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Genistein: An Integrative Overview of Its Mode of Action, Pharmacological Properties, and Health Benefits

机译:Genistein:其作用方式,药理性质和健康益处的一体化概述

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Genistein is an isoflavone first isolated from the brooming plant Dyer’s Genista tinctoria L. and is widely distributed in the Fabaceae family. As an isoflavone, mammalian genistein exerts estrogen-like functions. Several biological effects of genistein have been reported in preclinical studies, such as the antioxidant, anti-inflammatory, antibacterial, and antiviral activities, the effects of angiogenesis and estrogen, and the pharmacological activities on diabetes and lipid metabolism. The purpose of this review is to provide up-to-date evidence of preclinical pharmacological activities with mechanisms of action, bioavailability, and clinical evidence of genistein. The literature was researched using the most important keyword “genistein” from the PubMed, Science, and Google Scholar databases, and the taxonomy was validated using The Plant List. Data were also collected from specialized books and other online resources. The main positive effects of genistein refer to the protection against cardiovascular diseases and to the decrease of the incidence of some types of cancer, especially breast cancer. Although the mechanism of protection against cancer involves several aspects of genistein metabolism, the researchers attribute this effect to the similarity between the structure of soy genistein and that of estrogen. This structural similarity allows genistein to displace estrogen from cellular receptors, thus blocking their hormonal activity. The pharmacological activities resulting from the experimental studies of this review support the traditional uses of genistein, but in the future, further investigations are needed on the efficacy, safety, and use of nanotechnologies to increase bioavailability and therapeutic efficacy.
机译:Genistein是一种从扫帚植物染料的Genista Toticoria L中分离的异黄酮,并且广泛分布在Fabaceae家族中。作为异黄酮,哺乳动物Genistein施加雌激素状功能。在临床前研究中据报道了Genistein的几种生物学效应,例如抗氧化剂,抗炎,抗菌和抗病毒活性,血管生成和雌激素的影响,以及糖尿病和脂质代谢的药理学活动。本综述的目的是提供临床前药理学活动的最新证据,其作用机制,生物利用度和Genistein的临床证据。从PubMed,Science,Google Scholar数据库中使用最重要的关键字“Genistein”研究了文献,并使用工厂列表验证了分类。数据也从专业书籍和其他在线资源中收集。 Genistein的主要积极作用是指防血管疾病的保护和某些类型癌症发病率降低,尤其是乳腺癌。虽然对癌症的保护机制涉及Genistein代谢的若干方面,但研究人员将这种效果归因于大豆核酸脂结构与雌激素的结构之间的相似性。这种结构相似性允许Genistein将雌激素与细胞受体移位,从而阻止其激素活性。本综述造成的实验研究产生的药理学活动支持尼霉素的传统用途,但在未来,需要进一步调查纳米技术的疗效,安全性和使用,以提高生物利用度和治疗效果。

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