首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >Plasticization and antiplasticization of an acrylic pressure sensitive adhesive by ibuprofen and their effect on the adhesion properties
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Plasticization and antiplasticization of an acrylic pressure sensitive adhesive by ibuprofen and their effect on the adhesion properties

机译:布洛芬对丙烯酸压敏胶的增塑和抗增塑作用及其对粘合性能的影响

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摘要

In transdermal patches, an unpredictable alteration of the mechanical behavior of the pressure sensitive adhesive (PSA) can occur if a drug is added. In the present study, the suitability of Dynamic Mechanical Analysis (DMA)/Dynamic Mechanical Thermal Analysis (DMTA) as methodologies to detect the change in adhesion properties caused by the addition of an API was examined. With DMA/DMTA, time- and temperature-dependent viscoelastic properties were determined. Tack and shear adhesion of blends of the acrylic adhesive DuroTak? 87-4287 and ibuprofen at increasing concentrations were investigated. Interestingly, the probe tack test showed highest values at 1% ibuprofen concentration in the PSA and decreasing values with increasing ibuprofen concentrations. The shear adhesion of the PSA was decreased at all investigated ibuprofen concentrations. With DMA/DMTA, it could be demonstrated that antiplasticization and plasticization are responsible for the change in tack. The main reason for the decrease in shear adhesion is a shift of the Tg to lower temperatures, while antiplasticization only has a marginal effect. The term "antiplasticizing space" was introduced because antiplasticization depends on time, temperature, stress, strain, and API concentration. In general, this antiplasticizing space can have an impact on processing, stability, and in vivo behavior of API/polymer blends in drug formulations.
机译:在透皮贴剂中,如果添加药物,可能会导致压敏粘合剂(PSA)的机械性能发生不可预测的变化。在本研究中,研究了动态力学分析(DMA)/动态力学热分析(DMTA)作为检测由添加API引起的粘合性能变化的方法的适用性。使用DMA / DMTA,可以确定随时间和温度变化的粘弹性。丙烯酸粘合剂DuroTak的共混物的粘性和剪切性?研究了87-4287和布洛芬浓度不断增加的情况。有趣的是,探针粘性试验在PSA中布洛芬浓度为1%时显示出最高值,而随着布洛芬浓度的增加而降低。在所有研究的布洛芬浓度下,PSA的剪切粘合力均降低。使用DMA / DMTA,可以证明抗增塑和增塑是粘性变化的原因。剪切粘合力降低的主要原因是Tg转移到较低的温度,而抗塑化仅具有边际作用。引入术语“抗塑空间”是因为抗塑作用取决于时间,温度,应力,应变和API浓度。通常,该抗增塑空间可对药物制剂中API /聚合物共混物的加工,稳定性和体内行为产生影响。

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