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Biodegradable luminescent porous silicon nanoparticles for in vivo applications

机译:用于体内应用的可生物降解的发光多孔硅纳米粒子

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摘要

Nanomaterials that can circulate in the body hold great potential to diagnose and treat disease. For such applications, it is important that the nanomaterials be harmlessly eliminated from the body in a reasonable period of time after they carry out their diagnostic or therapeutic function. Despite efforts to improve their targeting efficiency, significant quantities of systemically administered nanomaterials are cleared by the mononuclear phagocytic system before finding their targets, increasing the likelihood of unintended acute or chronic toxicity. However, there has been little effort to engineer the self-destruction of errant nanoparticles into non-toxic, systemically eliminated products. Here, we present luminescent porous silicon nanoparticles (LPSiNPs) that can carry a drug payload and of which the intrinsic near-infrared photoluminescence enables monitoring of both accumulation and degradation in vivo. Furthermore, in contrast to most optically active nanomaterials (carbon nanotubes, gold nanoparticles and quantum dots), LPSiNPs self-destruct in a mouse model into renally cleared components in a relatively short period of time with no evidence of toxicity. As a preliminary in vivo application, we demonstrate tumour imaging using dextran-coated LPSiNPs (D-LPSiNPs). These results demonstrate a new type of multifunctional nanostructure with a low-toxicity degradation pathway for in vivo applications.
机译:可以在体内循环的纳米材料在诊断和治疗疾病方面具有巨大的潜力 。对于此类应用,重要的是在纳米材料执行其诊断或治疗功能后的合理时间内,将其无害地从体内清除掉。尽管努力提高其靶向效率,单核吞噬系统清除了大量全身施用的纳米材料,然后才找到它们的靶标,从而增加了意外的急性或慢性毒性的可能性。但是,几乎没有任何努力将错误的纳米粒子自毁工程化为无毒,被系统淘汰的产品。在这里,我们介绍了可以携带药物有效载荷的发光多孔硅纳米颗粒(LPSiNPs),其固有的近红外光致发光能够监测体内的积累和降解。此外,与大多数光学活性纳米材料(碳纳米管,金纳米颗粒和量子点)相比,LPSiNPs在小鼠模型中会在相对较短的时间内自毁为肾脏清除的成分,而没有毒性证据。作为体内的初步应用,我们证明了使用葡聚糖包被的LPSiNPs(D-LPSiNPs)的肿瘤成像。这些结果证明了一种新型的多功能纳米结构,具有体内应用的低毒性降解途径。

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