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Physiologically‐based pharmacokinetic model of vaginally administered dapivirine ring and film formulations

机译:基于生理学施用的Dapivirine环和薄膜配方的药代动力学模型

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Aims A physiologically‐based pharmacokinetic (PBPK) model of the vaginal space was developed with the aim of predicting concentrations in the vaginal and cervical space. These predictions can be used to optimize the probability of success of vaginally administered dapivirine (DPV) for HIV prevention. We focus on vaginal delivery using either a ring or film. Methods A PBPK model describing the physiological structure of the vaginal tissue and fluid was defined mathematically and implemented in MATLAB. Literature reviews provided estimates for relevant physiological and physiochemical parameters. Drug concentration–time profiles were simulated in luminal fluids, vaginal tissue and plasma after administration of ring or film. Patient data were extracted from published clinical trials and used to test model predictions. Results The DPV ring simulations tested the two dosing regimens and predicted PK profiles and area under the curve of luminal fluids (29?079 and 33?067?mg?h?l –1 in groups A and B, respectively) and plasma (0.177 and 0.211?mg?h?l –1 ) closely matched those reported (within one standard deviation). While the DPV film study reported drug concentration at only one time point per patient, our simulated profiles pass through reported concentration range. Conclusions HIV is a major public health issue and vaginal microbicides have the potential to provide a crucial, female‐controlled option for protection. The PBPK model successfully simulated realistic representations of drug PK. It provides a reliable, inexpensive and accessible platform where potential effectiveness of new compounds and the robustness of treatment modalities for pre‐exposure prophylaxis can be evaluated.
机译:目的是一种基于生理学的药代动力学(PBPK)模型的阴道空间的目的是预测阴道和宫颈空间中的浓度。这些预测可用于优化阴道施用的Dapivirine(DPV)的成功概率,用于艾滋病毒预防。我们使用戒指或胶片专注于阴道递送。方法使用描述阴道组织和液体的生理结构的PBPK模型在数学上定义,并在Matlab中实施。文献综述提供了相关生理和生理学参数的估计。在施用环或薄膜后,在腔内,阴道组织和血浆中模拟药物浓度 - 时间曲线。从已发表的临床试验中提取患者数据并用于测试模型预测。结果DPV环仿真测试了腔液曲线下的两个计量方案和预测的PK型材和面积(分别为A和B分别为A和B组中的曲线(29. 079和33〜067?Mg?H = 1)(0.177和0.211?mg?h?l -1)与报告的那些(在一个标准偏差范围内)紧密匹配。虽然DPV薄膜研究报告每位患者仅一次的药物浓度,但我们的模拟型材通过报告的浓度范围。结论艾滋病毒是一个主要的公共卫生问题,阴道杀菌剂有可能提供一个关键,女性控制的保护选择。 PBPK模型成功模拟了药物PK的逼真表示。它提供了可靠,廉价且可访问的平台,可以评估新化合物的潜在有效性和对预曝光预防的治疗方式的稳健性。

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