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Percutaneous absorption and brain distribution facilitation of borneol on tetramethylpyrazine in a microemulsion-based transdermal therapeutic system

机译:在基于微乳液的透皮治疗系统中四甲基吡嗪上冰片的经皮吸收和脑部分布促进

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摘要

In this study, we show that the percutaneous absorption and brain distribution of tetramethylpyrazine (TMP) is enhanced when combined with borneol (BN) in a microemulsion-based transdermal therapeutic system (ME-TTS). The formulation of the TMP and BN microemulsion (TEM-BN-ME) was optimized in skin permeation studies following a uniform experimental design. Male Sprague-Dawley rats were used for the pharmacokinetic and tissue distribution studies of TMP-BN-ME-TTS. In the pharmacokinetic study, the TMP-BN-ME-TTS treated rats had significantly higher (  C and AUC of TMP than the TMP-ME-TTS treated rats, indicating that BN improves the rate and extent of TMP percutaneous absorption. In the tissue distribution study, the AUC of TMP in brain was significantly higher in the TMP-BN-ME-TTS group (
机译:在这项研究中,我们表明,在基于微乳液的透皮治疗系统(ME-TTS)中,与冰片(BN)结合使用时,四甲基吡嗪(TMP)的经皮吸收和脑部分布得到增强。遵循统一的实验设计,TMP和BN微乳液(TEM-BN-ME)的配方在皮肤渗透研究中得到了优化。将雄性Sprague-Dawley大鼠用于TMP-BN-ME-TTS的药代动力学和组织分布研究。在药代动力学研究中,TMP-BN-ME-TTS处理的大鼠的TMP的C和AUC显着高于TMP-ME-TTS处理的大鼠,表明BN改善了TMP的经皮吸收速率和程度。分布研究表明,TMP-BN-ME-TTS组的脑中TMP的AUC显着较高(

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