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溴己新控释用分子印迹聚合物的合成与表征。

The syntheses and characterization of molecularly imprinted polymers for the controlled release of bromhexine.

机构信息

Department of Chemistry, Amirkabir University of Technology, Tehran, Iran.

出版信息

Appl Biochem Biotechnol. 2011 May;164(2):133-47. doi: 10.1007/s12010-010-9121-y. Epub 2010 Nov 14.

DOI:10.1007/s12010-010-9121-y
PMID:21076945
Abstract

Imprinted polymers are now being increasingly considered for active biomedical uses such as drug delivery. In this work, the use of molecularly imprinted polymers (MIPs) in designing new drug delivery devices was studied. Imprinted polymers were prepared from methacrylic acid (functional monomer), ethylene glycol dimethacrylate (cross-linker), and bromhexine (as a drug template) using bulk polymerization method. The influence of the template/functional monomer proportion and pH on the achievement of MIPs with pore cavities with a high enough affinity for the drug was investigated. The polymeric devices were further characterized by FT-IR, thermogravimetric analysis, scanning electron microscopy, and binding experiments. The imprinted polymers showed a higher affinity for bromhexine and a slower release rate than the non-imprinted polymers. The controlled release of bromhexine from the prepared imprinted polymers was investigated through in vitro dissolution tests by measuring absorbance at λ (max) of 310 nm by HPLC-UV. The dissolution media employed were hydrochloric acid at the pH level of 3.0 and phosphate buffers, at pH levels of 6.0 and 8.0, maintained at 37.0 and 25.0 ± 0.5 °C. Results from the analyses showed the ability of MIP polymers to control the release of bromhexine In all cases The imprinted polymers showed a higher affinity for bromhexine and a slower release rate than the non-imprinted polymers. At the pH level of 3.0 and at the temperature of 25 °C, slower release of bromhexine imprinted polymer occurred.

摘要

印迹聚合物现在越来越多地被用于药物传递等主动式生物医学用途。在这项工作中,研究了印迹聚合物(MIPs)在设计新型药物传递装置中的应用。印迹聚合物是通过本体聚合方法,由甲基丙烯酸(功能单体)、乙二醇二甲基丙烯酸酯(交联剂)和溴己新(作为药物模板)制备而成。研究了模板/功能单体比例和 pH 值对具有足够高药物亲和力的孔腔 MIPs 的实现的影响。进一步通过傅里叶变换红外光谱(FT-IR)、热重分析(TGA)、扫描电子显微镜(SEM)和结合实验对聚合物器件进行了表征。印迹聚合物对溴己新表现出更高的亲和力和更慢的释放速率,而非印迹聚合物则表现出更高的亲和力和更慢的释放速率。通过在 310nm 处测量吸光度的高效液相色谱-紫外(HPLC-UV)法,通过体外溶解试验研究了印迹聚合物中溴己新的控制释放。所用的溶解介质为盐酸(pH 值为 3.0)和磷酸盐缓冲液(pH 值为 6.0 和 8.0),在 37.0 和 25.0±0.5°C 下保持。分析结果表明,MIP 聚合物具有控制溴己新释放的能力。在所有情况下,印迹聚合物对溴己新的亲和力均高于非印迹聚合物,释放速率也较慢。在 pH 值为 3.0 和温度为 25°C 的情况下,溴己新印迹聚合物的释放速度较慢。

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