首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >In vitro release modulation from crosslinked pellets for site-specific drug delivery to the gastrointestinal tract. II. Physicochemical characterization of calcium-alginate, calcium-pectinate and calcium-alginate-pectinate pellets.
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In vitro release modulation from crosslinked pellets for site-specific drug delivery to the gastrointestinal tract. II. Physicochemical characterization of calcium-alginate, calcium-pectinate and calcium-alginate-pectinate pellets.

机译:交联药丸的体外释放调节,用于将特定部位的药物递送至胃肠道。二。海藻酸钙,果胶钙和海藻酸钙果胶粒的理化特性。

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摘要

Pellets of calcium-alginate, calcium-pectinate and calcium-alginate-pectinate were produced via crosslinking in an aqueous medium for site-specific drug delivery in the gastrointestinal tract. A comparative study of their physicochemical characteristics by means of texture analysis, modulated temperature differential scanning calorimetry (MTDSC), scanning electron microscopy and swelling dynamics under different pH conditions was undertaken. It was found that the incorporation of low methoxylated pectin (i.e., degree of methoxylation approximately 35%) together with alginate appears to influence the degree of crosslinking and subsequently the physical, mechanical and resilience behavior. In general, texture analysis of various pellets indicated that both strength and resilience profiles were in the order of calcium-alginate>/=calcium-alginate-pectinate>calcium-pectinate. Calcium-alginate pellets were found to be viscoelastic, while calcium-pectinate was highly brittle. Through the application of MTDSC, depolymerization transitions, reversing and non-reversing heat flow were determined and interpreted for each formulation. Scanning electron microscopy and micro-thermal analysis revealed distinct morphological differences in each case. The influence of and nature of crosslinking, and textural properties of such pellets on drug release rate modulation is discussed.
机译:海藻酸钙,果胶酸钙和海藻酸钙-果胶酸钙的粒料是通过在水性介质中交联产生的,以在胃肠道中进行定点给药。通过质地分析,调制温度差示扫描量热法(MTDSC),扫描电子显微镜和在不同pH条件下的溶胀动力学,对它们的理化特性进行了比较研究。发现低甲氧基化果胶(即,甲氧基化度约为35%)与藻酸盐的结合似乎影响交联度,进而影响物理,机械和回弹性行为。通常,各种丸粒的质构分析表明强度和回弹力曲线均按藻酸钙> / =藻酸钙-果胶钙>果胶钙的顺序排列。发现海藻酸钙丸粒是粘弹性的,而果胶钙钙是高度脆性的。通过MTDSC的应用,可以确定并解释每种配方的解聚转变,可逆和不可逆热流。扫描电子显微镜和微热分析揭示了每种情况下明显的形态差异。讨论了交联的性质和性质,以及这类颗粒对药物释放速率调节的影响。

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