芫荽植物化学成分及抗氧化、抗菌、杀蚊活性的综合分析阿尔斯通

Murugaiyan Annathurai, Sabapathy Vijayakumar, Palanivel Vanishree, Shanmugasundaram Somu
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引用次数: 0

摘要

自古以来,植物一直是人类健康和医学不可或缺的一部分。本研究探讨了鸡冠草(Canthium coromandelicum)的治疗潜力。通过全面的植物化学分析,评价其抗氧化性、杀蚊性和抗菌活性。对植物提取物进行定性和定量的植物化学分析,以鉴定和定量其生物活性化合物。采用2,2-二苯基-1-picrylhydrazyl自由基清除、2,2 ' -氮基-双(3-乙基苯并噻唑-6-磺酸)测定、铁还原抗氧化能力测定、一氧化氮测定和超氧化物测定等多种溶剂法评估抗氧化活性,并通过盘片扩散法评估对选定菌株的抗菌效果。最后研究了不同溶剂对登革热媒介埃及伊蚊的作用。结果显示其含有丰富的植物化学成分,包括黄酮类、酚类、单宁类和萜类。与其他溶剂提取物相比,甲醇提取物(131.23 ± 3.13 mg RUE/g提取物)中总黄酮含量丰富。在GCMS分析中,我们发现乙酸乙酯提取物中有19种植物成分,己烷提取物中有27种植物成分,甲醇提取物中有13种植物成分,水提取物中有19种植物成分。主要生物活性化合物为角鲨烯(53.93 %)、2-吡咯烷乙酮、1-苯基(57.08 %)、异喹啉(59 %)、2- h -吡唑-3-醇、5-呋喃-2-基-(22.56 %)、3-吡啶甲酰胺(22.31 %)和2-亚氨基-3-乙基苯并噻唑啉(16.74 %)。该提取物具有明显的抗氧化潜力,表明其清除自由基的能力和还原能力。此外,对革兰氏阳性菌和革兰氏阴性菌均有显著的抑菌活性,具有良好的治疗应用前景。结果表明,甲醇提取物在较低浓度下的LC50值分别为209.752 µg/mL(2龄)和267.735 µg/mL(3龄),具有显著的杀蚊效果。这些发现强调了古罗曼作为天然抗氧化剂、杀蚊剂和抗菌剂的潜力,值得进一步开发药用和促进健康的用途。然而,有必要进行广泛的研究,通过体内研究筛选已记录的植物化学物质的作用,以支持其在传统医学中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comprehensive analysis of the phytochemicals, antioxidant, antibacterial and mosquitocidal activities in Canthium coromandelicum (Burm.f.) Alston
Plants have been integral to human health and medicine since ancient times. This study investigates the therapeutic potential of Canthium coromandelicum (Burm.f.) Alston through comprehensive phytochemical analysis, evaluation of antioxidant properties, mosquitocidal and assessment of antibacterial activities. The plant extract was subjected to qualitative and quantitative phytochemical analyses to identify and quantify its bioactive compounds. Antioxidant activity was assessed using various solvent based various assays including 2,2-diphenyl-1-picrylhydrazyl free radical scavenging, 2,2′-azino-bis(3-ethylbenzothiazoline-6-sulfonic acid) assay, Ferric reducing antioxidant power assay, Nitric oxide assay and Super oxide assays, while antibacterial efficacy was evaluated against selected bacterial strains through disc diffusion determination. Finally different solvent of C. coromandelicum against dengue vector Aedes aegypti. Results revealed a rich phytochemical profile including flavonoids, phenols, tannins and terpenoids. Flavonoids were rich in presented the methanol (131.23 ± 3.13 mg RUE/g extract) extract compared with other solvent extracts. In GCMS analysis we have observed 19 phytocomponents were presented in the ethyl acetate extract, 27 phytocomponents from hexane extract, 13 phytocomponents from methanol and 19 phytocomponents from aqueous extract, respectively. The major dominant bioactive compounds are Squalene (53.93 %), 2-Pyrrolidinethione, 1-phenyl (57.08 %), Isoquinoline (59 %), 2H-Pyrazol-3-ol, 5-furan-2-yl- (22.56 %), 3-Pyridinecarboxamide (22.31 %) and 2-Imino-3-ethylbenzothiazoline (16.74 %) respectively. The extract exhibited significant antioxidant potential, indicative of its free radical scavenging ability and reducing power. Furthermore, notable antibacterial activities were observed against both Gram-positive and Gram-negative bacteria, suggesting promising therapeutic applications. Finally, in mosquitocidal assay the methanol extract having significant mortality were observed in lower concentration compared to another solvent, the LC50 values ranged 209.752 µg/mL (2nd instar) and 267.735 µg/mL (3rd instar) in methanol extract. These findings underscore C. coromandelicum potential as a source of natural antioxidants, mosquitocidal and antibacterial agents, warranting further exploration for pharmaceutical and health-promoting purposes. However, widespread study is necessary to screen the role of recorded phytochemicals through in vivo studies to support its use in traditional medicine.
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