In-vitro Pharmacological Investigation of Ludwigia adscendens

Md. Anik Bhuiyan, Hasib Khan Shomudro, Sadia Afreen Chowdhury
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 Methodology: Phytochemical screening was performed utilizing a battery of test reagents. Antioxidant, antimicrobial, anti-inflammatory, anti-arthritic, cytotoxic, thrombolytic and membrane stabilizing activities were measured at various doses using the DPPH Free Radical Scavenging Assay, the Disk Diffusion Method, Egg Albumin Protein Denaturation Assay, the Inhibition of Protein Denaturation Assay, the Brine Shrimp Lethality Bioassay, Clot lysis assay and heat induced and hypotonic induced haemolysis method.
 Results: The findings of research on MELA's phytochemical screening showed the presence of a wide range of various phytochemical components. The higher antioxidant activity of MELA is shown by its IC50 value of 85.76 µg/mL. Significant antibacterial action was shown by MELA. As compared to the standard ascorbic acid, this extract showed significantly greater anti-arthritic and anti-inflammatory effects. MELA exhibited much higher LC50 value which is 1.147 µg/mL than the typical vincristine-sulphate in a lethality test with brine shrimp. Comparatively speaking, this herb has quite powerful thrombolytic action. Significant membrane stabilizing action has also been shown by MELA.
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Abstract

Aims: This research objective was to investigate some in-vitro properties of methanol-extracted plant extracts of Ludwigia adscendens (the water primrose). The primary method of assessment for the methanolic extract of Ludwigia adscendens (MELA) was investigated for phytochemical screening. It was determined to look into the plant's potential for in vitro activities, such as antioxidant, antimicrobial, anti-inflammatory anti-arthritis, cytotoxic, thrombolytic and membrane stabilizing activity due to the pharmaceutical interest in its component parts. Methodology: Phytochemical screening was performed utilizing a battery of test reagents. Antioxidant, antimicrobial, anti-inflammatory, anti-arthritic, cytotoxic, thrombolytic and membrane stabilizing activities were measured at various doses using the DPPH Free Radical Scavenging Assay, the Disk Diffusion Method, Egg Albumin Protein Denaturation Assay, the Inhibition of Protein Denaturation Assay, the Brine Shrimp Lethality Bioassay, Clot lysis assay and heat induced and hypotonic induced haemolysis method. Results: The findings of research on MELA's phytochemical screening showed the presence of a wide range of various phytochemical components. The higher antioxidant activity of MELA is shown by its IC50 value of 85.76 µg/mL. Significant antibacterial action was shown by MELA. As compared to the standard ascorbic acid, this extract showed significantly greater anti-arthritic and anti-inflammatory effects. MELA exhibited much higher LC50 value which is 1.147 µg/mL than the typical vincristine-sulphate in a lethality test with brine shrimp. Comparatively speaking, this herb has quite powerful thrombolytic action. Significant membrane stabilizing action has also been shown by MELA. Conclusion: To wrap it up, it is clear that this plants phytochemical can be used for wide range of drug discovery field due to its potent pharmacological actions.
金盏花的体外药理研究
目的:研究水报春花甲醇提取液的一些体外特性。研究了甜菜醇提物(MELA)的初步评价方法,并进行了植物化学筛选。由于其组成部分具有药用价值,因此决定研究该植物的潜在体外活性,如抗氧化、抗菌、抗炎、抗关节炎、细胞毒性、溶栓和膜稳定活性。 方法:利用一系列测试试剂进行植物化学筛选。采用DPPH自由基清除法、圆盘扩散法、蛋白蛋白变性法、蛋白变性抑制法、卤虾致死性生物测定法、凝块溶解法、热诱导和低渗诱导溶血法测定不同剂量下的抗氧化、抗菌、抗炎、抗关节炎、细胞毒、溶栓和膜稳定活性。结果:MELA的植物化学筛选研究结果显示,MELA含有多种植物化学成分。MELA的IC50值为85.76µg/mL,具有较高的抗氧化活性。MELA具有明显的抗菌作用。与标准抗坏血酸相比,这种提取物显示出更大的抗关节炎和抗炎作用。在盐水对虾的致死试验中,MELA的LC50值为1.147µg/mL,明显高于典型的硫酸长春新碱。相对而言,这种草药具有相当强的溶栓作用。MELA也显示出显著的膜稳定作用。 结论:综上所述,该植物化学物质具有强大的药理作用,可广泛应用于药物开发领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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