A new near-infrared persistent luminescence nanoparticle as a multifunctional nanoplatform for multimodal imaging and cancer therapy.

Shi, Junpeng; Sun, Xia; Zheng, Shenghui; Li, Jinlei; Fu, Xiaoyan; Zhang, Hongwu · Biomaterials · 2018

basic_science · Level V

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Abstract

Multifunctional nanoplatforms with multimodal imaging and cancer therapy capabilities have attracted attention in biomedical applications. Near-infrared persistent luminescence nanoparticles (NPLNPs) were considered one of the most promising candidates for constructing multifunctional nanoplatforms due to the absence of in situ excitation and high signal-to-noise ratios (SNRs). Here, we report a novel NPLNP mSiO<sub>2</sub>@Gd<sub>3</sub>Ga<sub>5</sub>O<sub>12</sub>:Cr<sup>3+</sup>, Nd<sup>3+</sup> (mSiO<sub>2</sub>@GGO) as multifunctional nanoplatforms for multimodal imaging and cancer therapy. These NPs exhibited a persistent luminescence (745 nm) of more than 3 h in the first near-infrared window (NIR-I) after UV excitation, which can realize high SNRs and long-term in vivo imaging. Moreover, these NPs showed excellent NIR luminescence (1067 nm) in the second near-infrared window (NIR-II) under 808 nm excitation, which is more suitable for deep tissue imaging due to the lower photon scattering and deeper tissue penetration of NIR-II luminescence. Furthermore, the host Gd<sub>3</sub>Ga<sub>5</sub>O<sub>12</sub> with high Gd<sup>3+</sup> concentration showed a high r<sub>1</sub> value (10.70 mM<sup>-1</sup> s<sup>-1</sup>) and was suitable for T<sub>1</sub> MR imaging. The mesoporous silica nanoparticles (mSiO<sub>2</sub>) served as a framework to control the mSiO<sub>2</sub>@GGO particle morphology and provide low toxicity and drug loading capacity for cancer therapy.

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