Encapsulation of Jeruju Leaves Ethanol Extract (Acanthus ilicifolius L.) and It's Antiinflammatory Activities Against Carrageenan-Induced Mice

Q3 Chemistry
I. L. Tarigan, Tiara Kharisma, R. Bemis, Sutrisno Sutrisno, M. Latief
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Abstract

Jeruju (Acanthus ilicifolius) leaves ethanol extract contains flavonoids that function as an antiinflammatory source. So it is necessary to research to increase the utilization of ethanol extract of Acanthus ilicifolius leaves (A. ilicifolius L.)  in encapsulations to increase the stability of antiinflammatory chemical compounds. Concentrated dyestuff extracts are often unstable, so they need to be converted into solid form, and one technique that can be done is encapsulation. Encapsulation aims to protect sensitive components of the material and reduce the degradation of active compounds in the material. The research method begins with preparing samples to be extracted with ethanol solvent, extract phytochemical screening tests, validation determination tests for the analysis method of ethanol extract levels of jeruju leaves, encapsulated formulations, encapsulated physics and chemical properties test and anti-inflammatory tests. In this research, the secondary metabolite compounds contained in the ethanol extract of Jeruju Leaves were flavonoids, phenolics, steroids, and saponins. The determination of the validation of the analysis method of ethanol extract levels of jeruju leaves was obtained by measurement using a UV-vis spectrophotometer and obtained extract levels of 1367,831 mg/g. This research used maltodextrin coating material for encapsulation formulation because it has low viscosity in many ratios, high solubility, has no taste. The freeze-dryer method was used in this study because it produces better drying quality than other drying methods. The physical property test was carried out by analysis using FTIR and SEM while the chemical properties of encapsulation obtained the highest yield proportion of 58.81%, and the highest solubility proportion of 98.76%. Anti-inflammatory testing is carried out using male mice as test animals. Anti-inflammatory testing in mice based on the Rat hind paw oedema method. The average percent inhibition of each dose administered is calculated based on the data results. The high average percent inhibition obtained for Diclofenac Na is 80%. In the research Encapsule 1:12, the 120 mg/KgBW dose had a significant percentage of inhibition of 75.55%, with Na Diclofenac dose of 10 mg/KgBW being 80%.
Jeruju 叶乙醇提取物(Acanthus ilicifolius L.)的封装及其对卡拉胶诱导的小鼠的抗炎活性
刺五加(Acanthus ilicifolius)叶乙醇提取物含有黄酮类化合物,具有抗炎作用。因此,有必要研究如何在胶囊剂中更多地使用黄刺玫叶乙醇提取物,以提高抗炎化合物的稳定性。浓缩染料提取物通常不稳定,因此需要将其转化为固体形式,而封装技术就是其中一种。封装的目的是保护材料中的敏感成分,减少材料中活性化合物的降解。研究方法从准备用乙醇溶剂提取的样品、提取物植物化学筛选试验、洁尔阴叶乙醇提取物含量分析方法的验证测定试验、封装配方、封装理化性质试验和抗炎试验开始。在这项研究中,杰鲁菊叶乙醇提取物中含有的次生代谢化合物有黄酮类、酚类、甾体类和皂苷类。通过使用紫外-可见分光光度计进行测量,确定了杰鲁居叶乙醇提取物含量分析方法的有效性,得到的提取物含量为 1367 831 毫克/克。由于麦芽糊精在多种配比下粘度低、溶解度高、无味,本研究使用麦芽糊精包衣材料进行封装配方。本研究采用冷冻干燥法,因为与其他干燥方法相比,该方法的干燥质量更好。通过傅立叶变换红外光谱和扫描电镜分析进行了物理性质测试,而封装的化学性质获得了最高的产量比例 58.81%,最高的溶解度比例 98.76%。抗炎试验以雄性小鼠为试验动物。根据大鼠后爪水肿法对小鼠进行抗炎测试。根据数据结果计算出每个剂量的平均抑制百分比。双氯芬酸钠的平均抑制率高达 80%。在恩卡普 1:12 的研究中,120 毫克/千克体重剂量的显著抑制百分比为 75.55%,10 毫克/千克体重剂量的双氯芬酸钠的抑制百分比为 80%。
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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来源期刊
Molekul
Molekul Chemistry-Chemistry (all)
CiteScore
1.30
自引率
0.00%
发文量
31
审稿时长
4 weeks
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