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利用人釉原蛋白进行分子包封,设计 pH 响应型微球。

Use of human amelogenin in molecular encapsulation for the design of pH responsive microparticles.

机构信息

Department of Pure and Applied Biochemistry, Center for Chemistry and Chemical Engineering, Lund University, PO Box 124, SE-22100, Lund, Sweden.

出版信息

BMC Biotechnol. 2012 May 25;12:25. doi: 10.1186/1472-6750-12-25.

Abstract

BACKGROUND

Proteins can be used in drug delivery systems to improve pharmacological properties of an active substance. Differences in pH between tissues can be utilized in order to achieve a targeted drug release at a specific location or tissue, such as a tumor. The enamel matrix protein amelogenin has a pH dependent solubility profile and self-assemble to form aggregates at neutral pH. This could make amelogenin useful in the design of pH responsive drug delivery systems.

RESULTS

In this study amelogenin was evaluated as a pH responsive component in drug delivery applications. This was achieved by testing the ability of amelogenin to entrap/release other proteins upon changes in pH, and by testing if amelogenin could confer pH responsiveness to an existing and versatile drug delivery system, such as gelatin microparticles. Amelogenin was able to encapsulate bovine serum albumin and insulin, whichwere used as model target proteins. The composite aggregates of amelogenin and target protein were formed at neutral pH and could be reversibly solubilized at weakly acidic pH. Gelatin microparticles prepared in the presence of amelogenin, showed a modulated structure in response to pH change, when studied by scanning electron microscopy, compared to particles without amelogenin. At neutral pH amelogenin induced formation of pores in the particle surface, which were not present at acidic pH, or in particles lacking amelogenin.

CONCLUSIONS

The results from this study demonstrate that amelogenin can be a useful component in drug delivery systems in order to achieve a pH dependent response.

摘要

背景

蛋白质可用于药物传递系统,以改善活性物质的药理学性质。可以利用组织之间的 pH 差异,在特定位置或组织(例如肿瘤)实现靶向药物释放。釉基质蛋白釉原蛋白的溶解度随 pH 值而变化,在中性 pH 值下自组装形成聚集体。这使得釉原蛋白可用于设计 pH 响应型药物传递系统。

结果

本研究评估了釉原蛋白作为药物传递应用中 pH 响应性成分的能力。这是通过测试釉原蛋白在 pH 变化时捕获/释放其他蛋白质的能力来实现的,并且通过测试釉原蛋白是否可以赋予现有且多功能的药物传递系统(例如明胶微球)以 pH 响应性来实现。釉原蛋白能够包封牛血清白蛋白和胰岛素,它们被用作模型靶蛋白。釉原蛋白和靶蛋白的复合聚集体在中性 pH 下形成,并可在弱酸性 pH 下可逆溶解。与不含釉原蛋白的颗粒相比,通过扫描电子显微镜研究,在存在釉原蛋白的情况下制备的明胶微球显示出响应 pH 变化的调制结构。在中性 pH 下,釉原蛋白在颗粒表面诱导形成孔,而在酸性 pH 下或在缺乏釉原蛋白的颗粒中则不存在这些孔。

结论

本研究的结果表明,釉原蛋白可作为药物传递系统中的有用成分,以实现 pH 依赖性响应。

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