Fan Yang, Li Zongming, Xi Jun
School of Chemical Engineering, Sichuan University Chengdu 610065 China
RSC Adv. 2020 Jan 8;10(3):1410-1425. doi: 10.1039/c9ra08327h. eCollection 2020 Jan 7.
Aristolochic acids (AAs) have attracted significant attention because they have been proven to be the culprits in the mass incidents of AA nephropathy that occurred in Belgium in 1993. From then on, the door to sales of medicines containing AAs has been closed. As aristolochic acid (AA)-containing traditional Chinese medicine (TCM) has a potent therapeutic effect on some diseases, research into detoxication techniques for AA-containing traditional Chinese medicines (TCMs) should be considered to be absolutely essential. Therefore, in this paper, the use of AA-containing TCMs has been investigated and detoxication techniques, such as, processing (, Chinese name), compatibility (, Chinese name), pressurized liquid extraction (PLE) and supercritical fluid extraction (SFE), have been reviewed in detail. A large number of relevant studies have been reviewed and it was found that processing with honey or alkaline salts is the most widely used method in practical production. As the AAs are a group of weak acids, relatively speaking, processing with alkaline salts can achieve a high rate of reduction of the AAs. Meanwhile, it is necessary to consider the compatibility of AA-containing TCMs and other herbal medicines. In addition, PLE and SFE can also achieve an excellent reducing rate for AAs in a much shorter processing time. Therefore, the promotion of alkaline salt processing technology should be strengthened in the future. At the same time, some advanced modern extraction technologies also have good potential and should be further studied.
马兜铃酸(AAs)已引起广泛关注,因为它们被证实是1993年在比利时发生的大规模马兜铃酸肾病事件的罪魁祸首。从那时起,含马兜铃酸药品的销售大门就被关闭了。由于含马兜铃酸(AA)的中药对某些疾病有显著疗效,因此对含马兜铃酸中药的解毒技术研究至关重要。因此,本文对含马兜铃酸中药的应用进行了研究,并详细综述了解毒技术,如炮制(中文名)、配伍(中文名)、加压液体萃取(PLE)和超临界流体萃取(SFE)。本文综述了大量相关研究,发现蜂蜜或碱性盐炮制是实际生产中应用最广泛的方法。由于马兜铃酸是一类弱酸,相对而言,碱性盐炮制能实现较高的马兜铃酸降低率。同时,有必要考虑含马兜铃酸中药与其他草药的配伍情况。此外,加压液体萃取和超临界流体萃取也能在更短的处理时间内实现优异的马兜铃酸降低率。因此,未来应加强碱性盐炮制技术的推广。同时,一些先进的现代提取技术也具有良好的潜力,值得进一步研究。