Feng Ning, Dong Jie, Han Guoxiang, Wang Guojie
School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing, 100083, China.
Macromol Rapid Commun. 2014 Apr;35(7):721-6. doi: 10.1002/marc.201300863. Epub 2014 Feb 4.
A novel photo and pH-responsive amphiphilic pyrene-functionalized polymer is synthesized by the esterification reaction between poly(acryloyl chloride) and pyrenemethanol and subsequent hydrolysis of the unreacted acylchloride groups. This random copolymer consists of hydrophobic pyrene-containing acrylate units and hydrophilic acrylic acid units, which can self-assemble into nanoparticles in water. Under UV irradiation, the nanoparticles can be disrupted with decreasing particle number resulted from the photolysis of pyrenylmethyl esters, where the hydrophobic segments are converted to hydrophilic acrylic acids; at low pH, the acrylic acid segments are protonated and collapsed, thus the nanoparticles will be shrunk and aggregated; at high pH, the nanoparticles change to fractal structures owing to the aggregation of partially dissociated nanoparticles and the subsequent structural reorganization of the clusters. The controlled release of Nile Red from the nanoparticles stimulated by photo and pH separately and synergistically is demonstrated. The nanoparticles self-assembled from the dual-stimuli-sensitive polymer can be used as a new nanocarrier and find their applications in delivery system.
通过聚(丙烯酰氯)与芘甲醇之间的酯化反应以及未反应的酰氯基团的后续水解,合成了一种新型的光响应和pH响应两亲性芘功能化聚合物。这种无规共聚物由含芘的疏水丙烯酸酯单元和亲水丙烯酸单元组成,在水中可自组装成纳米颗粒。在紫外线照射下,由于芘甲酯的光解,纳米颗粒会被破坏,颗粒数量减少,其中疏水链段转化为亲水丙烯酸;在低pH值下,丙烯酸链段质子化并塌陷,因此纳米颗粒会收缩并聚集;在高pH值下,由于部分解离的纳米颗粒的聚集以及随后团簇的结构重组,纳米颗粒转变为分形结构。分别展示了尼罗红从纳米颗粒中受光和pH单独及协同刺激的控释。由双刺激敏感聚合物自组装而成的纳米颗粒可作为一种新型纳米载体,并在递送系统中找到其应用。