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天然调节剂 ACE-2:具有抗 SARS-CoV-2 感染潜力的化合物综述。

Natural Agents Modulating ACE-2: A Review of Compounds with Potential against SARS-CoV-2 Infections.

机构信息

Laboratory of Electrophysiology and Cardiovascular Pharmacology, Faculty of Health Sciences, Federal University of Grande Dourados, Dourados, MS, Brazil.

Laboratory of Reproductive Toxicology, Department of Pharmacology, Federal University of Paraná, Curitiba, PR, Brazil.

出版信息

Curr Pharm Des. 2021;27(13):1588-1596. doi: 10.2174/1381612827666210114150607.

Abstract

One of the biggest challenges of public health worldwide is reducing the number of events and deaths related to severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infections. The angiotensinconverting enzyme 2 (ACE-2), a carboxypeptidase that degrades angiotensin II into angiotensin 1-7, has been identified as a potent receptor for SARS-CoV-2. In the last decades, ACE inhibition has assumed a central role in reducing cardiovascular and renal events. However, with the advent of COVID-19, attention has been turned to ACE-2 as a possible target to reduce virus binding to different human cells. This review aims to discuss recent developments related to the medicinal properties of natural compounds as ACE/ACE-2 inhibitors, which should be highlighted in the future development of studies looking for modulators in SARS-CoV-2 infection. Data show that bioactive compounds isolated from several natural products act by inhibiting ACE/ACE-2, which changes the entire axis of this system. Of the compounds addressed in this review, 7 phenolic compounds, including quercetin, curcumin, naringenin, luteolin, hesperidin, mangiferin, and gallic acid showed binding affinity with molecular ACE-2 target in silico, and 1, esculetin, decreased ACE-2 expression in vivo. Regarding terpenoids and alkaloids, nimbin, withaferin A, andrographolide, zingiberene and, berberine, piperine and thebaine, respectively, showed a binding affinity with molecular ACE-2 target in silico. These findings reinforce the need for future preclinical and clinical studies on these compounds and specific inhibitory effects on ACE-2 of all the other compounds described herein only as nonspecific ACE inhibitors. It is important to mention that some natural compounds such as magnolol, resveratrol, rosmarinic acid, tanshinone IIA, and nicotine have also demonstrated the potential to increase the activity or expression of ACE-2, and could therefore aggravate SARS-CoV-2 infection.

摘要

全世界公共卫生面临的最大挑战之一是降低与严重急性呼吸系统综合征冠状病毒 2(SARS-CoV-2)感染相关的事件和死亡人数。血管紧张素转换酶 2(ACE-2)是一种羧肽酶,可将血管紧张素 II 降解为血管紧张素 1-7,已被确定为 SARS-CoV-2 的有效受体。在过去的几十年中,ACE 抑制已在降低心血管和肾脏事件方面发挥了核心作用。然而,随着 COVID-19 的出现,人们开始关注 ACE-2 作为降低病毒与不同人体细胞结合的可能靶点。本综述旨在讨论与天然化合物作为 ACE/ACE-2 抑制剂的药用特性相关的最新进展,这些进展应在未来寻找 SARS-CoV-2 感染调节剂的研究中得到强调。数据表明,从几种天然产物中分离出的生物活性化合物通过抑制 ACE/ACE-2 起作用,从而改变整个系统轴。在本综述中讨论的化合物中,7 种酚类化合物,包括槲皮素、姜黄素、柚皮素、木犀草素、橙皮苷、芒果苷和没食子酸,在计算机模拟中显示与分子 ACE-2 靶标具有结合亲和力,而 1 种 esculetin,在体内降低 ACE-2 的表达。关于萜类化合物和生物碱,nimbin、withaferin A、andrographolide、zingiberene 和 berberine、piperine 和 thebaine 分别在计算机模拟中显示与分子 ACE-2 靶标具有结合亲和力。这些发现加强了对这些化合物进行未来临床前和临床研究的必要性,以及对本文所述所有其他化合物仅作为非特异性 ACE 抑制剂的 ACE-2 的特定抑制作用的必要性。需要提到的是,一些天然化合物,如厚朴酚、白藜芦醇、迷迭香酸、丹参酮 IIA 和尼古丁,也表现出增加 ACE-2 活性或表达的潜力,因此可能会加重 SARS-CoV-2 感染。

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