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Evaluation of the Factors Contributing to Levonorgestrel Binding in Addition Cure Silicone Elastomer Vaginal Rings

机译:评价加成固化有机硅弹性体阴道环中左炔诺孕酮结合的因素

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摘要

Background: Following progress of the dapivirine (DPV)-releasing silicone elastomer (SE) vaginal ring (VR) into Phase III clinical studies, there is now interest in developing next-generation rings that additionally provide contraception. Levonorgestrel (LNG) is a safe and effective progestin that is being widely considered for use as a hormonal contraceptive agent in future multipurpose prevention technology (MPT) products. Although LNG has previously been incorporated into various controlled release SE devices, minimal attention has focused on its propensity to irreversibly react with addition cure SE systems. Here, for the first time, we investigate this LNG binding phenomenon and outline strategies for overcoming it.Methods: VRs containing various loadings of DPV and LNG were manufactured and in vitro release assessed. Different LNG-only SE samples were also prepared to assess the following parameters: (i) addition cure vs. condensation cure SEs; (ii) different types of addition cure SEs; (iii) mixing time, (iv) cure temperature, (v) cure time; and (vi) LNG particle size. After manufacture, the LNG-only samples were assayed for total drug content using a solvent extraction method. The SE curing reaction and the LNG binding reaction was probed using nuclear magnetic resonance (NMR) spectroscopy. Results:Under certain drug/formulation/processing conditions, LNG was not recoverable from VRs. Further studies using non-ring samples showed that: (a) the phenomenon was only observed with addition cure SEs (and not condensation cure SEs); (b) the extent of binding was dependent upon the type of addition cure SE; (c) micronised LNG showed significantly greater binding than non-micronised LNG; (d) the extent of binding correlated with increased mixing time, cure time and cure temperature.Conclusions: Careful control of the API characteristics, the SE composition, and the manufacturing conditions will be necessary to establish a practical VR formulation for controlled release of LNG.
机译:背景:随着释放达匹维林(DPV)的有机硅弹性体(SE)阴道环(VR)进入III期临床研究的进展,现在人们对开发能够提供避孕功能的下一代环感兴趣。左炔诺孕酮(LNG)是一种安全有效的孕激素,被广泛认为是未来多用途预防技术(MPT)产品中的激素避孕药。尽管LNG以前已被合并到各种控释SE设备中,但对它与加成硫化SE系统不可逆地反应的倾向的关注却很少。在这里,我们首次研究了这种LNG结合现象,并概述了克服该现象的方法。方法:制造了包含DPV和LNG各种负载的VR,并评估了其体外释放。还准备了不同的仅LNG的SE样品,以评估以下参数:(i)加成硫化vs.缩合硫化SEs; (ii)不同类型的加成硫化SEs; (iii)混合时间,(iv)固化温度,(v)固化时间; (vi)LNG粒径。生产后,使用溶剂提取方法对仅LNG的样品进行总药物含量分析。使用核磁共振(NMR)光谱探测SE固化反应和LNG结合反应。结果:在某些药物/制剂/加工条件下,LNG无法从VR中回收。使用无环样品进行的进一步研究表明:(a)仅在加成固化SE时才观察到该现象(而非缩合固化SE时); (b)结合程度取决于加成固化SE的类型; (c)微粉化的液化天然气显示出比非粉化的液化天然气更大的结合力; (d)结合程度与混合时间,固化时间和固化温度的增加有关。结论:仔细控制API特性,SE组成和制造条件对于建立可控的LNG液化VR配方将是必要的。

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