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首页> 外文期刊>RSC Advances >A multifunctional nanoplatform based on mesoporous silica nanoparticles for imaging-guided chemo/photodynamic synergetic therapy
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A multifunctional nanoplatform based on mesoporous silica nanoparticles for imaging-guided chemo/photodynamic synergetic therapy

机译:基于介孔二氧化硅纳米粒子的多功能纳米平台,用于影像引导的化学/光动力协同治疗

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Multifunctional nanoplatforms based on mesoporous silica nanoparticles (MSNs) have recently shown great promise in drug delivery and therapy. Herein, a multifunctional nanoplatform based on MSNs is fabricated by a modified micro-emulsion method for drug delivery and imaging-guided chemo/photodynamic synergistic therapy. Carbon dots (C-dots) and a photosensitizer, rose bengal (RB), are embedded in the core/shell structured MSNs to form MSN@C-dots/RB nanoparticles, in which C-dots can serve as a fluorescence probe to achieve cell fluorescence imaging and RB can generate singlet oxygen to perform photodynamic therapy. MSN@C-dots/RB nanoparticles can efficiently prevent the self-aggregation-induced quenching of photosensitizer molecules, which facilitates a large production of cytotoxic singlet oxygen and thus an enhanced PDT efficacy. Furthermore, a remarkable chemo/photodynamic synergistic anti-tumor effect was achieved with MSN@C-dots/RB nanoparticles loaded with doxorubicin (DOX) under green light irradiation. In addition, a significant bacterial inhibitory effect has been achieved by the antimicrobial assay via loading ampicillin in the MSNs@C-dots/RB nanoparticles, thereby demonstrating the versatility of this multifunctional nanoplatform. The results revealed that this MSN-based chemo/photodynamic synergistic nanoplatform has great promise in imaging assisted cancer therapy and bacteria inhibition.
机译:基于中孔二氧化硅纳米颗粒(MSN)的多功能纳米平台最近在药物输送和治疗中显示出了广阔的前景。在本文中,通过改进的微乳液方法制备了基于MSN的多功能纳米平台,用于药物递送和成像引导的化学/光动力协同治疗。碳点(C点)和光敏剂玫瑰红(RB)嵌入到核/壳结构的MSN中,形成MSN @ C点/ RB纳米粒子,其中C点可用作荧光探针以实现细胞荧光成像和RB可以产生单线态氧进行光动力疗法。 MSN @ C-dots / RB纳米颗粒可有效防止光敏剂分子自聚集诱导的猝灭,从而促进细胞毒性单线态氧的大量生产,从而增强了PDT的功效。此外,载有阿霉素(DOX)的MSN @ C-dots / RB纳米粒子在绿光照射下获得了显着的化学/光动力协同抗肿瘤作用。此外,通过将氨苄青霉素加载到MSNs @ C-dots / RB纳米颗粒中的抗菌素测定法 已实现了显着的细菌抑制作用,从而证明了这种多功能纳米平台的多功能性。结果表明,这种基于MSN的化学/光动力协同纳米平台在影像辅助癌症治疗和细菌抑制方面具有广阔的前景。

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