中苏拉威西邦盖群岛薯蓣品种乙醇提取物的标准化研究

Ihwan Ismail, Akhmad Khumaidi, Ayu Dinawati Putri, Rizki Primadia, Armini Syamsidi, Khildah Khaerati
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Materials and Methods: An experimental laboratory approach was employed to extract Dioscorea alata L using 96% ethanol, which was later concentrated through a rotary evaporator to obtain a viscous extract. Specific and non-specific parameters were determined using standardized techniques. Results: The extract yielded 3.32% of the initial substance. Drying shrinkage was 19.7769±1.2682%, and specific gravity was 0.6192±0.1476 gram/ml for 5% m/v and 0.5101±3.9591 gram/ml for 10% m/v. Ash content was 0.6793%, with acid insoluble ash content at 0.1895%. Heavy metal contamination for Hg was 0.47 ppm, but undetected for Pb & Cd). The total plate number was 27 x 103 colonies/g, and negative Escherichia coli contamination. The mold count was 39 x 101 colonies/g. 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引用次数: 0

摘要

背景:草药标准化对评估其质量和有效性至关重要。目的:确定药用植物的非特异性和特异性标准参数。非特定参数包括干燥收缩率、含水量、总灰分含量、酸不溶性灰分含量、总细菌、总霉菌和金属限值(Pb、Hg和Cd)。具体参数包括感官检查、提取物中化学成分的鉴定、特定溶剂中溶解的化合物、总黄酮含量和提取物中花青素含量的定性检测。材料与方法:采用实验室法,用96%乙醇提取薯蓣提取物,经旋转蒸发器浓缩得到粘性提取物。使用标准化技术确定特异性和非特异性参数。结果:提取液提取率为原物质的3.32%。干燥收缩率为19.7769±1.2682%,比重为5% m/v时为0.6192±0.1476 g /ml, 10% m/v时为0.5101±3.9591 g /ml。灰分含量为0.6793%,酸不溶性灰分含量为0.1895%。汞的重金属污染为0.47 ppm,而铅未检测到;Cd)。总平板数为27 × 103菌落/g,大肠杆菌感染阴性。霉菌计数为39 × 101菌落/g。其他具体参数包括粘性提取物的感官特性(紫色、特征气味和甜味)、水溶性化合物含量(15.63%)、乙醇可溶性化合物含量(14.73%)和类黄酮含量(76.669 mg EQ/100 mg)。结论:山药乙醇提取物符合食品药品监督管理局制定的标准要求。它是一种粘性提取物,具有独特的气味,紫黑色和甜味。提取液中含有生物碱、黄酮类、皂苷、单宁、甾体和酚类化合物,总黄酮含量为76.669 mg。此外,它的花青素检测呈阳性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Standardization of Ethanol Extract of Dioscorea alata L. Variety of Paoateno from Banggai Islands District, Central Sulawesi
Background: Standardizing herbal medicines is crucial for assessing their quality and effectiveness. Objectives: This study aims to determine non-specific and specific standardization parameters for medicinal plants. Non-specific parameters include drying shrinkage, water content, total ash content, acid insoluble ash content, total bacteria, total mold, and metal limits (Pb, Hg, and Cd). Specific parameters involve organoleptic examination, identification of chemical content in extracts, dissolved compounds in specific solvents, total flavonoid content, and qualitative testing of anthocyanin content in the extract. Materials and Methods: An experimental laboratory approach was employed to extract Dioscorea alata L using 96% ethanol, which was later concentrated through a rotary evaporator to obtain a viscous extract. Specific and non-specific parameters were determined using standardized techniques. Results: The extract yielded 3.32% of the initial substance. Drying shrinkage was 19.7769±1.2682%, and specific gravity was 0.6192±0.1476 gram/ml for 5% m/v and 0.5101±3.9591 gram/ml for 10% m/v. Ash content was 0.6793%, with acid insoluble ash content at 0.1895%. Heavy metal contamination for Hg was 0.47 ppm, but undetected for Pb & Cd). The total plate number was 27 x 103 colonies/g, and negative Escherichia coli contamination. The mold count was 39 x 101 colonies/g. Additional specific parameters included the organoleptic properties of the viscous extract (purple color, characteristic odor, and sweet taste), water-soluble compound content (15.63%), ethanol-soluble compound content (14.73%), and a flavonoid content of 76.669 mg EQ/100 mg. Conclusions: The ethanol extract of Dioscorea alata complies with the standard requirements established by the Food and Drug Supervisory Agency. It presents as a viscous extract with a distinct odor, purple-black color, and sweet taste. The extract contains alkaloids, flavonoids, saponins, tannins, steroids, and phenolic compounds, with a total flavonoid content of 76.669 mg. Furthermore, it tested positive for anthocyanins.
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