Feng Qishuai, Shen Yajing, Fu Yingjie, Muroski Megan E, Zhang Peng, Wang Qiaoyue, Xu Chang, Lesniak Maciej S, Li Gang, Cheng Yu
Department of Neurology, Shanghai East Hospital, Tongji University School of Medicine, Shanghai, 200120, China.
The Institute for Translational Nanomedicine, Shanghai East Hospital.
Theranostics. 2017 Apr 10;7(7):1875-1889. doi: 10.7150/thno.18985. eCollection 2017.
Inorganic nanoparticles with unique physical properties have been explored as nanomedicines for brain tumor treatment. However, the clinical applications of the inorganic formulations are often hindered by the biological barriers and failure to be bioeliminated. The size of the nanoparticle is an essential design parameter which plays a significant role to affect the tumor targeting and biodistribution. Here, we report a feasible approach for the assembly of gold nanoparticles into ~80 nm nanospheres as a drug delivery platform for enhanced retention in brain tumors with the ability to be dynamically switched into the single formulation for excretion. These nanoassemblies can target epidermal growth factor receptors on cancer cells and are responsive to tumor microenvironmental characteristics, including high vascular permeability and acidic and redox conditions. Anticancer drug release was controlled by a pH-responsive mechanism. Intracellular L-glutathione (GSH) triggered the complete breakdown of nanoassemblies to single gold nanoparticles. Furthermore, studies have shown that nanospheres display enhanced tumor-targeting efficiency and therapeutic effects relative to single-nanoparticle formulations. Hence, gold nanoassemblies present an effective targeting strategy for brain tumor treatment.
具有独特物理性质的无机纳米颗粒已被探索用作治疗脑肿瘤的纳米药物。然而,无机制剂的临床应用常常受到生物屏障的阻碍,且无法被生物消除。纳米颗粒的尺寸是一个重要的设计参数,对影响肿瘤靶向性和生物分布起着重要作用。在此,我们报告了一种将金纳米颗粒组装成约80纳米纳米球的可行方法,作为一种药物递送平台,以增强在脑肿瘤中的滞留,并能够动态转变为单一制剂以便排出。这些纳米组装体可以靶向癌细胞上的表皮生长因子受体,并对肿瘤微环境特征作出响应,包括高血管通透性以及酸性和氧化还原条件。抗癌药物的释放由pH响应机制控制。细胞内的L-谷胱甘肽(GSH)触发纳米组装体完全分解为单个金纳米颗粒。此外,研究表明,相对于单纳米颗粒制剂,纳米球显示出更高的肿瘤靶向效率和治疗效果。因此,金纳米组装体为脑肿瘤治疗提供了一种有效的靶向策略。