Suo Aili, Qian Junmin, Zhang Yaping, Liu Rongrong, Xu Weijun, Wang Hejing
Department of Oncology, The First Affiliated Hospital of Xi'an Jiaotong University, Xi'an 710061, China.
State Key Laboratory for Mechanical Behavior of Materials, Xi'an Jiaotong University, Xi'an 710049, China.
Mater Sci Eng C Mater Biol Appl. 2016 May;62:564-73. doi: 10.1016/j.msec.2016.02.007. Epub 2016 Feb 5.
A comb-like amphiphilic copolymer methoxypolyethylene glycol-graft-poly(L-lysine)-block-poly(L-phenylalanine) (mPEG-g-PLL-b-Phe) was successfully synthesized. To synthesize mPEG-g-PLL-b-Phe, diblock copolymer PLL-b-Phe was first synthesized by successive ring-opening polymerization of α-amino acid N-carboxyanhydrides followed by the removal of benzyloxycarbonyl protecting groups, and then mPEG was grafted onto PLL-b-Phe by reductive amination via Schiff's base formation. The chemical structures of the copolymers were identified by (1)H NMR. mPEG-g-PLL-b-Phe copolymer had a critical micelle concentration of 6.0mg/L and could self-assemble in an aqueous solution into multicompartment nanomicelles with a mean diameter of approximately 78 nm. The nanomicelles could encapsulate doxorubicin (DOX) through hydrophobic and π-π stacking interactions between DOX molecules and Phe blocks and simultaneously complex P-gp siRNA with cationic PLL blocks via electrostatic interactions. The DOX/P-gp siRNA-loaded nanomicelles showed spherical morphology, possessed narrow particle size distribution and had a mean particle size of 120 nm. The DOX/P-gp siRNA-loaded nanomicelles exhibited pH-responsive release behaviors and displayed accelerated release under acidic conditions. The DOX/P-gp siRNA-loaded nanomicelles were efficiently internalized into MCF-7 cells, and DOX released could successfully reach nuclei. In vitro cytotoxicity assay demonstrated that the DOX/P-gp siRNA-loaded nanomicelles showed a much higher cytotoxicity in MCF-7 cells than DOX-loaded nanomicelles due to their synergistic killing effect and that the blank nanomicelles had good biocompatibility. Thus, the novel comb-like mPEG-g-PLL-b-Phe nanomicelles could be a promising vehicle for co-delivery of chemotherapeutic drug and genetic material.
成功合成了一种梳状两亲共聚物甲氧基聚乙二醇接枝聚(L-赖氨酸)-嵌段-聚(L-苯丙氨酸)(mPEG-g-PLL-b-Phe)。为了合成mPEG-g-PLL-b-Phe,首先通过α-氨基酸N-羧基酸酐的连续开环聚合,随后去除苄氧羰基保护基团,合成了二嵌段共聚物PLL-b-Phe,然后通过席夫碱形成的还原胺化反应将mPEG接枝到PLL-b-Phe上。通过(1)H NMR鉴定了共聚物的化学结构。mPEG-g-PLL-b-Phe共聚物的临界胶束浓度为6.0mg/L,可在水溶液中自组装成平均直径约为78nm的多隔室纳米胶束。纳米胶束可通过DOX分子与Phe嵌段之间的疏水和π-π堆积相互作用包封阿霉素(DOX),并同时通过静电相互作用将P-gp siRNA与阳离子PLL嵌段复合。负载DOX/P-gp siRNA的纳米胶束呈现球形形态,粒径分布窄,平均粒径为120nm。负载DOX/P-gp siRNA的纳米胶束表现出pH响应释放行为,在酸性条件下显示加速释放。负载DOX/P-gp siRNA的纳米胶束可有效内化到MCF-7细胞中,释放的DOX可成功到达细胞核。体外细胞毒性试验表明,由于其协同杀伤作用,负载DOX/P-gp siRNA的纳米胶束在MCF-7细胞中显示出比负载DOX的纳米胶束更高的细胞毒性,并且空白纳米胶束具有良好的生物相容性。因此,新型梳状mPEG-g-PLL-b-Phe纳米胶束可能是一种有前途的化疗药物和遗传物质共递送载体。