Crescenzi Vittorio, Cornelio Lisa, Di Meo Chiara, Nardecchia Stefania, Lamanna Raffaele
Department of Chemistry, University of Rome Sapienza, P.le Aldo Moro 5, 00185 Rome, Italy.
Biomacromolecules. 2007 Jun;8(6):1844-50. doi: 10.1021/bm0700800. Epub 2007 May 25.
A novel procedure for the in situ rapid chemical gelation of aqueous solutions of hyaluronan has been employed. In brief, water-soluble polysaccharide derivatives bearing side chains endowed with either azide or alkyne terminal functionality have been prepared. When the latter two types of derivatives are mixed together in aqueous solution they give rise to a 1,3-dipolar cycloaddition reaction resulting in fast gelation (in the presence of catalytic amounts of Cu(I)) at room temperature. Gel formation has been characterized rheologically and could also be followed qualitatively by means of IR spectroscopy. The resulting gels have been studied in terms of swelling properties and, in particular, NMR spectral features. Carrying out the gelation process in aqueous solutions of benzidamine and doxorubicin, respectively, the polysaccharide networks acted as drug reservoirs. The doxorubicin release resulted in well controllable acting upon the gels degree of cross-linking. Finally, formation of the click-gels using aqueous suspensions of Saccharomices cerevisiae yeast cells allowed the obtainment of scaffolds inside which cells were homogeneously distributed and smoothly adhered to the inner pores surfaces, according to SEM analysis. After 24 h about 60% of the entrapped cells exhibited proliferating activity. Click-gels prepared as detailed herein do have a number of positive features that make them, in perspective, materials of choice for drug release and tissue engineering manipulations.
采用了一种用于透明质酸水溶液原位快速化学凝胶化的新方法。简而言之,制备了带有叠氮化物或炔烃末端官能团侧链的水溶性多糖衍生物。当后两种类型的衍生物在水溶液中混合在一起时,它们会引发1,3-偶极环加成反应,从而在室温下(在催化量的Cu(I)存在下)快速凝胶化。通过流变学对凝胶形成进行了表征,也可以通过红外光谱进行定性跟踪。对所得凝胶的溶胀性能,特别是核磁共振光谱特征进行了研究。分别在联苯胺和阿霉素的水溶液中进行凝胶化过程时,多糖网络充当药物储存库。阿霉素的释放导致对凝胶交联度的良好控制。最后,使用酿酒酵母细胞的水悬浮液形成点击凝胶,根据扫描电子显微镜分析,可以获得细胞均匀分布并平滑地粘附在内孔表面的支架。24小时后,约60%的包封细胞表现出增殖活性。本文详述制备的点击凝胶确实具有许多积极特性,从长远来看,使其成为药物释放和组织工程操作的首选材料。