Shahbaz Fatima, Akhter Naheed, Shahid Muhammad, Riaz Muhammad, Anjum Fozia, Hussain Fatma
Department of Chemistry, Government College University, Faisalabad, Pakistan.
College of Allied Health Professionals, Faculty of Medical Sciences, Government College University, Faisalabad, Pakistan.
Dose Response. 2022 May 3;20(2):15593258221097665. doi: 10.1177/15593258221097665. eCollection 2022 Apr-Jun.
Worldwide, is used for the treatment of various ailments owing to the presence of bioactives of therapeutic potential. Current study was planned to extract bioactives from roots using methanol and water as solvents under stimulated effect of ultrasonic waves and characterize them to evaluate their potential benefits. Proximate analysis explored the presence of significant contents of protein, fats, fiber, organic and inorganic minerals. Fourier transform infrared spectra and high-performance liquid chromatography chromatogram indicated the presence of different phytochemicals having antioxidant potential as evidenced by total phenolic contents, total flavonoids content and 2,2-diphenyl-1-picrylhydrazyl activity of both extracts. Both extracts displayed excellent antimicrobial potential against and . Aqueous and methanolic extracts exhibited higher inhibition of biofilm made by as 55.09 and 61.58%, respectively in comparison to biofilm of ( as 48.11 and 36.51%, respectively. Methanol extract exhibited anti-amylase activity (IC 5.26 ± .31 μg/mL) with an inhibition rate of 68.11% whereas IC of aqueous extract was 6.59 ± .53 μg/mL with an inhibition rate of 63.53%. Inhibitory potential against α-glucosidase (IC 3.70 ± .94 ppm) was demonstrated by methanol extract in comparison to aqueous extract (IC 7.58 ± .15). The study concluded that roots have significant medicinal potential due to the presence of variety of bioactive molecules and can be used in pharmaceutical preparations.
在全球范围内,由于其具有治疗潜力的生物活性成分,[植物名称]被用于治疗各种疾病。本研究计划在超声波的刺激作用下,以甲醇和水为溶剂从[植物名称]根中提取生物活性成分,并对其进行表征,以评估其潜在益处。近似分析表明其含有大量的蛋白质、脂肪、纤维、有机和无机矿物质。傅里叶变换红外光谱和高效液相色谱图表明存在不同的具有抗氧化潜力的植物化学物质,两种提取物的总酚含量、总黄酮含量和2,2-二苯基-1-苦基肼活性证明了这一点。两种提取物对[细菌名称1]和[细菌名称2]均表现出优异的抗菌潜力。与[细菌名称3]的生物膜相比,水提取物和甲醇提取物对[细菌名称1]形成的生物膜的抑制率分别更高,为55.09%和61.58%([细菌名称3]的分别为48.11%和36.51%)。甲醇提取物表现出抗淀粉酶活性(IC50为5.26±0.31μg/mL),抑制率为68.11%,而水提取物的IC50为6.59±0.53μg/mL,抑制率为63.53%。与水提取物(IC50为7.58±0.15)相比,甲醇提取物对α-葡萄糖苷酶表现出抑制潜力(IC50为3.70±0.94ppm)。该研究得出结论,由于存在多种生物活性分子,[植物名称]根具有显著的药用潜力,可用于药物制剂。