Mahajan Himadri, Singh Arora Daljit, Singh Harjeet, Jain Subheet K, Namarta Kalia, Singh Jatinder
Microbial Technology Laboratory, Department of Microbiology, Guru Nanak Dev University, Amritsar, India.
Department of Pharmaceutical Sciences, Guru Nanak Dev University, Amritsar, India.
Drug Chem Toxicol. 2021 Nov;44(6):620-630. doi: 10.1080/01480545.2019.1643875. Epub 2019 Aug 1.
The screening of aqueous extract of revealed its broad-spectrum antimicrobial potential against Gram positive, Gram negative bacteria, and yeast. Optimizing the extraction strategies, revealed 15% concentration of aqueous extract prepared at 40 °C by extracting for 40 min, as optimum parameters and its statistical optimization by Box-Behnken design led to 1.16-1.35 folds enhancement in activity. Organic solvent extraction further improved the activity where methanol proved to be the best organic extractant which was effective against all the 13 pathogens tested with inhibition zone ranging from 14 to 32 mm. Minimum Inhibitory Concentration (MIC) study endorsed the methanolic extract to be the best organic extractant, as it showed the lowest MIC (0.5-10 mg/ml) in comparison to aqueous extract (1-10 mg/ml) as well as Partially Purified Phytoconstituents i.e., flavonoids (1-5 mg/ml), diterpenes (5-10 mg/ml) and cardiac glycosides (5-10 mg/ml). All these were found to be biosafe in both (Ames and MTT assay) and toxicity studies. Acute oral toxicity testing of flavonoids (2000 mg/ml) on Wistar rats did not reveal any significant change in relative organ weight, biochemical, hematological parameters and organs' architecture in comparison to control. Antiproliferative potential of flavonoids against human cancerous cell lines i.e., HeLa, HCT-15, and U87-MG, further increase the importance of this plant as a promising candidate for drug development. The overall study justified the medicinal importance of this plant.
对[植物名称未提及]水提取物的筛选显示出其对革兰氏阳性菌、革兰氏阴性菌和酵母具有广谱抗菌潜力。通过优化提取策略,发现以40℃提取40分钟制备的15%浓度水提取物为最佳参数,采用Box-Behnken设计进行统计优化后,活性提高了1.16 - 1.35倍。有机溶剂萃取进一步提高了活性,其中甲醇被证明是最佳的有机萃取剂,对所有13种测试病原体均有效,抑菌圈范围为14至32毫米。最低抑菌浓度(MIC)研究证实甲醇提取物是最佳的有机萃取剂,因为与水提取物(1 - 10毫克/毫升)以及部分纯化的植物成分即黄酮类化合物(1 - 5毫克/毫升)、二萜类化合物(5 - 10毫克/毫升)和强心苷(5 - 10毫克/毫升)相比,它显示出最低的MIC(0.5 - 10毫克/毫升)。在[未提及具体测试](Ames和MTT试验)和[未提及具体测试]毒性研究中,所有这些都被发现是生物安全的。与对照组相比,对Wistar大鼠进行黄酮类化合物(2000毫克/毫升)的急性口服毒性试验未发现相对器官重量、生化、血液学参数和器官结构有任何显著变化。黄酮类化合物对人癌细胞系即HeLa、HCT - 15和U87 - MG的抗增殖潜力,进一步增加了这种植物作为药物开发有前景候选者的重要性。总体研究证明了这种植物的药用重要性。