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通过对山竹果中α-倒捻子素进行半合成修饰获得的氧杂蒽酮的抗菌和抗真菌活性

Anti-Bacterial and Anti-Fungal Activity of Xanthones Obtained via Semi-Synthetic Modification of α-Mangostin from Garcinia mangostana.

作者信息

Narasimhan Srinivasan, Maheshwaran Shanmugam, Abu-Yousef Imad A, Majdalawieh Amin F, Rethavathi Janarthanam, Das Prince Edwin, Poltronieri Palmiro

机构信息

Asthagiri Herbal Research Foundation, 162A, Perungudi Industrial Estate, Perungudi, Chennai 600096, India.

Department of Biology, Chemistry and Environmental Sciences, American University of Sharjah, P.O. Box 26666 Sharjah, United Arab Emirates.

出版信息

Molecules. 2017 Feb 12;22(2):275. doi: 10.3390/molecules22020275.

Abstract

The microbial contamination in food packaging has been a major concern that has paved the way to search for novel, natural anti-microbial agents, such as modified α-mangostin. In the present study, twelve synthetic analogs were obtained through semi-synthetic modification of α-mangostin by Ritter reaction, reduction by palladium-carbon (Pd-C), alkylation, and acetylation. The evaluation of the anti-microbial potential of the synthetic analogs showed higher bactericidal activity than the parent molecule. The anti-microbial studies proved that showed high anti-bacterial activity whereas showed the highest anti-fungal activity. Due to their microbicidal potential, modified α-mangostin derivatives could be utilized as active anti-microbial agents in materials for the biomedical and food industry.

摘要

食品包装中的微生物污染一直是一个主要问题,这为寻找新型天然抗菌剂(如改性α-山竹素)铺平了道路。在本研究中,通过Ritter反应、钯-碳(Pd-C)还原、烷基化和乙酰化对α-山竹素进行半合成修饰,得到了12种合成类似物。对合成类似物抗菌潜力的评估表明,其杀菌活性高于母体分子。抗菌研究证明,[此处原文缺失具体物质]表现出高抗菌活性,而[此处原文缺失具体物质]表现出最高的抗真菌活性。由于其杀菌潜力,改性α-山竹素衍生物可作为生物医学和食品工业材料中的活性抗菌剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f9e/6155947/2d1f529d704d/molecules-22-00275-g001.jpg

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