Wan Saidin Wan Azmira, Jantan Ibrahim, Abdul Wahab Siti Mariam, Jalil Juriyati, Mohd Said Mazlina, Yusoff Syaratul Dalina, Husain Khairana
Centre for Drug and Herbal Development, Faculty of Pharmacy, Universiti Kebangsaan Malaysia, Kuala Lumpur, Malaysia.
Institute of Systems Biology, Universiti Kebangsaan Malaysia, Selangor, Malaysia.
Front Pharmacol. 2023 Jan 9;13:1070557. doi: 10.3389/fphar.2022.1070557. eCollection 2022.
Hypophyllanthin is a major lignan present in various species and has been used as one of the bioactive chemical markers for quality control purposes as it contributes to their diverse pharmacological activities. The objective of this study is to compile up-to-date data on the pharmacological actions and mechanisms of hypophyllanthin. This review also includes the extracts of species whose pharmacological actions have been partially attributed to hypophyllanthin. The scientific findings on the compound are critically analyzed and its potential as a lead molecule for the discovery of drug candidates for the development of therapeutics to treat diverse diseases is highlighted. Data collection was mainly through the exploration of Ovid-MEDLINE, Scopus, Science Direct, and Elsevier databases. Studies conducted and showed that hypophyllanthin had potent immunomodulating properties as well as a variety of other pharmacological properties, including anti-inflammatory, hepatoprotective, anti-tumor, anti-allergic, anti-hypertensive, and phytoestrogenic properties. Several mechanisms of action on the effects of hypophyllanthin on the immune system, in cancer and other disease states, were presented to provide some insights into its pharmacological effects. Before being submitted to clinical investigations, additional animal studies utilising different animal models are necessary to analyse its bioavailability, pharmacokinetics, and pharmacodynamic properties, as well as its toxicity, to determine its efficacy and safety. Understanding its potential as a lead molecule for the discovery of therapeutic candidates, particularly for the development of therapies for inflammatory and immune-related disorders, requires an understanding of its pharmacological activities and mechanisms of action. An insight into its pharmacological activities and mechanisms of action will provide an understanding of its potential as a lead compound for the discovery of drug candidates, especially for the development of therapies for inflammatory and immune related diseases.
次叶下珠素是存在于多种植物中的一种主要木脂素,因其具有多种药理活性,已被用作质量控制的生物活性化学标志物之一。本研究的目的是汇编有关次叶下珠素药理作用和机制的最新数据。本综述还包括其药理作用部分归因于次叶下珠素的植物提取物。对该化合物的科学发现进行了批判性分析,并强调了其作为先导分子的潜力,以发现用于开发治疗多种疾病的候选药物。数据收集主要通过探索Ovid-MEDLINE、Scopus、Science Direct和Elsevier数据库进行。已开展的研究表明,次叶下珠素具有强大的免疫调节特性以及多种其他药理特性,包括抗炎、保肝、抗肿瘤、抗过敏、抗高血压和植物雌激素特性。介绍了次叶下珠素对免疫系统、癌症和其他疾病状态影响的几种作用机制,以深入了解其药理作用。在进行临床研究之前,需要利用不同动物模型进行更多动物研究,以分析其生物利用度、药代动力学和药效学特性以及毒性,以确定其疗效和安全性。了解其作为发现治疗候选药物的先导分子的潜力,特别是用于开发炎症和免疫相关疾病的疗法,需要了解其药理活性和作用机制。深入了解其药理活性和作用机制将有助于理解其作为发现候选药物的先导化合物的潜力,特别是用于开发炎症和免疫相关疾病的疗法。