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Near-infrared light and tumor microenvironment dual responsive size-switchable nanocapsules for multimodal tumor theranostics

机译:近红外光和肿瘤微环境双响应大小可切换纳米胶囊用于多峰肿瘤治疗学

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摘要

Smart drug delivery systems (SDDSs) for cancer treatment are of considerable interest in the field of theranostics. However, developing SDDSs with early diagnostic capability, enhanced drug delivery and efficient biodegradability still remains a scientific challenge. Herein, we report near-infrared light and tumor microenvironment (TME), dual responsive as well as size-switchable nanocapsules. These nanocapsules are made of a PLGA-polymer matrix coated with Fe/FeO core-shell nanocrystals and co-loaded with chemotherapy drug and photothermal agent. Smartly engineered nanocapsules can not only shrink and decompose into small-sized nanodrugs upon drug release but also can regulate the TME to overproduce reactive oxygen species for enhanced synergistic therapy in tumors. In vivo experiments demonstrate that these nanocapsules can target to tumor sites through fluorescence/magnetic resonance imaging and offer remarkable therapeutic results. Our synthetic strategy provides a platform for next generation smart nanocapsules with enhanced permeability and retention effect, multimodal anticancer theranostics, and biodegradability.
机译:在肿瘤治疗学领域中,用于癌症治疗的智能药物输送系统(SDDS)引起了人们的极大兴趣。然而,开发具有早期诊断能力,增强的药物递送和有效的生物降解性的SDDS仍然是科学挑战。在这里,我们报告近红外光和肿瘤微环境(TME),双重反应以及大小可切换的纳米胶囊。这些纳米胶囊由涂有Fe / FeO核壳纳米晶体的PLGA聚合物基质制成,并与化学药物和光热剂共同装载。精心设计的纳米胶囊不仅可以在药物释放后收缩并分解成小尺寸的纳米药物,还可以调节TME以过量产生活性氧,从而增强肿瘤的协同治疗。体内实验表明,这些纳米胶囊可以通过荧光/磁共振成像靶向肿瘤部位,并提供卓越的治疗效果。我们的合成策略为具有增强的渗透性和保留效果,多峰抗癌治疗学和生物降解性的下一代智能纳米胶囊提供了平台。

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