基于有机盐和离子液体的两性霉素B制剂对……的合成及生物学评价
Synthesis and Biological Evaluation of Amphotericin B Formulations Based on Organic Salts and Ionic Liquids against .
作者信息
Ferraz Ricardo, Santarém Nuno, Santos Andreia F M, Jacinto Manuel L, Cordeiro-da-Silva Anabela, Prudêncio Cristina, Noronha João Paulo, Branco Luis C, Petrovski Željko
机构信息
Chemical and Biomolecular Sciences, School of Health, Polytechnic Institute of Porto, 4200-072 Porto, Portugal.
LAQV-REQUIMTE, Department of Chemistry and Biochemistry, Faculty of Sciences, University of Porto, 4169-007 Porto, Portugal.
出版信息
Antibiotics (Basel). 2022 Dec 19;11(12):1841. doi: 10.3390/antibiotics11121841.
Nowadays, organic salts and ionic liquids (OSILs) containing active pharmaceutical ingredients (APIs) are being explored as drug delivery systems in modern therapies (OSILs-API). In that sense, this work is focused on the development of novel OSILs-API based on amphotericin B through an innovative procedure and the evaluation of the respective biological activity against . Several ammonium, methylimidazolium, pyridinium and phosphonium organic cations combined with amphotericin B as anion were synthesized in moderate to high yields and high purities by the water-reduced buffer neutralization method. All prepared compounds were characterized to confirm the desired chemical structure and the specific optical rotation ([α]) was also determined. The biological assays performed on showed increased activity against this parasitic disease when compared with the starting chloride forms and amphotericin B alone, highlighting [P][AmB] as the most promising formulation. Possible synergism in the antiprotozoal activity was also evaluated for [P][AmB], since it was proven to be the compound with the highest toxicity. This work reported a simple synthetic method, which can be applied to prepare other organic salts based on molecules containing fragile chemical groups, demonstrating the potential of these OSILs-AmB as possible agents against leishmaniasis.
如今,含有活性药物成分(API)的有机盐和离子液体(OSILs)正被探索作为现代治疗中的药物递送系统(OSILs-API)。从这个意义上讲,这项工作专注于通过创新程序开发基于两性霉素B的新型OSILs-API,并评估其对……的相应生物活性。通过减水缓冲中和法以中等到高收率和高纯度合成了几种与作为阴离子的两性霉素B结合的铵、甲基咪唑鎓、吡啶鎓和鏻有机阳离子。对所有制备的化合物进行了表征以确认所需的化学结构,并测定了比旋光度([α])。对……进行的生物学试验表明,与起始氯化物形式和单独的两性霉素B相比,对这种寄生虫病的活性有所提高,突出了[P][AmB]作为最有前景的制剂。还对[P][AmB]的抗原生动物活性中可能的协同作用进行了评估,因为它被证明是毒性最高的化合物。这项工作报道了一种简单的合成方法,该方法可用于制备基于含有脆弱化学基团的分子的其他有机盐,证明了这些OSILs-AmB作为抗利什曼病可能药物的潜力。