Department of Chemistry, Fudan University, Shanghai 200433, PR China; Center of Analysis and Measurement, Fudan University, Shanghai 200433, PR China.
Small. 2014 Jan 15;10(1):109-16. doi: 10.1002/smll.201301297. Epub 2013 Jul 5.
Targeting peptide-modified magnetic graphene-based mesoporous silica (MGMSPI) are synthesized, characterized, and developed as a multifunctional theranostic platform. This system exhibits many merits, such as biocompatibility, high near-infrared photothermal heating, facile magnetic separation, large T2 relaxation rates (r2), and a high doxorubicin (DOX) loading capacity. In vitro and in vivo results demonstrate that DOX-loaded MGMSPI (MGMSPID) can integrate magnetic resonance imaging, dual-targeting recognition (magnetic targeting and receptor-mediated active targeting), and chemo-photothermal therapy into a single system for a visualized-synergistic therapy of glioma. In addition, it is observed that the MGMSPID system has heat-stimulated, pH-responsive, sustained release properties. All of these characteristics would provide a robust multifunctional theranostic platform for visualized glioma therapy.
靶向肽修饰的磁性石墨烯基介孔硅(MGMSPI)被合成、表征,并开发为多功能治疗平台。该系统具有许多优点,如生物相容性、高近红外光热加热、易于磁分离、大 T2 弛豫率(r2)和高阿霉素(DOX)载药量。体外和体内结果表明,负载 DOX 的 MGMSPI(MGMSPID)可以将磁共振成像、双靶向识别(磁靶向和受体介导的主动靶向)和化疗-光热治疗整合到一个单一系统中,用于神经胶质瘤的可视化协同治疗。此外,观察到 MGMSPID 系统具有热刺激、pH 响应、持续释放特性。所有这些特性将为可视化神经胶质瘤治疗提供一个强大的多功能治疗平台。