Laboratory for Pharmacotechnology and Biopharmacy, KU Leuven, Belgium.
Antiviral Res. 2012 Nov;96(2):226-33. doi: 10.1016/j.antiviral.2012.09.011. Epub 2012 Sep 20.
In the search for an effective anti-HIV microbicidal gel, limited drug penetration into the vaginal submucosa is a possible reason for failed protection against HIV transmission. To address this issue in early development, we here describe a simple in vitro strategy to predict the tissue permeation potential of vaginally applied drugs, based on solubility, permeability and flux assessment. We demonstrated this approach for four model microbicides (tenofovir, darunavir, saquinavir mesylate and dapivirine) and additionally examined the influence of formulation excipients on the permeation potential. When formulated in an aqueous-based HEC gel, high flux values across an HEC-1A cell layer were reached by tenofovir, as a result of its high aqueous solubility. In contrast, saquinavir and dapivirine fluxes remained low due to poor permeability and solubility, respectively. These low fluxes suggest limited in vivo tissue penetration, possibly leading to lack of efficacy. Dapivirine fluxes, however, could be enhanced up to 30-fold, by including formulation excipients such as polyethylene glycol 1000 (20%) or cyclodextrins (5%) in the HEC gels. Alternative formulations, i.e. emulsions or silicone elastomer gels, were less effective in flux enhancement compared to cyclodextrin-HEC gels. In conclusion, implementing the proposed solubility and permeability profiling in early microbicide development may contribute to the successful selection of promising microbicide candidates and appropriate formulations.
在寻找有效的抗 HIV 杀微生物凝胶的过程中,药物有限地渗透到阴道粘膜下层可能是阻止 HIV 传播失败的一个原因。为了解决早期开发中的这个问题,我们在这里描述了一种简单的体外策略,用于根据溶解度、渗透性和通量评估来预测阴道应用药物的组织渗透潜力。我们用四种模型杀微生物剂(替诺福韦、达芦那韦、硫酸沙奎那韦和地匹福林)验证了这种方法,并进一步研究了制剂辅料对渗透潜力的影响。当用在基于水的 HEC 凝胶中时,由于替诺福韦的高水溶性,使其在 HEC-1A 细胞层上达到了很高的通量值。相比之下,由于渗透性和溶解度差,硫酸沙奎那韦和地匹福林的通量仍然很低。这些低通量表明体内组织渗透有限,可能导致缺乏疗效。然而,通过在 HEC 凝胶中加入制剂辅料如聚乙二醇 1000(20%)或环糊精(5%),地匹福林的通量可以增强 30 倍。与环糊精-HEC 凝胶相比,替代制剂,即乳液或硅酮弹性体凝胶,在通量增强方面效果较差。总之,在早期杀微生物剂开发中实施所提出的溶解度和渗透性分析方法可能有助于成功选择有前途的杀微生物剂候选物和合适的制剂。