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新型抗真菌化合物:助溶、胶束化和络合作用对溶解度及渗透过程的影响

New Antifungal Compound: Impact of Cosolvency, Micellization and Complexation on Solubility and Permeability Processes.

作者信息

Volkova Tatyana V, Simonova Olga R, Perlovich German L

机构信息

Gennady Alekseevich Krestov Institute of Solution Chemistry of the Russian Academy of Sciences, 153045 Ivanovo, Russia.

出版信息

Pharmaceutics. 2021 Nov 4;13(11):1865. doi: 10.3390/pharmaceutics13111865.

Abstract

Poor solubility of new antifungal of 1,2,4-triazole class (S-119)-a structural analogue of fluconazole in aqueous media was estimated. The solubility improvement using different excipients: biopolymers (PEGs, PVP), surfactants (Brij S20, pluronic F-127) and cyclodextrins (α-CD, β-CD, 2-HP-β-CD, 6-O-Maltosyl-β-CD) was assessed in buffer solutions pH 2.0 and pH 7.4. Additionally, 2-HP-β-CD and 6-O-Maltosyl-β-CD were proposed as promising solubilizers for S-119. According to the solubilization capacity and micelle/water partition coefficients in buffer pH 7.4 pluronic F-127 was shown to improve S-119 solubility better than Brij S20. Among biopolymers, the greatest increase in solubility was shown in PVP solutions (pH 7.4) at concentrations above 4 /%. Complex analysis of the driving forces of solubilization, micellization and complexation processes matched the solubility results and suggested pluronic F-127 and 6-O-Maltosyl-β-CD as the most effective solubilizing agents for S-119. The comparison of S-119 diffusion through the cellulose membrane and lipophilic PermeaPad barrier revealed a considerable effect of the lipid layer on the decrease in the permeability coefficient. According to the PermeaPad, S-119 was classified as a highly permeated substance. The addition of 1.5 /% CDs in donor solution moves it to low-medium permeability class.

摘要

评估了新型1,2,4-三唑类抗真菌药(S-119)——氟康唑的结构类似物在水性介质中的低溶解度。在pH 2.0和pH 7.4的缓冲溶液中,评估了使用不同辅料(生物聚合物(聚乙二醇、聚乙烯吡咯烷酮)、表面活性剂(月桂醇聚醚S20、普朗尼克F-127)和环糊精(α-环糊精、β-环糊精、2-羟丙基-β-环糊精、6-O-麦芽基-β-环糊精)来提高溶解度的情况。此外,提出2-羟丙基-β-环糊精和6-O-麦芽基-β-环糊精是S-119有前景的增溶剂。根据在pH 7.4缓冲液中的增溶能力和胶束/水分配系数,结果表明普朗尼克F-127比月桂醇聚醚S20能更好地提高S-119的溶解度。在生物聚合物中,聚乙烯吡咯烷酮溶液(pH 7.4)在浓度高于4%时溶解度增加最大。对增溶、胶束化和络合过程驱动力的综合分析与溶解度结果相符,并表明普朗尼克F-127和6-O-麦芽基-β-环糊精是S-119最有效的增溶剂。S-119通过纤维素膜和亲脂性PermeaPad屏障的扩散比较显示,脂质层对渗透系数降低有显著影响。根据PermeaPad,S-119被归类为高渗透性物质。在供体溶液中添加1.5%的环糊精会使其变为低-中渗透性类别。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e2d/8621413/0f74da539ce0/pharmaceutics-13-01865-g001.jpg

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