Tian Wei, Su Yunyan, Tian Ying, Wang Shouju, Su Xiaodan, Liu Ying, Zhang Yunlei, Tang Yuxia, Ni Qianqian, Liu Wenfei, Dang Meng, Wang Chunyan, Zhang Junjie, Teng Zhaogang, Lu Guangming
Department of Medical Imaging Jinling Hospital Nanjing Clinical School Southern Medical University (Guangzhou) Nanjing 210002 Jiangsu P. R. China; Department of Medical Imaging Jinling Hospital School of Medicine Nanjing University Nanjing 210002 Jiangsu P. R. China.
Department of Medical Imaging Jinling Hospital School of Medicine Nanjing University Nanjing 210002 Jiangsu P. R. China.
Adv Sci (Weinh). 2016 Nov 21;4(3):1600356. doi: 10.1002/advs.201600356. eCollection 2017 Mar.
Complete eradication of highly aggressive triple negative breast cancer (TNBC) remains a notable challenge today. In this work, an imaging-guided photothermal-chemotherapy strategy for TNBC is developed for the first time based on a periodic mesoporous organosilica (PMO) coated Prussian blue (PB@PMO) nanoplatform. The PB@PMOs have organic-inorganic hybrid frameworks, uniform diameter (125 nm), high surface area (866 m g), large pore size (3.2 nm), excellent photothermal conversion capability, high drug loading capacity (260 µg mg), and magnetic resonance (MR) and photoacoustic (PA) imaging abilities. The MR and PA properties of the PB@PMOs are helpful for imaging the tumor and showing the accumulation of the nanoplatform in the tumor region. The bioluminescence intensity and tumor volume of the MDA-MB-231-Luc tumor-bearing mouse model demonstrate that TNBC can be effectively inhibited by the combined photothermal-chemotherapy than monotherapy strategy. Histopathological analysis further reveals that the combination therapy results in most extensive apoptotic and necrotic cells in the tumor without inducing obvious side effect to major organs.
如今,彻底根除高侵袭性三阴性乳腺癌(TNBC)仍然是一项显著的挑战。在这项工作中,首次基于周期性介孔有机硅(PMO)包覆的普鲁士蓝(PB@PMO)纳米平台,开发了一种用于TNBC的成像引导光热化疗策略。PB@PMO具有有机-无机杂化框架、均匀的直径(125nm)、高比表面积(866m²/g)、大孔径(3.2nm)、优异的光热转换能力、高载药量(260μg/mg)以及磁共振(MR)和光声(PA)成像能力。PB@PMO的MR和PA特性有助于对肿瘤进行成像,并显示纳米平台在肿瘤区域的积累情况。MDA-MB-231-Luc荷瘤小鼠模型的生物发光强度和肿瘤体积表明,与单一疗法相比,联合光热化疗能够有效抑制TNBC。组织病理学分析进一步揭示,联合疗法导致肿瘤中出现最广泛的凋亡和坏死细胞,而对主要器官未产生明显副作用。