Chang Sheng, Wang Yanfei, Zhang Tianyi, Pu Xiaohui, Zong Lanlan, Zhu Heyun, Zhao Luling, Feng Bo
College of Pharmacy, Jilin Medical University, Jilin, China.
School of Pharmacy, Institute of Materia Medica, Henan University, Kaifeng, China.
Front Oncol. 2019 Aug 27;9:823. doi: 10.3389/fonc.2019.00823. eCollection 2019.
The toxicity and side effects of traditional chemotherapeutic drugs are the main causes of chemotherapy failure. To improve the specificity and selectivity of chemotherapeutic drugs for tumor cells, a novel redox-sensitive polymer prodrug, polyethylene glycol-poly (β-benzyl-L-aspartate) (PEG-PBLA)-SS-paclitaxel (PPSP), was designed and synthesized in this study. The PPSP micelle was manufactured via high-speed dispersion stirring and dialysis. The particle size and zeta potential of this prodrug micelle were 63.77 ± 0.91 nm and -25.8 ± 3.24 mV, respectively. The micelles were uniformly distributed and presented a spherical morphology under a transmission electron microscope. In the tumor physiological environment, the particle size of the PPSP micelles and the release rate of paclitaxel (PTX) were significantly increased compared with those of mPEG-PBLA-CC-PTX (PPCP) micelles, reflecting the excellent redox-sensitive activity of the PPSP micelles. The inhibitory effect of PPSP on HepG2, MCF-7 and HL-7702 cell proliferation was investigated with MTT assays, and the results demonstrated that PPSP is superior to PTX with respect to the inhibition of two tumor cell types at different experimental concentration. Simultaneously PPSP has lower toxicity against HL-7702 cells then PTX and PPCP. Moreover, the blank micelle from mPEG-PBLA showed no obvious toxicity to the two tumor cells at different experimental concentrations. In summary, the redox-sensitive PPSP micelle significantly improved the biosafety and the anti-tumor activity of PTX.
传统化疗药物的毒性和副作用是化疗失败的主要原因。为提高化疗药物对肿瘤细胞的特异性和选择性,本研究设计并合成了一种新型的氧化还原敏感型聚合物前药,聚乙二醇-聚(β-苄基-L-天冬氨酸)(PEG-PBLA)-二硫键-紫杉醇(PPSP)。PPSP胶束通过高速分散搅拌和透析制备。该前药胶束的粒径和zeta电位分别为63.77±0.91nm和-25.8±3.24mV。胶束均匀分布,在透射电子显微镜下呈现球形形态。在肿瘤生理环境中,与mPEG-PBLA-CC-PTX(PPCP)胶束相比,PPSP胶束的粒径和紫杉醇(PTX)的释放速率显著增加,反映了PPSP胶束具有优异的氧化还原敏感活性。采用MTT法研究了PPSP对HepG2、MCF-7和HL-7702细胞增殖的抑制作用,结果表明,在不同实验浓度下,PPSP对两种肿瘤细胞类型的抑制作用优于PTX。同时,PPSP对HL-7702细胞的毒性低于PTX和PPCP。此外,mPEG-PBLA空白胶束在不同实验浓度下对两种肿瘤细胞均无明显毒性。综上所述,氧化还原敏感型PPSP胶束显著提高了PTX的生物安全性和抗肿瘤活性。