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Gram-scale synthesis of coordination polymer nanodots with renal clearance properties for cancer theranostic applications

机译:克重级合成具有肾脏清除特性的配体聚合物纳米点,用于癌症治疗学应用

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摘要

An ultrasmall hydrodynamic diameter is a critical factor for the renal clearance of nanoparticles from the body within a reasonable timescale. However, the integration of diagnostic and therapeutic components into a single ultrasmall nanoparticle remains challenging. In this study, pH-activated nanodots (termed Fe-CPNDs) composed of coordination polymers were synthesized via a simple and scalable method based on coordination reactions among Fe3+, gallic acid and poly(vinylpyrrolidone) at ambient conditions. The Fe-CPNDs exhibited ultrasmall (5.3 nm) hydrodynamic diameters and electrically neutral surfaces. The Fe-CPNDs also exhibited pH-activatable magnetic resonance imaging contrast and outstanding photothermal performance. The features of Fe-CPNDs greatly increased the tumour-imaging sensitivity and facilitated renal clearance after injection in animal models in vivo. Magnetic resonance imaging-guided photothermal therapy using Fe-CPNDs completely suppressed tumour growth. These findings demonstrate that Fe-CPNDs constitute a new class of renal clearable nanomedicine for photothermal therapy and molecular imaging.
机译:超小的流体动力学直径是纳米颗粒在合理的时间内从体内清除肾脏的关键因素。然而,将诊断和治疗成分整合到单个超小纳米颗粒中仍然具有挑战性。在这项研究中,在环境条件下,基于Fe3 +,没食子酸和聚乙烯吡咯烷酮之间的配位反应,通过简单而可扩展的方法合成了由配位聚合物组成的pH活化纳米点(称为Fe-CPNDs)。 Fe-CPNDs具有超小(5.3 nm)的流体动力学直径和电中性表面。 Fe-CPNDs还表现出pH激活的磁共振成像对比度和出色的光热性能。 Fe-CPNDs的特征极大地增加了体内动物模型注射后的肿瘤成像敏感性,并促进了肾脏清除。使用Fe-CPND的磁共振成像引导光热疗法完全抑制了肿瘤的生长。这些发现表明,Fe-CPNDs构成了一类用于光热疗法和分子成像的肾脏可清除的纳米药物。

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