Phytochemical, Pharmacological and Microbiological Laboratory, Department of Biosciences, Saurashtra University, Rajkot-360005, Gujarat, India.
Nat Prod Res. 2011 Dec;25(20):1955-64. doi: 10.1080/14786419.2010.530600. Epub 2011 Jul 18.
Caesalpinia pulcherrima Swartz. is an ornamental plant, shrub or a small tree belonging to the family Caesalpiniaceae. The plant has been used for the treatment of inflammatory disorders, skin diseases and so on. In this study, the cytotoxicity of the methanol extract of the aerial parts of C. pulcherrima was tested using an Artemia salina (brine shrimp) bioassay. Further, the methanol extract was fractionated by silica gel column chromatography using a solvent gradient of hexane:ethyl acetate:methanol in different ratios and 56 fractions were collected. On the basis of thin layer chromatography profiles, 13 major fractions were obtained, which were tested for antimicrobial activity against 14 microorganisms using the agar disc diffusion method and also tested for their minimal inhibitory concentration and minimal bactericidal concentration values. In terms of cytotoxicity, the extract caused 26% mortality of brine shrimp larvae after 24 h at a concentration of 1000 µg mL(-1). Fractions 3, 9 and 10 showed significant antimicrobial activities. Phytochemical analysis of these three fractions led to the identification of 11 compounds, and their structures were established by means of gas chromatography-mass spectroscopy techniques. These findings suggest that these bioactive compounds may be useful as potential antimicrobials. Further investigation is needed to establish the mode of action of these bioactive compounds.
美丽异木棉(Caesalpinia pulcherrima Swartz.)是锦葵科木棉属的一种观赏植物,通常为小乔木或灌木。该植物已被用于治疗炎症性疾病和皮肤病等。在这项研究中,采用卤虫(盐水虾)生物测定法测试了美丽异木棉地上部分甲醇提取物的细胞毒性。然后,通过硅胶柱色谱法,使用不同比例的正己烷-乙酸乙酯-甲醇溶剂梯度对甲醇提取物进行了分段,共收集到 56 个馏分。根据薄层色谱图谱,得到了 13 个主要馏分,采用琼脂平板扩散法对这 13 个馏分进行了对 14 种微生物的抗菌活性测试,同时还测试了它们的最小抑菌浓度和最小杀菌浓度值。在细胞毒性方面,提取物在浓度为 1000μg/mL 时,24 小时后导致卤虫幼虫死亡率达到 26%。馏分 3、9 和 10 显示出显著的抗菌活性。对这三个馏分进行的植物化学分析导致鉴定出 11 种化合物,并通过气相色谱-质谱技术确定了它们的结构。这些发现表明,这些生物活性化合物可能可用作潜在的抗菌剂。需要进一步的研究来确定这些生物活性化合物的作用模式。