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首页> 外文期刊>International Journal of Pharmaceutics >The synthesis of novel pH-sensitive poly(vinyl alcohol) composite hydrogels using a freeze/thaw process for biomedical applications.
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The synthesis of novel pH-sensitive poly(vinyl alcohol) composite hydrogels using a freeze/thaw process for biomedical applications.

机译:使用生物医学应用中的冷冻/解冻工艺合成新型pH敏感的聚乙烯醇复合水凝胶。

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Physically cross-linked hydrogels composed of 75% poly(vinyl alcohol) PVA and 25% poly(acrylic acid) were prepared by a freeze/thaw treatment of aqueous solutions. Between 0.5 and 1wt% of aspirin was incorporated into the systems. The purpose of the research was the development of a novel pH-sensitive hydrogel composite for the delivery of aspirin to wounds. Extensive research has being conducted on freeze/thaw poly(vinyl alcohol) hydrogels for use in active pharmaceutical ingredient (API) delivery. However very little research has been reported on the effects of an API on the overall properties of a freeze/thaw hydrogel. From the rheological analysis undertaken it was apparent that aspirin has a limiting effect on the formation of hydrogen bonding leading to hydrogels with reduced mechanical strength. To counteract this, a novel hydrogel system was developed encompassing a reinforcing film in the centre of the hydrogels. Freezing profiles were obtained to gain a better knowledge of the freezing behaviour of the hydrogels during the formation stage. Thermograms obtained from modulated differential scanning calorimetry (MDSC) indicated that the aspirin lowered the glass transition temperatures (T(g)) of the constituent polymers. The pH-sensitive nature of the hydrogels was apparent from solvent uptake studies carried out. Increasing alkaline media led to a greater degree of swelling due to increased ionisation of PAA. The hydrogels exhibited non-Fickian release kinetics. The release rates were relatively slow with total release achieved at between 30 and 40 h. The quantity of drug incorporated was found to influence the release rates considerably.
机译:通过水溶液的冷冻/融化处理,制备了由75%的聚乙烯醇PVA和25%的聚丙烯酸组成的物理交联的水凝胶。系统中掺入了0.5-1wt%的阿司匹林。该研究的目的是开发一种新型的pH敏感水凝胶复合材料,用于将阿司匹林递送至伤口。已经对用于活性药物成分(API)递送的冷冻/融化聚乙烯醇水凝胶进行了广泛的研究。然而,关于API对冷冻/融化水凝胶的总体性质的影响的报道很少。从进行的流变学分析中可以明显看出,阿司匹林对氢键形成的作用有限,导致水凝胶的机械强度降低。为了解决这个问题,开发了一种新颖的水凝胶系统,该系统在水凝胶的中央包含增强膜。获得了冻结曲线,以更好地了解水凝胶在形成阶段的冻结行为。从调制差示扫描量热法(MDSC)获得的热谱图表明,阿司匹林降低了组成聚合物的玻璃化转变温度(T(g))。从进行的溶剂吸收研究中可以明显看出水凝胶对pH敏感。由于PAA的电离增加,碱性介质的增加导致更大程度的溶胀。水凝胶表现出非菲克式的释放动力学。释放速度相对较慢,总释放时间在30至40小时之间。发现掺入的药物的量显着影响释放速率。

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