Division of Pharmaceutical Sciences, School of Pharmacy, University of Missouri-Kansas City, Kansas City, Missouri 64108, USA.
J Pharm Sci. 2012 Sep;101(9):3249-63. doi: 10.1002/jps.23140. Epub 2012 Apr 12.
Cidofovir (CDF) and its cyclic analogue (cCDF) have shown potential in vitro and in vivo antiviral activity against cytomegalovirus (CMV) retinitis. However, hydrophilic nature of CDF may affect cell permeation across lipophilic epithelium and thus limit its effectiveness in the treatment of CMV retinitis. In the present study, we have tested a novel hypothesis, which involves chemical derivatization of cCDF into lipophilic transporter-targeted prodrug [via conjugation with different carbon chain length of lipid raft and targeting moiety (biotin) for sodium-dependent multivitamin transporter (SMVT)]. We have synthesized and characterized three derivatives of cCDF including biotin B-C2-cCDF, B-C6-cCDF, and B-C12-cCDF. Physicochemical properties such as solubility, partition coefficient (n-octanol/water and ocular tissue), bioreversion kinetics, and interaction with SMVT transporter have been determined. Among these novel conjugates, B-C12-cCDF has shown higher interaction to SMVT transporter with lowest half maximal inhibitory concentration value, higher cellular accumulation, and high tissue partitioning. Improvement in physicochemical properties, lipophilicity, and interaction with transporter was observed in the trend of increasing the lipid chain length, that is, B-C12-cCDF > B-C6-cCDF > B-C2-cCDF. These results indicate that transporter-targeted lipid analogue of cCDF exhibits improved cellular accumulation along with higher transporter affinity and hence could be a viable strategy for the treatment of CMV retinitis.
西多福韦(CDF)及其环类似物(cCDF)已显示出在体外和体内抗巨细胞病毒(CMV)视网膜炎的潜在抗病毒活性。然而,CDF 的亲水性可能会影响亲脂上皮细胞的细胞渗透,从而限制其在 CMV 视网膜炎治疗中的有效性。在本研究中,我们测试了一个新的假设,即通过将 cCDF 化学衍生化为亲脂性转运体靶向前药[通过与不同碳链长度的脂质筏和靶向部分(生物素)与钠依赖性多种维生素转运体(SMVT)连接]。我们已经合成并表征了三种 cCDF 衍生物,包括生物素 B-C2-cCDF、B-C6-cCDF 和 B-C12-cCDF。已经确定了物理化学性质,如溶解度、分配系数(正辛醇/水和眼部组织)、生物转化动力学以及与 SMVT 转运体的相互作用。在这些新的缀合物中,B-C12-cCDF 与 SMVT 转运体的相互作用最强,半数最大抑制浓度值最低,细胞内积累更高,组织分配更高。观察到物理化学性质、亲脂性和与转运体相互作用的改善呈增加脂质链长度的趋势,即 B-C12-cCDF>B-C6-cCDF>B-C2-cCDF。这些结果表明,cCDF 的转运体靶向脂质类似物表现出改善的细胞积累,同时具有更高的转运体亲和力,因此可能是治疗 CMV 视网膜炎的可行策略。