de Sousa Andreza, de Sousa Edésia Martins Barros, de Sousa Ricardo Geraldo
J Nanosci Nanotechnol. 2015 Dec;15(12):9438-48. doi: 10.1166/jnn.2015.10489.
The combination of the mesoporous silica material SBA-1 5 with the temperature-responsive hydrogels, such as poly(N-isopropylacrylamide) P(N-iPAAm) can lead to the formation of a material with the potential for application as a new drug delivery system, given that self-regulated delivery allows for drug release when needed. The present work studies the synthesis and characterization of hybrid systems consisting of the poly(N-isopropylacrylamide) hydrogel and SBA-15 by varying the amount of hydrogel within the silica network. A systematic study on the structural properties of hybrid samples, their thermal stability and the degradation of the polymer chains in silica was carried out through characterization techniques, including SAXS, thermogravimetry and physical adsorption of N2. The results were critically examined and compared with pure SBA-15. The present study's results demonstrated that the thermosensibility of P(N-iPAAm) was retained in the hybrid system, which presented a low critical solution temperature, similar to that of pure P(N-iPAAm). Moreover, the hydrogel did not fully occupy the available intrachannel space, making the [SBA-15/P(N-iPAAm)] hybrids a very promising candidate for hosting and further delivery, under appropriate conditions, of a variety of molecules of pharmaceutical interest.
介孔二氧化硅材料SBA - 15与温度响应性水凝胶(如聚(N - 异丙基丙烯酰胺)P(N - iPAAm))相结合,能够形成一种有潜力用作新型药物递送系统的材料,因为自我调节递送允许在需要时释放药物。本研究通过改变二氧化硅网络中凝胶的含量,研究了由聚(N - 异丙基丙烯酰胺)水凝胶和SBA - 15组成的混合体系的合成与表征。通过包括小角X射线散射(SAXS)、热重分析和N₂物理吸附等表征技术,对混合样品的结构性质、热稳定性以及聚合物链在二氧化硅中的降解进行了系统研究。对结果进行了严格审查,并与纯SBA - 15进行了比较。本研究结果表明,P(N - iPAAm)的热敏性在混合体系中得以保留,该混合体系呈现出与纯P(N - iPAAm)相似的低临界溶液温度。此外,水凝胶并未完全占据可用的孔道内空间,这使得[SBA - 15/P(N - iPAAm)]杂化物在适当条件下成为承载和进一步递送多种具有药物活性分子的非常有前景的候选材料。