Rafi M, Devi A F, Syafitri U D, Heryanto R, Suparto I H, Amran M B, Rohman A, Prajogo B, Lim L W
Department of Chemistry, Faculty of Mathematics and Natural Sciences, Institut Pertanian Bogor, Jalan Tanjung Kampus IPB Dramaga, Bogor, 16680, Indonesia.
Tropical Biopharmaca Research Center, Institut of Research and Community Empowerment, Institut Pertanian Bogor, Jalan Taman Kencana No. 3 Kampus IPB Taman Kencana, Bogor, 16128, Indonesia.
BMC Res Notes. 2020 Feb 4;13(1):56. doi: 10.1186/s13104-020-4920-x.
Andrographis paniculata, widely used as an antidiabetic in Indonesian traditional medicines (jamu), contains chemical compounds whose concentration is related to its therapeutic effects. The concentration of solvents used for extraction will also affect the number of compounds extracted. Therefore, a quality control method is needed to ensure consistency in quantifying these compounds in A. paniculata to improve its therapeutic application. High-performance liquid chromatography fingerprint analysis combined with chemometrics was used to evaluate extracts from different solvent extraction treatments. The content of andrographolide, the main bioactive compound in A. paniculata, and the level of α-glucosidase inhibition activity, an indicator of its antidiabetic activity, were also determined.
Fingerprint chromatograms of A. paniculata extracts from different treatments exhibited a similar pattern with several peaks in common, only differing in area and intensity value. The A. paniculata extracts were classified using HPLC fingerprint and principal component analysis to allow grouping according to their respective solvent extraction treatments. The highest andrographolide content and α-glucosidase inhibition activity occurred in the 50% ethanol extract and the lowest in the water extract. HPLC fingerprint analysis could be used for identifying A. paniculata extracts based on solvent extraction, thus improving quality control for their therapeutic application.
穿心莲在印度尼西亚传统药物(爪哇草药)中被广泛用作抗糖尿病药物,其所含化合物的浓度与其治疗效果相关。用于提取的溶剂浓度也会影响提取的化合物数量。因此,需要一种质量控制方法来确保在定量穿心莲中的这些化合物时保持一致性,以改善其治疗应用。采用高效液相色谱指纹图谱分析结合化学计量学方法来评估不同溶剂萃取处理的提取物。还测定了穿心莲主要生物活性化合物穿心莲内酯的含量及其抗糖尿病活性指标α-葡萄糖苷酶抑制活性水平。
不同处理的穿心莲提取物指纹图谱呈现相似模式,有几个共同峰,仅在面积和强度值上有所不同。利用高效液相色谱指纹图谱和主成分分析对穿心莲提取物进行分类,以便根据各自的溶剂萃取处理进行分组。穿心莲内酯含量和α-葡萄糖苷酶抑制活性在50%乙醇提取物中最高,在水提取物中最低。高效液相色谱指纹图谱分析可用于基于溶剂萃取鉴别穿心莲提取物,从而改善其治疗应用的质量控制。