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Withanolides from the genus Physalis Physalis : a review on their phytochemical and pharmacological aspects

机译:含有物质的甘露糖苷酸酯酸酯:对其植物化学和药理学方面的综述

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Abstract Objectives Withanolides are a group of modified C 28 ergostane‐type steroids with a C‐22, C‐26 δ‐lactone side chain or a C‐23, C‐26 γ‐lactone side chain. They enjoy a limited distribution in the plant kingdom and predominantly occur in several genera of Solanaceae. Of which, the genus Physalis is an important resource for this type of natural molecules. The present review aims to comprehensively illustrate the structural characteristics and classification of withanolides, and particularly focus on the progression on phytochemical and pharmacological aspects of withanolides from Physalis ranging from January 2015 to June 2019. Key findings Approximately 351 natural withanolides with novel and unique structures have so far been identified from genus Physalis , mainly isolated from the species of P.?angulata and P.?peruviana . Withanolides demonstrated diverse biological activity, such as anticancer, anti‐inflammatory, antimicrobial, immunoregulatory, trypanocidal and leishmanicidal activity. Their observed pharmacological functions supported the uses of Physalis species in traditional or folk medicines. Summary Due to their unique structure skeleton and potent bioactivities, withanolides are regarded to be promising drug candidates, particularly for developing anticancer and anti‐inflammatory agents. Further investigations for discovering novel withanolides of genus Physalis , exploiting their pharmacological values and evaluating their potency as therapeutic agents are significant work.
机译:摘要目的是一种用C-22,C-26δ-内酯侧链或C-23,C-26γ-内酯侧链组的一组改性的C 28骨烷型类固醇。它们在植物王国享有有限的分布,主要发生在索尔纳科的几个属。其中,基因酸酯是这种自然分子的重要资源。本综述旨在全面地说明随胰岛素的结构特征和分类,特别关注来自2015年1月至2019年6月的氨基丙胺的植物化学和药理方面的进展。关键发现大约351种天然甘露糖苷与新颖,独特的结构有关到目前为止已从Physalis属的属,主要是从p.?angulata和p.?peruviana的种类中分离出来的。甘蔗糖苷证明了不同的生物活性,例如抗癌,抗炎,抗微生物,免疫调节剂,锥体灭蚊和Leishmanicatal活性。他们所观察到的药理学功能支持在传统或民间药物中的液体物种的用途。总结由于它们独特的结构骨架和有效的生物活跃,随着糖苷都被认为是有前途的药物候选者,特别是用于培养抗癌和抗炎剂。进一步调查发现含有基因的新药,利用作为治疗剂的药理学价值并评估其效力是显着的工作。

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