首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Controlled nail delivery of a novel lipophilic antifungal agent using various modern drug carrier systems as well as in vitro and ex vivo model systems
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Controlled nail delivery of a novel lipophilic antifungal agent using various modern drug carrier systems as well as in vitro and ex vivo model systems

机译:使用各种现代药物载体系统以及体外和离体模型系统,可控制指甲递送新型亲脂性抗真菌剂

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摘要

The penetration behavior into human nails and animal hoof membranes of a novel antifungal agent (EV-086K) for the treatment of onychomycosis was investigated in this study. The new drug provides a high lipophilicity which is adverse for penetration into nails. Therefore, four different formulations were developed, with particular focus on a colloidal carrier system (CCS) due to its penetration enhancing properties. On the one hand, ex vivo penetration experiments on human nails were performed. Afterwards the human nail plateswere cut by cryomicrotomein order to quantify the drug concentration in the dorsal, intermediate and ventral nail layer using high-performance liquid chromatography (HPLC) with UV detection. On the other hand, equine and bovine hoof membranes were used to determine the in vitro penetration of the drug into the acceptor compartment of an online diffusion cell coupled with Fourier transform infrared attenuated total reflectance (FTIR-ATR) spectroscopy. In combination, both results should exhibit a correlation between the EV-086K penetration behavior in human nail plates and animal hoof membranes. The investigations showed that the developed CCS could increase drug delivery through the human nail most compared to other formulations (nail lacquer, solution and hydrogel). Using animal hooves in the online diffusion cell, we were able to calculate pharmacokinetic data of the penetration process, especially diffusion and permeability coefficients. Finally, a qualitative correlation between the penetration results of human nails and equine hooves was established.
机译:在这项研究中研究了一种新型的抗真菌药(EV-086K)在人指甲和动物蹄膜中的渗透行为。新药具有很高的亲脂性,这不利于渗透到指甲中。因此,开发了四种不同的制剂,由于其渗透增强特性,特别着重于胶体载体系统(CCS)。一方面,进行了对人指甲的离体渗透实验。然后,用低温切片刀切开人的指甲板,以使用高效液相色谱(HPLC)和紫外线检测技术对背,中间和腹侧指甲层中的药物浓度进行定量。另一方面,马和牛蹄膜被用于确定药物在体外扩散到在线扩散池的受体隔室中,并与傅里叶变换红外衰减全反射(FTIR-ATR)光谱相结合。结合起来,这两个结果都应显示EV-086K在人指甲板和动物蹄膜中的渗透行为之间的相关性。研究表明,与其他配方(指甲油,溶液和水凝胶)相比,已开发的CCS可以最大程度地提高通过人类指甲的药物递送。使用在线扩散池中的动物蹄,我们能够计算出渗透过程的药代动力学数据,尤其是扩散系数和渗透系数。最后,建立了人类指甲和马蹄的穿透结果之间的定性相关性。

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