Istituto Italiano di Tecnologia, Center for Micro Bio-Robotics @SSSA, viale Rinaldo Piaggio,34, 56025, Pontedera, Italy.
Istituto Italiano di Tecnologia, Center for Neuroscience and Cognitive Systems @UNITN, Corso Bettini 31, 38068 Rovereto, Italy.
Sci Rep. 2017 Jan 10;7:40046. doi: 10.1038/srep40046.
Biodegradable polymer nanoparticles are promising carriers for targeted drug delivery in nanomedicine applications. Molecu- lar imprinting is a potential strategy to target polymer nanoparticles through binding of endogenous ligands that may promote recognition and active transport into specific cells and tissues. However, the lock-and-key mechanism of molecular imprinting requires relatively rigid cross-linked structures, unlike those of many biodegradable polymers. To date, no fully biodegradable molecularly imprinted particles have been reported in the literature. This paper reports the synthesis of a novel molecularly- imprinted nanocarrier, based on poly(lactide-co-glycolide) (PLGA) and acrylic acid, that combines biodegradability and molec- ular recognition properties. A novel three-arm biodegradable cross-linker was synthesized by ring-opening polymerization of glycolide and lactide initiated by glycerol. The resulting macromer was functionalized by introduction of end-functions through reaction with acryloyl chloride. Macromer and acrylic acid were used for the synthesis of narrowly-dispersed nanoparticles by radical polymerization in diluted conditions in the presence of biotin as template molecule. The binding capacity of the imprinted nanoparticles towards biotin and biotinylated bovine serum albumin was twentyfold that of non-imprinted nanoparti- cles. Degradation rates and functional performances were assessed in in vitro tests and cell cultures, demonstrating effective biotin-mediated cell internalization.
可生物降解聚合物纳米粒子是纳米医学应用中靶向药物传递的有前途的载体。分子印迹是一种通过结合内源性配体靶向聚合物纳米粒子的潜在策略,这些配体可能促进对特定细胞和组织的识别和主动运输。然而,分子印迹的锁钥机制需要相对刚性的交联结构,这与许多可生物降解聚合物不同。迄今为止,文献中尚未报道完全可生物降解的分子印迹颗粒。本文报道了一种基于聚(丙交酯-共-乙交酯)(PLGA)和丙烯酸的新型分子印迹纳米载体的合成,该载体结合了生物降解性和分子识别特性。通过甘油引发的丙交酯和乙交酯的开环聚合合成了一种新型三臂可生物降解交联剂。通过与丙烯酰氯反应引入端基官能团对所得大分子单体进行功能化。大分子单体和丙烯酸在生物素作为模板分子的存在下,在稀释条件下通过自由基聚合合成了窄分散的纳米粒子。印迹纳米粒子对生物素和生物素化牛血清白蛋白的结合能力是非印迹纳米粒子的二十倍。在体外试验和细胞培养中评估了降解速率和功能性能,证明了有效的生物素介导的细胞内化。