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阿根廷槲寄生——楔叶梨果寄生(鲁伊斯和帕冯)蒂格(桑寄生科)和扁枝槲寄生(吉利斯氏原胡克和阿诺)艾希勒(檀香科)。三十年的研究

The Argentine Mistletoes Ligaria cuneifolia (Ruiz & Pav.) Tiegh (Loranthaceae) and Phoradendron liga (Gillies ex Hook. & Arn.) Eichler (Santalaceae). Thirty Years of Research.

作者信息

Dobrecky Cecilia B, Lucangioli Silvia E, Wagner Marcelo L

机构信息

Universidad de Buenos Aires, Facultad de Farmacia y Bioquímica, Departamento de Farmacología, Cátedra de Farmacobotánica, Buenos Aires, Argentina.

Universidad de Buenos Aires, Facultad de Farmacia y Bioquímica, Departamento de Tecnología Farmacéutica, Cátedra de Tecnología Farmacéutica I, Buenos Aires, Argentina.

出版信息

Chem Biodivers. 2022 Oct;19(10):e202200565. doi: 10.1002/cbdv.202200565. Epub 2022 Sep 23.

Abstract

Ligaria cuneifolia (Ruiz & Pav.) Tiegh (Loranthaceae) and Phoradendron liga (Gillies ex Hook. & Arn.) Eichler (Santalaceae) are regarded as Argentine mistletoes based on their similarities with the European counterpart, Viscum album L. (Santalaceae). These two species are the most used medicinal plants to treat high blood pressure in the Argentinian population. To provide scientific grounds to their traditional use and therapeutic potential, they were selected as herbal drug candidates. The main findings would support the anti-hypertensive action, the anticholesterolemic and antioxidant features of L. cuneifolia, and immunomodulatory properties for both species. Quercetin-O-glycosides, galloyl glycosides, and proanthocyanidins are present in L. cuneifolia while P. liga shows C-glycosyl flavones and 3-deoxyproanthocyanidins. This review summarizes the phytochemical characterization, medicinal properties and reveals promising results warranting future efforts for further investigation.

摘要

基于与欧洲槲寄生(桑寄生科的白果槲寄生Viscum album L.)的相似性,楔叶梨果寄生(Ruiz & Pav.)Tiegh(桑寄生科)和阿根廷梨果寄生(Gillies ex Hook. & Arn.)Eichler(檀香科)被视为阿根廷的槲寄生。这两个物种是阿根廷人群中治疗高血压最常用的药用植物。为了为它们的传统用途和治疗潜力提供科学依据,它们被选为草药候选药物。主要研究结果将支持楔叶梨果寄生的抗高血压作用、抗胆固醇和抗氧化特性,以及这两个物种的免疫调节特性。楔叶梨果寄生中存在槲皮素-O-糖苷、没食子酰糖苷和原花青素,而阿根廷梨果寄生则含有C-糖基黄酮和3-脱氧原花青素。本综述总结了植物化学特征、药用特性,并揭示了有前景的结果,值得未来进一步深入研究。

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