了与血小板衍生生长因子-α受体相关的分子机制。(2)抗糖尿病二肽基肽酶 4 抑制剂增加了自身免疫性疾病--大疱性类天疱疮的风险,而同时使用利辛普利可降低这种风险。利用人体外周血单核细胞进行的药理学研究表明,利辛普利通过抑制巨噬细胞中皮肤基质金属蛋白酶 9 的表达来抑制皮肤疾病。(3)抗菌药氟喹诺酮类药物会增加腱鞘炎的风险,而同时使用地塞米松可降低这种风险。然而,临床指南认为皮质类固醇会增加腱鞘炎的风险。我们的研究表明,氟喹诺酮类药物会产生活性氧,通过 DNA 损伤损害肌腱细胞。与此相反,地塞米松通过上调自由基清除剂谷胱甘肽过氧化物酶 3 的表达,对肌腱组织产生急性有益影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.50
自引率
5.00%
发文量
247
审稿时长
2 months
期刊介绍: Biological and Pharmaceutical Bulletin (Biol. Pharm. Bull.) began publication in 1978 as the Journal of Pharmacobio-Dynamics. It covers various biological topics in the pharmaceutical and health sciences. A fourth Society journal, the Journal of Health Science, was merged with Biol. Pharm. Bull. in 2012. The main aim of the Society’s journals is to advance the pharmaceutical sciences with research reports, information exchange, and high-quality discussion. The average review time for articles submitted to the journals is around one month for first decision. The complete texts of all of the Society’s journals can be freely accessed through J-STAGE. The Society’s editorial committee hopes that the content of its journals will be useful to your research, and also invites you to submit your own work to the journals.
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