Ziminska Monika, Wilson Jordan J, McErlean Emma, Dunne Nicholas, McCarthy Helen O
School of Pharmacy, Queen's University of Belfast, 97 Lisburn Road, Belfast BT9 7BL, UK.
School of Chemistry and Chemical Engineering, Queen's University of Belfast, Belfast BT9 5AG, UK.
Materials (Basel). 2020 Jun 2;13(11):2530. doi: 10.3390/ma13112530.
Thermoresponsive hydrogels demonstrate tremendous potential as sustained drug delivery systems. However, progress has been limited as formulation of a stable biodegradable thermosensitive hydrogel remains a significant challenge. In this study, free radical polymerization was exploited to formulate a biodegradable thermosensitive hydrogel characterized by sustained drug release. Highly deacetylated chitosan and N-isopropylacrylamide with distinctive physical properties were employed to achieve a stable, hydrogel network at body temperature. The percentage of chitosan was altered within the copolymer formulations and the subsequent physical properties were characterized using H-NMR, FTIR, and TGA. Viscoelastic, swelling, and degradation properties were also interrogated. The thermoresponsive hydrogels were loaded with RALA/pEGFP-N1 nanoparticles and release was examined. There was sustained release of nanoparticles over three weeks and, more importantly, the nucleic acid cargo remained functional and this was confirmed by successful transfection of the NCTC-929 fibroblast cell line. This tailored thermoresponsive hydrogel offers an option for sustained delivery of macromolecules over a prolonged considerable period.
热响应水凝胶作为持续给药系统展现出巨大潜力。然而,由于稳定的可生物降解热敏水凝胶的配方仍然是一项重大挑战,进展有限。在本研究中,利用自由基聚合来制备具有持续药物释放特性的可生物降解热敏水凝胶。使用具有独特物理性质的高度脱乙酰壳聚糖和N-异丙基丙烯酰胺,在体温下形成稳定的水凝胶网络。在共聚物配方中改变壳聚糖的百分比,并使用H-NMR、FTIR和TGA对随后的物理性质进行表征。还研究了粘弹性、溶胀和降解性质。将热响应水凝胶负载RALA/pEGFP-N1纳米颗粒并检测其释放情况。纳米颗粒在三周内持续释放,更重要的是,核酸货物仍保持功能,这通过成功转染NCTC-929成纤维细胞系得到证实。这种定制的热响应水凝胶为在相当长的一段时间内持续递送大分子提供了一种选择。