Institute for Pharmacy and Food Chemistry, University of Wuerzburg, Wuerzburg, Germany.
School of Pharmacy, Muhimbili University of Health and Allied Sciences, Dar es Salaam, Tanzania.
Arch Pharm (Weinheim). 2020 Oct;353(10):e2000147. doi: 10.1002/ardp.202000147. Epub 2020 Aug 31.
Extraction is a key step in studying compounds from plants and other natural sources. The common use of high temperatures in pressurized microwave-assisted extraction (PMAE) makes it unsuitable for the extraction of compounds with low or unknown thermal stability. This study aimed at determining the suitability of low-temperature, short-time PMAE in attaining yields comparable to those of prolonged maceration at room temperature. Additionally, we explored the phytochemical differences of the extracts from both techniques. Maceration at room temperature for 24 hr and PMAE at 40-45°C and 10 bar for 30 min were carried out on 18 samples from 14 plant species at a solvent-to-feeds ratio of 10. The PMAE yields of 16 out of 18 samples were within the proportions of 91-139.2% as compared with the respective extracts from maceration. Varying numbers of nonmatching peaks were noted in MS chromatograms of five extract pairs, indicating selective extraction of some compounds. Low-temperature PMAE can attain reasonable extraction efficiency with the added value of sparing compounds of low thermal stability. The method can also enable the recovery of compounds distinct from those obtained by maceration.
提取是研究植物和其他天然来源化合物的关键步骤。在加压微波辅助提取(PMAE)中,高温的常见使用使其不适合提取热稳定性低或未知的化合物。本研究旨在确定低温、短时间 PMAE 是否适合获得与长时间室温浸渍相当的产率。此外,我们还探讨了两种技术提取物的植物化学差异。室温下浸渍 24 小时和在 40-45°C 和 10 巴下 PMAE 处理 30 分钟,使用 10 的溶剂-进料比对 14 种植物物种的 18 个样本进行处理。与相应的浸渍提取物相比,18 个样本中的 16 个样本的 PMAE 产率在 91-139.2%的范围内。在五对提取物的 MS 色谱图中注意到不同数量的非匹配峰,表明一些化合物的选择性提取。低温 PMAE 可以获得合理的提取效率,并具有保存低热稳定性化合物的附加值。该方法还可以实现与浸渍获得的化合物不同的化合物的回收。