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从薄膜“李子布丁”凝胶中同时释放疏水性和阳离子溶质:一种用于表面药物递送的多功能平台?

Simultaneous release of hydrophobic and cationic solutes from thin-film "plum-pudding" gels: a multifunctional platform for surface drug delivery?

作者信息

Lynch Iseult, de Gregorio Paolo, Dawson K A

机构信息

Irish Centre for Colloid Science and Biomaterials, Department of Chemistry, University College Dublin, Belfield, Dublin 4, Ireland.

出版信息

J Phys Chem B. 2005 Apr 7;109(13):6257-61. doi: 10.1021/jp0502149.

Abstract

The release of two compositionally different solutes from a composite gel composed of two different populations of microgel particles embedded in a single bulk gel matrix is described, showing the potential of the "plum-pudding gel" as a multifunctional platform for controlled surface release. One hydrophobic solute (pyrene) and one hydrophobic and charged solute (rhodamine 123) were chosen as the solutes to be released. Hydrophobic microgels composed of 50% N-isopropylacrylamide (NIPAM) and 50% N-tert-butylacrylamide (BAM) were loaded with pyrene, and anionic microgels composed of 30% acrylic acid (AAc), 20% NIPAM, and 50% BAM were loaded with rhodamine 123. The two solute-loaded microgel populations were incorporated into a single bulk gel network, from which the two solutes were released simultaneously and independently. Using this structural motif, solutes that are mutually incompatible can be incorporated into a single matrix with which they may also be incompatible. The electrostatically incorporated solute was released much more slowly than the hydrophobically attracted solute, indicating that the microgel composition can be tailored to the specific solute, and thus control its release rate. The choice of bulk matrix was also found to influence the release rate much more than expected, offering a further control element to the system.

摘要

本文描述了从嵌入单一整体凝胶基质中的两种不同微凝胶颗粒组成的复合凝胶中释放两种成分不同的溶质的过程,展示了“李子布丁凝胶”作为可控表面释放多功能平台的潜力。选择一种疏水性溶质(芘)和一种疏水性且带电荷的溶质(罗丹明123)作为待释放的溶质。由50% N-异丙基丙烯酰胺(NIPAM)和50% N-叔丁基丙烯酰胺(BAM)组成的疏水性微凝胶负载芘,由30%丙烯酸(AAc)、20% NIPAM和50% BAM组成的阴离子微凝胶负载罗丹明123。将两种负载溶质的微凝胶群体掺入单一整体凝胶网络中,两种溶质从该网络中同时且独立地释放。利用这种结构模式,相互不相容的溶质可以掺入到一个它们可能也不相容的单一基质中。静电结合的溶质释放速度比疏水吸引的溶质慢得多,这表明微凝胶组成可以根据特定溶质进行调整,从而控制其释放速率。还发现整体基质的选择对释放速率的影响比预期大得多,为该系统提供了另一个控制因素。

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