Dreassi Elena, Zizzari Alessandra Tania, D'Arezzo Silvia, Visca Paolo, Botta Maurizio
Dipartimento Farmaco Chimico Tecnologico, Università degli Studi di Siena, via A. Moro 2, Siena I-53100, Italy.
J Pharm Biomed Anal. 2007 Mar 12;43(4):1499-506. doi: 10.1016/j.jpba.2006.10.029. Epub 2006 Dec 1.
Guazatine is a non-systemic contact fungicide, a mixture of reaction products from polyamines, comprising mainly octa-methylenediamine, iminodi(octamethylene)diamine, octamethylenebis(imino-octamethylene) diamine and carbamonitrile. In this work, the analysis of guazatine mixture by LC and LC-MS has been treated for the first time. In the guazatine mixture diamine derivatives account for 40% of the constituents of guazatine, triamines for 46%, tetramines for 11% and other amine derivatives for 3%. The most abundant individual components are the fully guanidated triamine (GGG, 30.6%) and the fully guanidated diamine (GG, 29.5%) followed by the monoguanidated diamine (GN, 9.8%) and a diguanidated triamine (GGN, 8.1%). The identification and separation of main components of commercial guazatine was performed through a new LC-MS method. The separation was performed on an Alltima C(18) column using linear gradient elution (formic acid in water and acetonitrile) with UV-detection at 200 nm and the identification was performed by ESI(+)-mass spectrometry analysis. The main components (GN, GG, GNG, GGN, GGG and GGGG) were then purified and separated from the mixture. Antimycotic activity of guazatine derivatives was determined on different species and strains belonging to genus Candida. The results obtained suggest that GNG and GGGG components can further be developed in new antifungal compounds with high potential for the treatment of Candida infections.
多果定是一种非内吸性接触杀菌剂,是多胺反应产物的混合物,主要成分包括八亚甲基二胺、亚氨基二(八亚甲基)二胺、八亚甲基双(亚氨基 - 八亚甲基)二胺和氨基腈。在本研究中,首次对多果定混合物进行了液相色谱(LC)和液相色谱 - 质谱联用(LC - MS)分析。在多果定混合物中,二胺衍生物占多果定成分的40%,三胺占46%,四胺占11%,其他胺衍生物占3%。含量最高的单一成分是完全胍基化的三胺(GGG,30.6%)和完全胍基化的二胺(GG,29.5%),其次是单胍基化二胺(GN,9.8%)和双胍基化三胺(GGN,8.1%)。通过一种新的LC - MS方法对市售多果定的主要成分进行了鉴定和分离。分离在Alltima C(18)柱上进行,采用线性梯度洗脱(水和乙腈中的甲酸),在200 nm处进行紫外检测,鉴定通过电喷雾电离(ESI(+))质谱分析进行。然后从混合物中纯化并分离出主要成分(GN、GG、GNG、GGN、GGG和GGGG)。测定了多果定衍生物对不同念珠菌属物种和菌株的抗真菌活性。所得结果表明,GNG和GGGG成分可进一步开发为具有治疗念珠菌感染高潜力的新型抗真菌化合物。