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Design and Evaluation of a Novel Felbinac Transdermal Patch: Combining Ion-Pair and Chemical Enhancer Strategy

机译:新型Felbinac透皮贴剂的设计和评估:结合离子对和化学增强剂策略

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摘要

The aim of this study was to design a novel felbinac (FEL) patch with significantly higher (P < 0.05) skin permeation amount than the commercial product SELTOUCH® using ion-pair and chemical enhancer strategy, overcoming the disadvantage of the large application area of SELTOUCH®. Six complexes of FEL with organic amines diethylamine (DEA), triethylamine (TEA), N-(2′-hydroxy-ethanol)-piperdine (HEPP), monoethanolamine (MEtA), diethanolamine (DEtA), and triethanolamine (TEtA) were prepared by ion-pair interaction, and their formation were confirmed by differential scanning calorimetry (DSC), powder X-ray diffraction (pXRD), infared spectroscopy (IR), and proton nuclear magnetic resonance spectroscopy (1H-NMR). Subsequently, the effect of ion-pair complexes and chemical enhancers were investigated through in vitro and in vivo experiments using rabbit abdominal skin. Results showed that FEL-TEA was the most potential candidate both in isopropyl palmitate (IPP) solution and transdermal patches. Combining use of 10% N-dodecylazepan-2-one (Azone), the optimized FEL-TEA patch achieved a flux of 18.29 ± 2.59 μg/cm2/h, which was twice the amount of the product SELTOUCH® (J = 9.18 ± 1.26 μg/cm2/h). Similarly, the area under the concentration curve from time 0 to time t (AUC0-t) in FEL-TEA patch group (15.94 ± 3.58 h.μg/mL) was also twice as that in SELTOUCH® group (7.31 ± 1.16 h.μg/mL). Furthermore, the in vitro skin permeation results of FEL-TEA patch was found to have a good correlation with the in vivo absorption results in rabbit. These findings indicated that a combination of ion-pair and chemical enhancer strategy could be useful in developing a novel transdermal patch of FEL.
机译:这项研究的目的是使用离子对和化学增强剂策略设计一种比商业产品SELTOUCH®显着更高的皮肤渗透量(P <0.05)的新型Felbinac(FEL)贴剂,克服了其大面积应用的缺点。 SELTOUCH®。制备了六种FEL与有机胺二乙胺(DEA),三乙胺(TEA),N-(2'-羟基-乙醇)-哌啶(HEPP),一乙醇胺(MEtA),二乙醇胺(DEtA)和三乙醇胺(TEtA)的配合物通过离子对相互作用,并通过差示扫描量热法(DSC),粉末X射线衍射(pXRD),红外光谱(IR)和质子核磁共振光谱( 1 H -NMR)。随后,使用兔腹部皮肤通过体外和体内实验研究了离子对络合物和化学增强剂的作用。结果表明,在棕榈酸异丙酯(IPP)溶液和透皮贴剂中,FEL-TEA都是最有潜力的候选者。优化的FEL-TEA贴剂与10%N-十二烷基十二烷-2-酮(Azone)结合使用可达到18.29±2.59μg/ cm 2 / h的通量,是通量的两倍。产品SELTOUCH®(J = 9.18±1.26μg/ cm 2 / h)。同样,FEL-TEA贴剂组从时间0到时间t的浓度曲线下面积(AUC0-t)(15.94±3.58h.μg/ mL)也是SELTOUCH®组(7.31±1.16 h)的两倍。微克/毫升)。此外,发现FEL-TEA贴剂的体外皮肤渗透结果与兔体内吸收结果具有良好的相关性。这些发现表明,离子对和化学增强剂策略的结合可能对开发新型的FEL透皮贴剂有用。

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