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首页> 外文期刊>Journal of Materials Science. Materials in Medicine >Starch-based microspheres produced by emulsion crosslinking with a potential media dependent responsive behavior to be used as drug delivery carriers
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Starch-based microspheres produced by emulsion crosslinking with a potential media dependent responsive behavior to be used as drug delivery carriers

机译:通过乳液交联产生的基于淀粉的微球,其具有潜在的取决于介质的响应行为,可用作药物传递载体

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This paper describes the development and characterization of starch microspheres for being used as drug delivery carriers in tissue engineering applications. The developed starch microspheres can be further loaded with specific growth factors and immobilized in scaffolds, or administrated separately with scaffolds. Furthermore and due to the processing conditions used, it is expected that these microspheres can be also used to encapsulate living cells. The aim of this study was to evaluate the efficacy of this methodology for further studies with biologically active agents or living cells. The starch microspheres were prepared using an emulsion crosslinking technique at room temperature to allow for the loading of biologically active agents. A preliminary study was performed to evaluate the incorporation of a model drug (nonsteroidal anti-inflammatory drug-NSAID) and investigate its release profile as function of changes in the medium parameters, such as ionic strength and pH. The developed starch-based drug delivery system has shown to be dependent on the ionic strength of the release medium. From preliminary results, the release seems to be pH-dependent due to the drug solubility. It was found that the developed microspheres and the respective processing route are appropriate for further studies. In fact, and based in the processing conditions and characterization, the developed system present a potential for the loading of different growth factors or even living cells on future studies with these systems for improving bone regeneration in tissue engineering, especially because the crosslinking reaction of the microspheres takes place at room temperature.
机译:本文介绍了在组织工程应用中用作药物传递载体的淀粉微球的开发和表征。发达的淀粉微球可以进一步装载特定的生长因子,并固定在支架上,或与支架分开施用。此外,由于所用的加工条件,预期这些微球也可用于包封活细胞。这项研究的目的是评估这种方法对生物活性剂或活细胞进行进一步研究的功效。淀粉微球是在室温下使用乳液交联技术制备的,以允许负载生物活性剂。进行了初步研究,以评估模型药物(非甾体类抗炎药-NSAID)的掺入情况,并研究其释放曲线与介质参数(如离子强度和pH)变化的关系。已开发的基于淀粉的药物递送系统已显示出取决于释放介质的离子强度。从初步结果来看,由于药物溶解性,释放似乎是pH依赖性的。发现发达的微球和各自的加工路线适合进一步研究。实际上,根据加工条件和特性,在今后的研究中,开发的系统具有装载不同生长因子甚至活细胞的潜力,这些系统可改善组织工程中的骨再生,特别是因为微球在室温下发生。

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