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Rational assembly of a biointerfaced core@shell nanocomplex towards selective and highly efficient synergistic photothermal/photodynamic therapy

机译:合理的装配的biointerfaced core@shellnanocomplex对选择性和高度高效的协同光热光谱分析/光动力治疗

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To optimize synergistic cancer therapy, we rationally assemble an inorganic-organic nanocomplex using a folate-modified lipid bilayer spread on photosensitizer-entrapped mesoporous silica nanoparticle (MSN) coated gold nanorods (AuNRs). In this hybrid bioconjugate, the large specific surface area and pore size of AuNR@MSN guarantee a high loading capacity of small photosensitive molecules. The modification with selective mixed liposomes on the surface of AuNR@MSN enables faster cellular internalization and enhancement of endocytosis. Under one-time NIR two-photon illumination, AuNR-mediated hyperthermia can kill cancer cells directly. Meanwhile, the loaded photosensitizer, hypocrellin B, generates two kinds of reactive oxygen species (ROS) to induce cell apoptosis. Remarkably, hyperthermia can improve the yield of ROS. After intravenous injection of this bioconjugate into female BALB/c nude mice followed by laser irradiation (808 nm, 1.3 W cm(-2), 6 min), the tumor growth is suppressed completely. The tumors are not recurrent within the observation time (19 days), and the normal or main organs are not obviously pathological. Thus, such a simplified and selective cancer treatment, combining photothermal and photodynamic therapy in a synergistic manner, provides outstanding efficiency in vivo. This nanocomplex with well-defined core@shell nanostructures integrated with a two-photon technique holds great promise to improve cancer phototherapy with a high efficiency in the clinic.
机译:优化协同癌症治疗,我们合理组建一个无机nanocomplex使用folate-modified脂质双分子层传播photosensitizer-entrapped介孔硅纳米颗粒(MSN)涂覆金纳米棒(AuNRs)。比表面积和孔隙大小AuNR@MSN保证高负荷容量小光敏分子。选择混合脂质体的表面上AuNR@MSN允许更快的细胞内化和内吞作用的增强。近红外光谱双光子照明,AuNR-mediated高热可以直接杀死癌细胞。与此同时,加载光敏剂,hypocrellin B,生成两种反应氧物种(ROS)诱导细胞凋亡。值得注意的是,高热可以提高产量ROS。bioconjugate雌性BALB / c裸小鼠其次是激光辐照(808海里,1.3 W厘米(2),6分钟),抑制肿瘤的生长完全。观察时间(19天),正常的或主要器官并不明显的病态。一个简化的和有选择性的癌症治疗等结合光照,光动力治疗以协同的方式,提供了杰出的效率体内。定义良好的core@shell纳米结构集成双光子技术拥有更大的潜力提高癌症光疗高效率在诊所。

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