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Detection of Antimicrobial Compounds by Bioautography of Different Extracts of Leaves of Selected South African Tree Species

机译:南非南非树种叶片不同提取物的生物自显影技术检测抗菌化合物

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摘要

The hexane, acetone, dichloromethane and methanol extracts of Combretum vendae A.E. van Wyk (Combretaceae), Commiphora harveyi (Engl.) Engl. (Burseraceae), Khaya anthotheca (Welm.) C.DC (Meliaceae), Kirkia wilmsii Engl. (Kirkiaceae), Loxostylis alata A. Spreng. ex Rchb. (Anacardiaceae), Ochna natalitia (Meisn.) Walp. (Ochnaceae) and Protorhus longifolia (Bernh. Ex C. Krauss) Engl. (Anacardiaceae) were screened for their antimicrobial activity. The test organisms included bacteria (Enterococcus faecalis, Escherichia coli, Pseudomonas aeruginosa and Staphylococcus aureus), and fungi (Aspergillus fumigatus, Candida albicans, Cryptococcus neoformans, Microsporum canis and Sporothrix schenckii). A simple bioautographic procedure, involving spraying suspensions of the bacteria or fungi on thin layer chromatography (TLC) plates developed in solvents of varying polarities was used to detect the number of antibacterial and antifungal compounds present in the extracts. All the extracts had antimicrobial activity against at least one of the test microorganisms. This activity was denoted by white spots against a red-purple background on the TLC plates after spraying with tetrazolium violet. Twenty seven TLC plates; 9 for each solvent system and 3 different solvent systems per organism were tested in the bioautographic procedure. Of the bacteria tested, S. aureus was inhibited by the most compounds separated on the TLC plates from all the tested plants. Similarly, growth of the fungus C. neoformans was also inhibited by many compounds present in the extracts. Loxostylis alata appeared to be the plant extract with the highest number of inhibition bands when compared with other plants tested against both bacteria and fungi. This species was selected for in depth further study.
机译:食虫草(Commbretum vendae)A.E. van Wyk(Combretaceae),哈密草(Commiphora harveyi(Engl。)Engl)的己烷,丙酮,二氯甲烷和甲醇提取物。菊科(菊科),菊科(菊科),菊科(Melaceae),威尔克西(Kirkia wilmsii Engl)。 (Kirkiaceae),Loxostylis alata A.Spreng。前Rchb。 (Anacardiaceae),Ochna natalitia(Meisn。)Walp。 (O科)和Protorhus longifolia(伯恩。前C.克劳斯)英语。筛选(漆树科)的抗菌活性。测试的生物包括细菌(粪肠球菌,大肠杆菌,铜绿假单胞菌和金黄色葡萄球菌)和真菌(烟曲霉,白色念珠菌,新隐球菌,犬小孢子菌和申氏孢子菌)。一种简单的生物自传程序,涉及将细菌或真菌的悬浮液喷洒到在极性不同的溶剂中开发的薄层色谱(TLC)板上,以检测提取物中存在的抗菌和抗真菌化合物的数量。所有提取物均具有针对至少一种测试微生物的抗微生物活性。在用四唑紫罗兰喷雾后,在TLC板上的白色斑点以红紫色背景为白色斑点表示。 TLC板27个;在生物自传程序中测试了每种溶剂体系9种和每种生物体3种不同的溶剂体系。在测试的细菌中,金黄色葡萄球菌受到所有测试植物中TLC板上分离的大多数化合物的抑制。同样,提取物中存在的许多化合物也抑制了新孢子菌的生长。与针对细菌和真菌进行测试的其他植物相比,Loxostylis alata似乎是具有最高抑制带数量的植物提取物。选择该物种进行深入研究。

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