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首页> 外文期刊>Nanoscale >Composition-property relationships in multifunctional hollow mesoporous carbon nanosystems for PH-responsive magnetic resonance imaging and on-demand drug release
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Composition-property relationships in multifunctional hollow mesoporous carbon nanosystems for PH-responsive magnetic resonance imaging and on-demand drug release

机译:Composition-property关系多功能空心介孔碳纳米系统PH-responsive磁共振成像和随需应变的药物释放

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The construction of intelligent stimuli-responsive nanosystems can substantially improve the sensitivity/resolution/specificity of diagnostic imaging and enhance the therapeutic efficiency of chemotherapy for cancer treatment. This work reports on a generic construction strategy to achieve a multiple stimuli-responsive theranostic system for cancer simply by optimizing the chemical compositions of inorganic nanoplatforms to avoid the tedious and complicated synthetic procedure for traditional organic or organic/inorganic nanosystems. Based on the "breaking up" nature of manganese oxides and specific features of the carbonaceous framework to interact with aromatic drug molecules, manganese oxide nanoparticles were elaborately integrated into hollow mesoporous carbon nanocapsules by a simple in situ framework redox strategy to realize concurrent pH-sensitive T-1-weighted magnetic resonance imaging (MRI) and pH-/HIFU-responsive on-demand drug release. The ultrasensitive disease-triggered MRI performance has been successfully demonstrated by a 52.5-fold increase of longitudinal relaxivity (r(1) = 10.5 mM(-1) s(-1)) and on nude mice 4T1 xenograft. The pH- and HIFU-triggered doxorubicin release and enhanced therapeutic outcome against multidrug resistance of cancer cells were systematically confirmed. In particular, the fabricated inorganic composite nanocapsules were found to feature unique biological behaviours, such as antimetastasis effect, extremely low hemolysis against red blood cells and high in vivo histocompatibility. This report on the successful construction of a pure inorganic nanosystem with multiple stimuli-responsivenesses may pave the way to new methods for the development of intelligent nanofamilies for cancer therapy.
机译:建设智能stimuli-responsive纳米系统可以大幅提高敏感性/解析/特异性的诊断成像,提高治疗效率癌症化疗。报告一个通用的建设策略实现多个stimuli-responsive theranostic通过优化系统癌症化学成分的无机nanoplatforms避免冗长和复杂的合成对传统有机或过程有机/无机纳米系统。锰氧化物和“分手”的本质特定的碳质框架的特性与芳香药物分子,锰氧化物纳米颗粒被精心集成到空心介孔碳氧化还原nanocapsules原位通过一个简单的框架并发pH-sensitive策略来实现T-1-weighted磁共振成像(MRI)pH - / HIFU-responsive随需应变的药物释放。超灵敏disease-triggered MRI表现已经成功地证明了52.5倍增加纵向relaxivity (r (1) = 10.5毫米(1)(1))和裸小鼠4 t1异种移植。pH值和HIFU-triggered阿霉素的释放加强对耐多药治疗结果抗肿瘤细胞系统证实。无机复合nanocapsules被发现功能独特的生物学行为,如antimetastasis效果,极低的溶血对红细胞和高体内组织相容性。建设一个纯无机综合多个stimuli-responsivenesses可能铺平道路发展的新方法智能nanofamilies癌症治疗。

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