Department of Chemistry and Biochemistry and Center for Nanoscience Research, Concordia University , Montreal, Quebec, Canada H4B 1R6.
Biomacromolecules. 2013 Jun 10;14(6):2103-11. doi: 10.1021/bm4004805. Epub 2013 May 17.
Self-assembled micelles of amphiphilic block copolymers (ABPs) with stimuli-responsive degradation (SRD) properties have a great promise as nanotherapeutics exhibiting enhanced release of encapsulated therapeutics into targeted cells. Here, thiol-responsive degradable micelles based on a new ABP consisting of a pendant disulfide-labeled methacrylate polymer block (PHMssEt) and a hydrophilic poly(ethylene oxide) (PEO) block were investigated as effective intracellular nanocarriers of anticancer drugs. In response to glutathione (GSH) as a cellular trigger, the cleavage of pendant disulfide linkages in hydrophobic PHMssEt blocks of micellar cores caused the destabilization of self-assembled micelles due to change in hydrophobic/hydrophilic balance. Such GSH-triggered micellar destabilization changed their size distribution with an appearance of large aggregates and led to enhanced release of encapsulated anticancer drugs. Cell culture results from flow cytometry and confocal laser scanning microscopy for cellular uptake as well as cell viability measurements for high anticancer efficacy suggest that new GSH-responsive degradable PEO-b-PHMssEt micelles offer versatility in multifunctional drug delivery applications.
具有刺激响应降解(SRD)特性的两亲嵌段共聚物(ABPs)自组装胶束作为纳米治疗剂具有很大的应用前景,因为它们可以增强包封的治疗剂向靶向细胞的释放。在这里,研究了基于新的 ABP 的硫醇响应可降解胶束,该 ABP 由带有侧挂二硫键标记的甲基丙烯酸酯聚合物嵌段(PHMssEt)和亲水性聚(氧化乙烯)(PEO)嵌段组成,作为抗癌药物的有效细胞内纳米载体。作为细胞触发物的谷胱甘肽(GSH)响应,胶束核中疏水性 PHMssEt 嵌段中的侧挂二硫键的断裂导致自组装胶束的不稳定性,这是由于疏水/亲水平衡的变化所致。这种 GSH 触发的胶束失稳改变了其大小分布,出现了大的聚集体,并导致包封的抗癌药物的释放增强。细胞培养结果来自流式细胞术和共聚焦激光扫描显微镜的细胞摄取以及用于高抗癌功效的细胞活力测量表明,新的 GSH 响应可降解 PEO-b-PHMssEt 胶束在多功能药物输送应用中具有多功能性。