Branco Monica C, Pochan Darrin J, Wagner Norman J, Schneider Joel P
Department of Chemistry and Biochemistry, University of Delaware, Newark, DE 19716, USA.
Biomaterials. 2009 Mar;30(7):1339-47. doi: 10.1016/j.biomaterials.2008.11.019. Epub 2008 Dec 18.
Self-assembling peptide hydrogels are used to directly encapsulate and controllably release model FITC-dextran macromolecules of varying size and hydrodynamic diameters. MAX1 and MAX8 are two peptide sequences with different charge states that have been designed to intramolecularly fold and self assemble into hydrogels at physiological buffer conditions (pH 7.4, 150 mM NaCl). When self-assembly is initiated in the presence of dextran or protein probes, these macromolecules are directly encapsulated in the gel. Self-diffusion studies using fluorescence recovery after photobleaching (FRAP) and bulk release studies indicate that macromolecule mobility within, and release out of, these gels can be modulated by varying the hydrogel mesh size. The average mesh size can be modulated by simply varying the concentration of a given peptide used to construct the gel or by altering the peptide sequence. In addition, results suggest that electrostatic interactions between the macromolecules and the peptide network influence mobility and release. Depending on probe size, release half-lives can be varied from 8h to over a month.
自组装肽水凝胶用于直接封装并可控释放不同大小和流体动力学直径的模型荧光素异硫氰酸酯标记葡聚糖(FITC-葡聚糖)大分子。MAX1和MAX8是两个具有不同电荷状态的肽序列,它们被设计为在生理缓冲条件(pH 7.4,150 mM NaCl)下进行分子内折叠并自组装成水凝胶。当在葡聚糖或蛋白质探针存在的情况下引发自组装时,这些大分子会直接被封装在凝胶中。使用光漂白后荧光恢复(FRAP)进行的自扩散研究和整体释放研究表明,通过改变水凝胶的孔径大小,可以调节这些凝胶内大分子的流动性以及大分子从凝胶中的释放。平均孔径大小可以通过简单地改变用于构建凝胶的给定肽的浓度或改变肽序列来调节。此外,结果表明大分子与肽网络之间的静电相互作用会影响流动性和释放。根据探针大小的不同,释放半衰期可以从8小时变化到超过一个月。