Wang Shouju, Teng Zhaogang, Huang Peng, Liu Dingbin, Liu Ying, Tian Ying, Sun Jing, Li Yanjun, Ju Huangxian, Chen Xiaoyuan, Lu Guangming
Department of Medical Imaging, Jinling Hospital, School of Medicine, Nanjing University, Nanjing, 210002, P.R. China; State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing, 210093, P.R. China.
Small. 2015 Apr 17;11(15):1801-10. doi: 10.1002/smll.201403248. Epub 2015 Jan 7.
Shielding nanoparticles from nonspecific interactions with normal cells/tissues before they reach and after they leave tumors is crucial for the selective delivery of NPs into tumor cells. By utilizing the reversible protonation of weak electrolytic groups to pH changes, long-chain amine/carboxyl-terminated polyethylene glycol (PEG) decorated gold nanostars (GNSs) are designed, exhibiting reversible, significant, and sensitive response in cell affinity and therapeutic efficacy to the extracellular pH (pHe) gradient between normal tissues and tumors. This smart nanosystem shows good dispersity and unimpaired photothermal efficacy in complex bioenvironment at pH 6.4 and 7.4 even when their surface charge is neutral. One PEGylated mixed-charge GNSs with certain surface composition, GNS-N/C 4, exhibits high cell affinity and therapeutic efficacy at pH 6.4, and low affinity and almost "zero" damage to cells at pH 7.4. Remarkably, this significant and sensitive response in cell affinity and therapeutic efficacy is reversible as local pH alternated. In vivo, GNS-N/C 4 shows higher accumulation in tumors and improved photothermal therapeutic efficacy than pH-insensitive GNSs. This newly developed smart nanosystem, whose cell affinity reversibly transforms in response to pHe gradient with unimpaired biostability, provides a novel effective means of tumor-selective therapy.
在纳米颗粒到达肿瘤之前以及离开肿瘤之后,使其免受与正常细胞/组织的非特异性相互作用,对于将纳米颗粒选择性递送至肿瘤细胞至关重要。通过利用弱电解质基团对pH变化的可逆质子化作用,设计了长链胺/羧基封端的聚乙二醇(PEG)修饰的金纳米星(GNSs),其在细胞亲和力和治疗效果方面对正常组织与肿瘤之间的细胞外pH(pHe)梯度表现出可逆、显著且灵敏的响应。这种智能纳米系统在pH 6.4和7.4的复杂生物环境中显示出良好的分散性和未受损的光热疗效,即使其表面电荷呈中性。一种具有特定表面组成的聚乙二醇化混合电荷GNSs,即GNS-N/C 4,在pH 6.4时表现出高细胞亲和力和治疗效果,而在pH 7.4时亲和力低且对细胞几乎“零”损伤。值得注意的是,随着局部pH的交替,这种在细胞亲和力和治疗效果方面的显著且灵敏的响应是可逆的。在体内,GNS-N/C 4比pH不敏感的GNSs在肿瘤中显示出更高的积累和改善的光热治疗效果。这种新开发的智能纳米系统,其细胞亲和力响应pHe梯度可逆转变且生物稳定性未受损,为肿瘤选择性治疗提供了一种新型有效的手段。