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抗逆转录病毒药物在宫颈阴道黏膜的渗透性综合研究:体外模型

Comprehensive Study of Antiretroviral Drug Permeability at the Cervicovaginal Mucosa an In Vitro Model.

作者信息

Carserides Constandinos, Smith Kieron, Zinicola Marta, Kumar Abhinav, Swedrowska Magda, Scala Carlo, Cameron Gary, Riches Zoe, Iannelli Francesco, Pozzi Gianni, Hold Georgina L, Forbes Ben, Kelly Charles, Hijazi Karolin

机构信息

Centre for Host Microbiome Interactions, King's College London, London SE1 9NH, UK.

Institute of Pharmaceutical Science, King's College London, London SE1 9NH, UK.

出版信息

Pharmaceutics. 2022 Sep 13;14(9):1938. doi: 10.3390/pharmaceutics14091938.

Abstract

Modulation of drug transporter activity at mucosal sites of HIV-1 transmission may be exploited to optimize retention of therapeutic antiretroviral drug concentrations at target submucosal CD4+ T cells. Previously, we showed that darunavir was a substrate for the P-glycoprotein efflux drug transporter in colorectal mucosa. Equivalent studies in the cervicovaginal epithelium have not been reported. Here, we describe the development of a physiologically relevant model to investigate the permeability of antiretroviral drugs across the vaginal epithelium. Barrier properties of the HEC-1A human endometrial epithelial cell line were determined, in a dual chamber model, by measurement of transepithelial electrical resistance, immunofluorescent staining of tight junctions and bi-directional paracellular permeability of mannitol. We then applied this model to investigate the permeability of tenofovir, darunavir and dapivirine. Efflux ratios indicated that the permeability of each drug was transporter-independent in this model. Reduction of pH to physiological levels in the apical compartment increased absorptive transfer of darunavir, an effect that was reversed by inhibition of MRP efflux transport MK571. Thus, low pH may increase the transfer of darunavir across the epithelial barrier increased MRP transporter activity. In a previous in vivo study in the macaque model, we demonstrated increased MRP2 expression following intravaginal stimulation with darunavir which may further increase drug uptake. Stimulation with inflammatory modulators had no effect on drug permeability across HEC-1A barrier epithelium but, in the VK2/E6E7 vaginal cell line, increased expression of both efflux and uptake drug transporters which may influence darunavir disposition.

摘要

调节HIV-1传播黏膜部位的药物转运体活性,可能有助于优化治疗性抗逆转录病毒药物在靶黏膜下CD4+ T细胞处的浓度维持。此前,我们发现达芦那韦是结肠黏膜中P-糖蛋白外排药物转运体的底物。关于宫颈阴道上皮的等效研究尚未见报道。在此,我们描述了一种用于研究抗逆转录病毒药物跨阴道上皮渗透性的生理相关模型的建立。在双室模型中,通过测量跨上皮电阻、紧密连接的免疫荧光染色以及甘露醇的双向细胞旁通透性,确定了HEC-1A人子宫内膜上皮细胞系的屏障特性。然后我们应用该模型研究替诺福韦、达芦那韦和地瑞那韦的通透性。外排率表明,在该模型中每种药物的通透性均与转运体无关。将顶端腔室的pH降低至生理水平可增加达芦那韦的吸收转运,这种效应可被MRP外排转运抑制剂MK571逆转。因此,低pH可能会增加达芦那韦跨上皮屏障的转运——增加MRP转运体活性。在之前对猕猴模型的体内研究中,我们证明了经阴道给予达芦那韦刺激后MRP2表达增加,这可能会进一步增加药物摄取。用炎症调节剂刺激对药物跨HEC-1A屏障上皮的通透性没有影响,但在VK2/E6E7阴道细胞系中,外排和摄取药物转运体的表达均增加,这可能会影响达芦那韦的处置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/699d/9504208/ceb7e5c10b05/pharmaceutics-14-01938-g001.jpg

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