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Modified Silicone Elastomer Vaginal Gels for Sustained Release of Antiretroviral HIV Microbicides

机译:修饰的有机硅弹性体阴道凝胶,用于持续释放抗逆转录病毒HIV杀微生物剂

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摘要

We previously reported nonaqueous silicone elastomer gels (SEGs) for sustained vaginal administration of the CCR5-targeted entry inhibitor maraviroc (MVC). Here, we describe chemically modified SEGs (h-SEGs) in which the hydrophobic cyclomethicone component was partially replaced with relatively hydrophilic silanol-terminated polydimethylsiloxanes (st-PDMS). MVC and emtricitabine (a nucleoside reverse transcriptase inhibitor), both currently under evaluation as topical microbicides to counter sexual transmission of human immunodeficiency virus type 1 (HIV-1), were used as model antiretroviral (ARV) drugs. Gel viscosity and in vitro ARV release were significantly influenced by st-PDMS molecular weight and concentration in the h-SEGs. Unexpectedly, gels prepared with lower molecular weight grades of st-PDMS showed higher viscosities. h-SEGs provided enhanced release over 24 h compared with aqueous hydroxyethylcellulose (HEC) gels, did not modify the pH of simulated vaginal fluid (SVF), and were shown to less cytotoxic than standard HEC vaginal gel. ARV solubility increased as st-PDMS molecular weight decreased (i.e., as percentage hydroxyl content increased), helping to explain the in vitro release trends. Dye ingression and SVF dilution studies confirmed the increased hydrophilicity of the h-SEGs. h-SEGs have potential for use in vaginal drug delivery, particularly for ARV-based HIV-1 microbicides.
机译:我们先前曾报道过非水有机硅弹性体凝胶(SEG),用于持续阴道给药的CCR5靶向进入抑制剂maraviroc(MVC)。在这里,我们描述了化学修饰的SEG(h-SEG),其中疏水环甲硅油组分被相对亲水的硅烷醇封端的聚二甲基硅氧烷(st-PDMS)部分取代。 MVC和恩曲他滨(一种核苷类逆转录酶抑制剂)目前都被评估为局部杀微生物剂,以抵抗人类1型免疫缺陷病毒(HIV-1)的性传播,被用作模型抗逆转录病毒(ARV)药物。凝胶粘度和体外ARV释放受到st-PDMS分子量和h-SEGs浓度的显着影响。出乎意料的是,以较低分子量的st-PDMS制备的凝胶显示出较高的粘度。与羟乙基纤维素(HEC)水性凝胶相比,h-SEG在24小时内提供增强的释放,不改变模拟阴道液(SVF)的pH,并且显示出比标准HEC阴道凝胶更低的细胞毒性。随着st-PDMS分子量的降低(即,随着羟基含量的增加),抗逆转录病毒的溶解度也会增加,这有助于解释体外释放的趋势。染料浸入和SVF稀释研究证实了h-SEG的亲水性增加。 h-SEG具有用于阴道给药的潜力,尤其是用于基于ARV的HIV-1杀微生物剂。

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