de Gracia Lux Caroline, Almutairi Adah
Skaggs School of Pharmacy and Pharmaceutical Sciences, University of California at San Diego, La Jolla, California 92093.
ACS Macro Lett. 2013 May 21;2(5):432-435. doi: 10.1021/mz400129h.
Developing polymer chemistries capable of on-demand, controlled depolymerization is an important tool in a broad variety of applications in science, technology, and industry. We report functionalized poly(caprolactone)s (PCL)s designed to allow on-demand and complete depolymerization through incorporation of pendant protected amino groups that, on deprotection, trigger nucleophilic attack and yield a single cyclic product. Two cleavable protecting groups were used to cap PCL: light sensititve -nitrobenzyl alcohol (ONB) and tert-butyl carbamate (Boc) (for proof of concept). NMR confirmed that PCL-Boc degrades completely into the designed intramolecular cyclization products within a day upon deprotection. TEM visualization of particles made from PCL-ONB encapsulating iron oxide nanoparticles reveals complete disruption of nanoparticles and release of payload. This work demonstrates that intramolecular cyclization within the polymer backbone is an excellent route to accelerate polymer degradation by backbiting reactions into small fragments that should be easily cleared from the circulation.
开发能够按需进行可控解聚的聚合物化学方法,是科学、技术和工业领域众多应用中的一项重要工具。我们报告了功能化聚己内酯(PCL),其设计通过引入侧链保护氨基来实现按需完全解聚,脱保护时,这些氨基会引发亲核攻击并生成单一环状产物。使用了两种可裂解保护基团来封端PCL:光敏性对硝基苄醇(ONB)和叔丁氧羰基(Boc)(用于概念验证)。核磁共振(NMR)证实,PCL-Boc在脱保护后一天内完全降解为设计的分子内环化产物。对包裹氧化铁纳米颗粒的PCL-ONB制成的颗粒进行透射电子显微镜(TEM)观察,发现纳米颗粒完全被破坏且有效载荷释放。这项工作表明,聚合物主链内的分子内环化是通过逆咬反应加速聚合物降解为小片段的极佳途径,这些小片段应易于从循环中清除。