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杨梅素:一种有潜力的植物源性抗癌生物活性化合物——最新综述。

Myricetin: a potential plant-derived anticancer bioactive compound-an updated overview.

机构信息

Department of Botany, Government Girls College Khargone, 451001, Khargone, Madhya Pradesh, India.

Fungal Biotechnology and Invertebrate Pathology Laboratory, Department of Biological Sciences, Rani Durgavati University, Jabalpur, 482001, Madhya Pradesh, India.

出版信息

Naunyn Schmiedebergs Arch Pharmacol. 2023 Oct;396(10):2179-2196. doi: 10.1007/s00210-023-02479-5. Epub 2023 Apr 21.

Abstract

The globe is currently confronting a global fight against the deadliest cancer sickness. Chemotherapy, hormonal therapy, surgery, and radiation therapy are among cancer treatment options. Still, these treatments can induce patient side effects, including recurrence, multidrug resistance, fever, and weakness. As a result, the scientific community is always working on natural phytochemical substances. Numerous phytochemical compounds, including taxol analogues, vinca alkaloids such as vincristine and vinblastine, and podophyllotoxin analogues, are currently undergoing testing and have shown promising results against a number of the deadliest diseases, as well as considerable advantages due to their safety and low cost. According to research, secondary plant metabolites such as myricetin, a flavonoid in berries, herbs, and walnuts, have emerged as valuable bio-agents for cancer prevention. Myricetin and its derivatives have antiinflammatory, anticancer, apoptosis-inducing, and anticarcinogenic properties and can prevent cancer cell proliferation. Multiple studies have found that myricetin has anticancer characteristics in various malignancies, including colon, breast, prostate, bladder, and pancreatic cancers. Current knowledge of the anticancer effects of myricetin reveals its promise as a potentially bioactive chemical produced from plants for the prevention and treatment of cancer. This review aimed to study the numerous bioactivities, mode of action, and modification of several cellular processes that myricetin possesses to impede the spread of cancer cells. This review also addresses the challenges and future prospects of using myricetin as a anticancer drug.

摘要

目前,全球正在共同对抗这种最致命的癌症疾病。癌症治疗方法包括化疗、激素疗法、手术和放射疗法。然而,这些治疗方法会引起患者的副作用,包括复发、多药耐药、发热和虚弱。因此,科学界一直在研究天然植物化学物质。许多植物化学化合物,包括紫杉醇类似物、长春花生物碱如长春新碱和长春碱,以及鬼臼毒素类似物,目前正在进行测试,并已显示出对许多最致命疾病的有希望的结果,并且由于其安全性和低成本而具有相当大的优势。根据研究,浆果、草药和核桃中的类黄酮杨梅素等次生植物代谢物已成为癌症预防的有价值的生物制剂。杨梅素及其衍生物具有抗炎、抗癌、诱导细胞凋亡和抗癌作用,可以预防癌细胞增殖。多项研究发现,杨梅素在多种恶性肿瘤中具有抗癌特性,包括结肠癌、乳腺癌、前列腺癌、膀胱癌和胰腺癌。目前对杨梅素抗癌作用的认识表明,它有望成为一种潜在的生物活性化学物质,可从植物中提取用于预防和治疗癌症。本综述旨在研究杨梅素具有的多种生物活性、作用机制以及对几种细胞过程的修饰,以阻止癌细胞的扩散。本综述还讨论了将杨梅素用作抗癌药物的挑战和未来前景。

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