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Carbon Dots: Promising Biomaterials for Bone-Specific Imaging and Drug Delivery

机译:碳点:用于骨特异性成像和药物输送的有前途的生物材料

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摘要

Bone-related diseases and dysfunctions are heavy burdens on our increasingly aged society. One important strategy to relieve this problem is through early detection and treatment of bone-related diseases. Towards this goal, there has been constant interest in developing novel bone-specific materials for imaging and drug delivery. Currently, however, materials that have high affinity and specificity towards bone are very limited. Carbon dots (C-dots) synthesized from carbon nanopowder bind to calcified bones in vivo with high affinity and specificity. In this study we show that bone binding is highly unique to a specific type of C-dots, and that this binding is non-toxic. Significantly, C-dots derived from other raw materials did not show any bone binding properties. These differences are attributed to differences in surface chemistry of C-dots preparations, highlighting the heterogeneous nature of C-dots. Importantly, bone-binding by carbon nanopowder derived C-dots are not significantly altered by chemical functionalization of their surface. These unique properties indicate the potential applications of carbon nanopowder-derived C-dots as highly bone-specific bioimaging agents and drug carriers.
机译:骨相关疾病和功能障碍是我们日趋老龄化社会的沉重负担。缓解此问题的一项重要策略是通过早期发现和治疗骨相关疾病。为了实现这一目标,一直在开发用于成像和药物输送的新型骨特异性材料。然而,目前,对骨具有高亲和力和特异性的材料非常有限。由碳纳米粉合成的碳点(C点)在体内以高亲和力和特异性结合到钙化的骨骼上。在这项研究中,我们表明骨结合对于特定类型的C点是高度独特的,并且这种结合是无毒的。明显地,源自其他原材料的碳点未显示任何骨结合特性。这些差异归因于C点制剂的表面化学差异,突出了C点的异质性。重要的是,碳纳米粉衍生的C点的骨结合不会因其表面的化学功能化而显着改变。这些独特的性质表明,碳纳米粉衍生的C点作为高度骨特异性生物成像剂和药物载体的潜在应用。

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