Marangoci Narcisa, Mares Mihai, Silion Mihaela, Fifere Adrian, Varganici Cristian, Nicolescu Alina, Deleanu Calin, Coroaba Adina, Pinteala Mariana, Simionescu Bogdan C
Centre of Advanced Research in Bionanoconjugates and Biopolymers, "Petru Poni" Institute of Macromolecular Chemistry, 41A Aleea Grigore Ghica-Voda, 700487 Iasi, Romania.
Laboratory of Antimicrobial Chemotherapy, Department of Public Health, "Ion Ionescu de la Brad" University, 8 Aleea Sadoveanu, 700489 Iasi, Romania.
Results Pharma Sci. 2011 Aug 1;1(1):27-37. doi: 10.1016/j.rinphs.2011.07.001. eCollection 2011 May.
A novel inclusion complex of the propiconazole nitrate (NO3PCZ) with β-cyclodextrin (β-CD) was prepared by treatment of propiconazole (PCZ) with an acidic nitrating agent. The formation of NO3PCZ and its inclusion complex with β-CD has been studied by NMR, ESI-MS, TGA, DSC methods. Using the undecoupled signal in the HMBC correlation spectra, almost identical coupling constants of CH from trizolic ring of PCZ and NO3PCZ compounds ((1)J(HC)3=207 Hz, (1)J(CH)5=214 Hz, for PCZ; (1)J(HC)3=208 Hz and (1)J(CH)5=215 Hz, for NO3PCZ) were determined, confirming that the geometry of the heterocyclic skeleton is identical in both the forms. The 1:1 stoichiometry of the complex was determined by ESI-MS and was confirmed using Scott's equation in DMSO and Higuchi and Connors equation in water. The solubility curve obtained for NO3PCZ in presence of β-CD in distilled water was constructed, resulting in a solubility diagram of AL type. Solubility of NO3PCZ in water was determined by DLS studies. The results showed that NO3PCZ was encapsulated within the β-CD cavity with a binding constant of 330 M-1 in DMSO and 975 M-1 in water. Preliminary pharmacological studies showed higher antifungal activities for NO3PCZ and its inclusion complex, compared with its PCZ analog. The acute toxicity of the complex is smaller than the pure or modified drug, recommending the inclusion complex as future promising therapeutic agents.
通过用酸性硝化剂处理丙环唑(PCZ)制备了新型的硝酸丙环唑(NO3PCZ)与β-环糊精(β-CD)的包合物。采用核磁共振(NMR)、电喷雾电离质谱(ESI-MS)、热重分析(TGA)、差示扫描量热法(DSC)等方法研究了NO3PCZ及其与β-CD包合物的形成。利用HMBC相关谱中的非去耦信号,测定了PCZ和NO3PCZ化合物三唑环上CH的几乎相同的耦合常数(对于PCZ,(1)J(HC)3 = 207 Hz,(1)J(CH)5 = 214 Hz;对于NO3PCZ,(1)J(HC)3 = 208 Hz,(1)J(CH)5 = 215 Hz),证实了两种形式的杂环骨架几何结构相同。通过ESI-MS确定了配合物的1:1化学计量比,并使用DMSO中的斯科特方程以及水中的 Higuchi 和康纳斯方程进行了验证。构建了在蒸馏水中β-CD存在下NO3PCZ的溶解度曲线,得到了AL型溶解度图。通过动态光散射(DLS)研究测定了NO3PCZ在水中的溶解度。结果表明,NO3PCZ被包封在β-CD腔内,在DMSO中的结合常数为330 M-1,在水中为975 M-1。初步药理研究表明与PCZ类似物相比,NO3PCZ及其包合物具有更高的抗真菌活性。该配合物的急性毒性小于纯药物或改性药物推荐该包合物作为未来有前景的治疗剂。