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戊二醛对基于可生物降解果胶的制剂中白藜芦醇体内结肠特异性释放的影响。

Impact of glutaraldehyde on in vivo colon-specific release of resveratrol from biodegradable pectin-based formulation.

机构信息

Department of Pharmacy, National University of Singapore, 18 Science Drive 4, Singapore 117543, Republic of Singapore.

出版信息

J Pharm Sci. 2010 Dec;99(12):4903-16. doi: 10.1002/jps.22212.

Abstract

Despite potential therapeutic efficacy of resveratrol on colitis and colorectal cancer, rapid absorption and metabolism at the upper gastro-intestinal (GI) tract prevent its clinical application. To overcome this, we attempted to develop colon-specific multi-particulate calcium-pectinate (Ca-pectinate) formulations of resveratrol. However, they were unable to prevent premature drug release at the upper GI tract. Thus, glutaraldehyde (Glu) was used for further cross-linking of the pectin chains. The formulation conditions and procedure were optimized from the in vitro drug release study. The optimized formulation was subjected to in vivo pharmacokinetic study in rats and compared with the unmodified Ca-pectinate and suspension formulation of resveratrol. Spherical particles (∼1 mm diameter) with high drug encapsulation were produced. Low cross-linking solution pH (1.5), minimum Glu concentration (2.5%) and cross-linking time (2 h) were crucial to exhibit colon-specific drug release. As Glu was added in the cross-linking solution, cross-linking between pectin chains and Glu occurred simultaneously during Ca-pectinate network formation, which appeared as a cost-effective formulation technique. Most importantly, the pharmacokinetic study demonstrated in vivo colon-specific drug release from the optimized formulation, while faster drug release was observed from the unmodified and suspension formulations. Hence, the developed formulation has potential to be used as colon-specific delivery system of resveratrol.

摘要

尽管白藜芦醇对结肠炎和结直肠癌具有潜在的治疗效果,但它在上消化道(GI)中的快速吸收和代谢阻止了其在临床上的应用。为了克服这一问题,我们试图开发白藜芦醇的结肠特异性多颗粒钙-果胶酸盐(Ca-pectinate)制剂。然而,它们无法防止在上消化道中过早释放药物。因此,戊二醛(Glu)用于进一步交联果胶链。通过体外药物释放研究优化了制剂条件和程序。将优化的制剂进行了大鼠体内药代动力学研究,并与未修饰的 Ca-pectinate 和白藜芦醇混悬剂制剂进行了比较。制备出了具有高药物包封率的球形颗粒(∼1 毫米直径)。低交联溶液 pH 值(1.5)、最低 Glu 浓度(2.5%)和交联时间(2 小时)对于表现出结肠特异性药物释放至关重要。随着 Glu 被添加到交联溶液中,在 Ca-pectinate 网络形成过程中果胶链和 Glu 之间同时发生交联,这似乎是一种具有成本效益的制剂技术。最重要的是,药代动力学研究表明,优化后的制剂在体内具有结肠特异性药物释放,而未修饰的和混悬剂制剂则表现出更快的药物释放。因此,所开发的制剂有可能用作白藜芦醇的结肠特异性递送系统。

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