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墨西哥柱状仙人掌科植物中甾醇和三萜类化合物的化学、生物活性及计算机虚拟生物勘探

Chemistry, Biological Activities and In Silico Bioprospection of Sterols and Triterpenes from Mexican Columnar Cactaceae.

作者信息

Salazar Juan Rodrigo, Loza-Mejía Marco A, Soto-Cabrera Diego

机构信息

Design, Isolation, and Synthesis of Bioactive Molecules Research Group, Chemical Sciences Faculty, Universidad La Salle. Benjamín Franklin 45, Mexico City 06140, Mexico.

出版信息

Molecules. 2020 Apr 3;25(7):1649. doi: 10.3390/molecules25071649.

Abstract

The Cactaceae family is an important source of triterpenes and sterols. The wide uses of those plants include food, gathering, medicinal, and live fences. Several studies have led to the isolation and characterization of many bioactive compounds. This review is focused on the chemistry and biological properties of sterols and triterpenes isolated mainly from some species with columnar and arborescent growth forms of Mexican Cactaceae. Regarding the biological properties of those compounds, apart from a few cases, their molecular mechanisms displayed are not still fully understand. To contribute to the above, computational chemistry tools have given a boost to traditional methods used in natural products research, allowing a more comprehensive exploration of chemistry and biological activities of isolated compounds and extracts. From this information an in silico bioprospection was carried out. The results suggest that sterols and triterpenoids present in Cactaceae have interesting substitution patterns that allow them to interact with some bio targets related to inflammation, metabolic diseases, and neurodegenerative processes. Thus, they should be considered as attractive leads for the development of drugs for the management of chronic degenerative diseases.

摘要

仙人掌科植物是三萜类化合物和甾醇的重要来源。这些植物的广泛用途包括食用、采集、药用和作为活篱笆。多项研究已分离并鉴定出许多生物活性化合物。本综述聚焦于主要从墨西哥仙人掌科中具有柱状和乔木状生长形态的一些物种中分离得到的甾醇和三萜类化合物的化学性质和生物学特性。关于这些化合物的生物学特性,除了少数情况外,其显示出的分子机制仍未被完全理解。为了对上述内容有所贡献,计算化学工具推动了天然产物研究中使用的传统方法,使得能够更全面地探索分离得到的化合物和提取物的化学性质和生物活性。基于这些信息进行了计算机虚拟生物勘探。结果表明,仙人掌科植物中存在的甾醇和三萜类化合物具有有趣的取代模式,这使得它们能够与一些与炎症、代谢性疾病和神经退行性过程相关的生物靶点相互作用。因此,它们应被视为开发用于治疗慢性退行性疾病药物的有吸引力的先导物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0153/7180492/287cc7df8910/molecules-25-01649-g001.jpg

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