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首页> 外文期刊>Pharmaceutical development and technology >In vitro and in vivo evaluation of a hydrogel-based prototype transdermal patch system of alfuzosin hydrochloride.
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In vitro and in vivo evaluation of a hydrogel-based prototype transdermal patch system of alfuzosin hydrochloride.

机译:基于水凝胶的盐酸阿夫唑嗪原型透皮贴剂系统的体外和体内评估。

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The first-line therapy for moderate to severe benign prostatic hyperplasia is the oral therapy by alfuzosin hydrochloride. Unfortunately, the oral therapy of alfuzosin is associated with several route-specific systemic side-effects. The current study was aimed to develop a prototype transdermal patch system for alfuzosin using a hydrogel polymer and optimize the drug delivery through the skin for systemic therapy. The prospective of different chemical enhancers (polyethylene glycol (PEG 400), isopropyl myristate, propylene glycol, menthol and L-methionine; 5% w/v) and iontophoresis (0.3 mA/cm(2)) in the alfuzosin delivery across the full thickness rat skin was assessed in vitro. In vivo iontophoretic studies were carried out using selected patch system (PEG 400) for a period of 6 h in Sprague-Dawley rats. Passive permeation studies indicated that the incorporation of chemical agents have moderate effect (~4- to 7-fold) on the alfuzosin skin permeability and reduced the lag time. Combined approach of iontophoresis with chemical enhancers significantly augmented the drug transport (~ 43- to 72-fold). In vivo pharmacokinetic parameters revealed that the iontophoresis (transdermal patch with PEG 400) significantly enhanced the C(max) (~ 3-fold) and AUC(0-α) (~ 4-fold), when compared to control. The current study concludes that the application of iontophoresis (0.3 mA/cm(2)) using the newly developed agaorse-based prototype patch with PEG 400 could be utilized for the successful delivery of alfuzosin by transdermal route.
机译:中度至重度前列腺增生症的一线治疗是盐酸阿夫唑嗪口服治疗。不幸的是,阿夫唑嗪的口服治疗与几种途径特异性的全身性副作用有关。当前的研究旨在使用水凝胶聚合物为阿夫唑嗪开发原型透皮贴剂系统,并优化通过皮肤的药物递送以进行全身治疗。在整个阿夫唑嗪递送中使用不同的化学促进剂(聚乙二醇(PEG 400),肉豆蔻酸异丙酯,丙二醇,薄荷醇和L-蛋氨酸; 5%w / v)和离子电渗疗法(0.3 mA / cm(2))在体外评估大鼠皮肤的厚度。在Sprague-Dawley大鼠中,使用选定的贴片系统(PEG 400)进行了6小时的体内离子电渗疗法研究。被动渗透研究表明,化学药剂的掺入对阿夫唑嗪的皮肤渗透性具有中等作用(约4至7倍),并减少了滞后时间。离子电渗疗法与化学增强剂的组合方法显着增强了药物转运(〜43到72倍)。体内药代动力学参数表明,与对照相比,离子电渗疗法(经PEG 400透皮贴剂)显着增强了C(max)(约3倍)和AUC(0-α)(约4倍)。当前的研究得出的结论是,使用新开发的基于agaorse的原型补丁和PEG 400进行离子电渗疗法(0.3 mA / cm(2))的应用可用于通过透皮途径成功递送阿夫唑嗪。

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