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Effect of Mild Hyperthermia on Transdermal Absorption of Nicotine from Patches

机译:轻度热疗对斑块尼古丁透皮吸收的影响

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Application of heat (hyperthermic conditions) on skin is known to enhance drug transfer and facilitate skin penetration of molecules. The aim of this work was to study the effect of hyperthermia on the drug release and skin permeation from nicotine transdermal patches. The drug release and skin permeation were characterized by in vitro release test and in vitro permeation test. The temperature was maintained at 32 degrees C as control (simulating normal physiological skin temperature) and 42 degrees C as hyperthermia condition. The in vitro release test was carried out using USP apparatus 5-Paddle over disk method for a transdermal patch. Skin permeation study was carried out across porcine skin using the flow through cells (PermeGear, Inc.) with an active diffusion area of 0.94cm(2). Mechanistic studies (parameters such as partition coefficient, TEWL and electrical resistivity) were also performed to understand the mechanisms involved in determining the influence of hyperthermia on drug delivery from transdermal patches of nicotine. The rate and extent of drug release from nicotine patch was not significantly different at two temperatures (Cumulative release after 12h was 43.99 +/- 3.29% at 32 degrees C and 53.70 +/- 5.14% at 42 degrees C). Whereas, in case of in vitro permeation studies, the nicotine transdermal permeation flux for patch was threefold higher at 42 degrees C (100.1 +/- 14.83g/cm(2)/h) than at 32 degrees C (33.3 +/- 14.83g/cm(2)/h). The mechanistic studies revealed that the predominant mechanism of enhancement of drug permeation by hyperthermia condition is by the way of increasing the skin permeability. There is a potential concern of dumping of higher dose of nicotine via transdermal route.
机译:众所周知,热(高温条件)在皮肤上的应用来增强药物转移并促进分子的皮肤渗透。这项工作的目的是研究热疗对尼古丁透皮贴剂的药物释放和皮肤渗透的影响。通过体外释放试验和体外渗透测试的特征在于药物释放和皮肤渗透。将温度保持在32℃,以控制(模拟正常生理皮肤温度)和42℃作为热疗状态。使用USP装置5 - 焊接在透皮贴片的磁盘方法上进行体外释放试验。使用通过电池(PERBEGEER,INC.)的流动脉冲进行皮肤渗透研究,其活性扩散面积为0.94cm(2)。还进行了机械研究(诸如分区系数,TEWL和电阻率的参数)以了解确定热疗对来自尼古丁透皮斑块的药物递送的影响。在尼古丁贴片的速率和程度在两个温度下没有显着差异(12h后12小时后累积释放,在32℃和42℃下为53.70 +/- 5.14%)。然而,在体外渗透性研究的情况下,蛋白质透皮渗透通量在42℃(100.1 +/- 14.83g / cm(2)/ h)的32℃(33.3 +/- 14.83 g / cm(2)/ h)。机械研究表明,通过高温病症提高药物渗透的主要机制是通过增加皮肤渗透性的方式。通过透皮途径倾倒较高剂量的尼古丁存在潜在的担忧。

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