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首页> 外文期刊>Biomaterials >Methylene blue-encapsulated phosphonate-terminated silica nanoparticles for simultaneous in vivo imaging and photodynamic therapy.
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Methylene blue-encapsulated phosphonate-terminated silica nanoparticles for simultaneous in vivo imaging and photodynamic therapy.

机译:亚甲基蓝封装的膦酸酯封端的二氧化硅纳米粒子,用于同时体内成像和光动力疗法。

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摘要

A bifunctional nanoparticles-based carrier for simultaneous in vivo imaging and photodynamic therapy by encapsulating methylene blue (MB) alone in the phosphonate-terminated silica matrix has been developed. The phosphonate-terminated silica nanoparticles, entrapping water-soluble photosensitizer MB (MB-encapsulated PSiNPs), are synthesized by the controlled synchronous hydrolysis of tetraethoxysilane and trihydroxyl silyl propyl methyl phosphonate in the water-in-oil microemulsion. The resulting MB-encapsulated PSiNPs effectively prevent the leakage of entrapped MB from the particles and provide protection for against reduction by diaphorase. Enough dose of irradiation to the MB-encapsulated PSiNPs under the light of 635 nm results in efficient generation of singlet oxygen and induces photodynamic damage to Hela cells. Furthermore, the non-invasive visualization of MB-encapsulated PSiNPs in mice under the in vivo imaging system confirmed the MB-encapsulated PSiNPs also presents near-infrared luminescence for in vivo imaging. And the effect of the PDT toward the xenograft tumor in vivo is exciting after imaging the MB-encapsulated PSiNPs injected tumor using in vivo optical imaging system. Thus, the single particle platform is effective for simultaneous in vivo imaging and photodynamic therapy without using extra agent, which can provide image-guidance for site-specific photodynamic therapy.
机译:已经开发了一种基于双功能纳米粒子的载体,用于通过在膦酸酯封端的二氧化硅基质中单独包封亚甲基蓝(MB)来同时进行体内成像和光动力疗法。通过在油包水型微乳状液中四乙氧基硅烷和三羟基甲硅烷基丙基甲基膦酸酯的受控同步水解来合成截留水溶性光敏剂MB(MB包裹的PSiNPs)的膦酸酯封端的二氧化硅纳米粒子。所得的MB包封的PSiNPs有效地防止了被颗粒包裹的MB的泄漏,并提供了防止心肌黄递酶还原的保护作用。在635 nm的光下,对MB封装的PSiNPs进行足够剂量的辐照会导致有效产生单线态氧并诱导对Hela细胞的光动力损伤。此外,在体内成像系统下小鼠体内MB包封的PSiNPs的非侵入性可视化证实了MB包封的PSiNPs在体内成像中也呈现近红外发光。在使用体内光学成像系统对注入MB的PSiNPs注射的肿瘤进行成像后,PDT对体内异种移植肿瘤的作用令人兴奋。因此,单粒子平台可有效用于同时体内成像和光动力疗法,而无需使用额外的试剂,可为特定部位的光动力疗法提供图像指导。

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