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Voltage/pH-Driven Mechanized Silica Nanoparticles for the Multimodal Controlled Release of Drugs

机译:电压/ pH驱动的机械化二氧化硅纳米粒子用于药物的多峰控制释放

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The major challenges of current drug delivery systems for combination chemotherapy focus on how to efficiently transport drugs to target sites and release multiple drugs in a programmed manner. Herein, we report a novel multidrug delivery system, MSNPs 1, based on mechanized silica nanopartides, which were constructed through functionalization of mesoporous silica nanopartides with the acid-cleavable intermediate linkages and the monoferrocene functionalized beta-cyclodextrin (Fc-beta-CD) as supramolecular nanovalves. MSNPs 1 achieved zero premature release in the physiological pH solution and realized two different release modalities. In modality 1, MSNPs 1 released the encapsulated drugs gemcitabine (GEM) and doxorubicin (DOX) in sequence when they were successively applied to voltage and acid stimuli. The release time and dosage of GEM were precisely controlled via external voltage. The subsequent acid-triggered release of DOX was attributed to breakage of the intermediate linkages containing ketal groups. Modality 2 is the concurrent release of these two drugs directly upon acid exposure. Furthermore, the cell viability experiments demonstrated that MSNPs 1 had an improved cytotoxicity to MCF7 cells in comparison with single DOX- or GEM-loaded mechanized silica nanopartides. We envisage that MSNPs 1 will play an important role in research and development for a new generation of controlled-release drug delivery system.
机译:当前用于组合化学疗法的药物输送系统的主要挑战集中在如何有效地将药物输送到目标部位并以编程方式释放多种药物。在这里,我们报告了一种新型的多药递送系统,MSNPs 1,基于机械化的二氧化硅纳米粒子,是通过具有酸可裂解的中间键和单二茂铁官能化的β-环糊精(Fc-β-CD)的介孔二氧化硅纳米粒子的官能化而构建的超分子纳米阀。 MSNP 1在生理pH溶液中实现了零过早释放,并实现了两种不同的释放方式。在方式1中,当MSNPs 1依次施加到电压和酸刺激上时,它们依次释放出封装的药物吉西他滨(GEM)和阿霉素(DOX)。 GEM的释放时间和剂量可通过外部电压精确控制。随后酸触发的DOX释放归因于含缩酮基团的中间键的断裂。方式2是这两种药物在酸暴露后直接同时释放。此外,细胞活力实验表明,与单DOX或GEM加载的机械化二氧化硅纳米粒子相比,MSNPs 1对MCF7细胞具有改善的细胞毒性。我们设想,MSNPs 1将在新一代控释药物递送系统的研发中发挥重要作用。

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