乙酸乙酯提取物和 N-己烷提取物的理化测定

Yuri Pratiwi Utami, Nurzadrina Wahyuddin, Ainun Jariah, Rahma Mustari, Imelda Desi
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The extract based on six parameters from determining physicochemical properties, namely % yield, organoleptic, determination of dissolved compound levels, phytochemical screening, determination of drying Shrinkage and determination of specific weight. Result : The results of this study showed, the yield obtained for each solvent is 6.218% ethyl acetate extract and 0.968 % n-hexane extract. Organoleptic examination (form, colour, smell and flavor) for ethyl acetate extract was thick, blackish green, distinctive smell and bitter, and than n-hexan extract was thick, brownish yellow, odorless and bitter. In the ethyl acetate extract, the levels of compounds dissolved in water and ethanol solvents were 16.84 % ± 0.061 and 68.29 % ± 0.042 respectively. The levels of compounds in the n-hexane extract dissolved in water and ethanol were 4.26% ± 0.064 and 23.18% ± 0.049, respectively. 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引用次数: 0

摘要

背景:印楝(Azadiractha indica A. Juss)是一种热带和亚热带植物,自史前时代以来就被广泛用于传统医学。印楝提取物具有多种生物活性,如抗菌、消炎和抗氧化特性。目的:本研究以乙酸乙酯和正己烷为溶剂,对印楝叶(Azadirachta indica A. Juss)的理化性质进行了研究。方法:本研究采用浸渍法,用乙酸乙酯和正己烷两种溶剂萃取苦楝叶。提取物根据六项参数确定理化性质,即产量百分比、感官、溶解化合物含量测定、植物化学筛选、干燥收缩率测定和比重测定。结果:研究结果表明,每种溶剂的提取率分别为 6.218%(乙酸乙酯提取物)和 0.968%(正己烷提取物)。乙酸乙酯提取物的感官检查(形、色、嗅、味)为粘稠、黑绿色、有特殊气味和苦味,而正己烷提取物则为粘稠、棕黄色、无味和苦味。在乙酸乙酯提取物中,溶于水和乙醇溶剂的化合物含量分别为 16.84 % ± 0.061 和 68.29 % ± 0.042。正己烷提取物溶于水和乙醇的化合物含量分别为 4.26% ± 0.064 和 23.18% ± 0.049。苦楝叶乙酸乙酯提取物的植物化学筛选结果为生物碱和黄酮类化合物。而楝树叶的正己烷提取物则含有生物碱和萜类化合物。楝树叶乙酸乙酯提取物和正己烷提取物的干燥损耗值分别为 4.748% ± 0.257 和 5.219% ± 0.089。楝树叶乙酸乙酯提取物和正己烷提取物的稀释比重分别为 1.0389 g/mL ± 0.039 和 1.0289 g/mL ± 0.038。结论这项研究表明,萃取溶剂的变化会影响理化性质。乙酸乙酯溶剂提取物显示出更好的理化性质,与正己烷提取物相比,乙酸乙酯提取物在收率%、可溶性化合物含量、植物化学筛选、干燥收缩率测定和比重测定方面都更好。
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Physicochemical Determination Of Ethyl Acetate Extract And N-Hexane Extract Of Azadiractha Indica A. Juss Leaves
Background: Neem (Azadiractha indica A. Juss) as a tropical and subtropical plant has been widely used in traditional medicine since prehistoric times. Several biological activities, such as antibacterial, anti-inflammatory and antioxidant properties, have been demonstrated in Neem extract. Aim: The study aims to research was carried out on the physicochemical properties of neem leaves (Azadirachta indica A. Juss) using ethyl acetate and n-hexane as solvents. Methode: In this study, Azadiractha indica A. Juss leaves was extracted using a maceration method with two fluids namely ethyl acetate a n-hexane. The extract based on six parameters from determining physicochemical properties, namely % yield, organoleptic, determination of dissolved compound levels, phytochemical screening, determination of drying Shrinkage and determination of specific weight. Result : The results of this study showed, the yield obtained for each solvent is 6.218% ethyl acetate extract and 0.968 % n-hexane extract. Organoleptic examination (form, colour, smell and flavor) for ethyl acetate extract was thick, blackish green, distinctive smell and bitter, and than n-hexan extract was thick, brownish yellow, odorless and bitter. In the ethyl acetate extract, the levels of compounds dissolved in water and ethanol solvents were 16.84 % ± 0.061 and 68.29 % ± 0.042 respectively. The levels of compounds in the n-hexane extract dissolved in water and ethanol were 4.26% ± 0.064 and 23.18% ± 0.049, respectively. The results of the phytochemical screening for ethyl acetate extract of neem leaves are alkaloids and flavonoids. Meanwhile, n-Hexane extract from neem leaves contains alkaloids and terpenoids. The drying loss values obtained from ethyl acetate extract and n-Hexan extract of neem leaves were 4.748% ± 0.257 and 5.219% ± 0.089. Specific gravity obtained from The dilution of ethyl acetate extract and n-hexane extract of neem leaves was 1.0389 g/mL ± 0.039 and 1.0289 g/mL ± 0.038. Conclusion: This study showed that variations in solvents in extraction can affect the physicochemical properties. The extract with ethyl acetate solvent showed better physicochemical properties where the extract obtained in % yield, soluble compound content, phytochemical screening, determination of drying Shrinkage and determination of specific weight was better compared to the extract with n-hexane.
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