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Biotechnological applications of nanostructured hybrids of polyamine carbon quantum dots and iron oxide nanoparticles

机译:多胺碳量子点和氧化铁纳米粒子纳米结构杂交物的生物技术应用

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摘要

The combination of different nanomaterials has been investigated during the past few decades and represents an exciting challenge for the unexpected emerging properties of the resulting nano-hybrids. Spermidine (Spd), a biogenic polyamine, has emerged as a useful functional monomer for the development of carbon quantum dots (CQDs). Herein, an electrostatically stabilized ternary hybrid, constituted of iron oxide-DNA (the core) and spermidine carbon quantum dots (CQDSpds, the shell), was self-assembled and fully characterized. The as-obtained nano-hybrid was tested on HeLa cells to evaluate its biocompatibility as well as cellular uptake. Most importantly, besides being endowed by the magnetic features of the core, it displayed drastically enhanced fluorescence properties in comparison with parent CQDSpds and it is efficiently internalized by HeLa cells. This novel ternary nano-hybrid with multifaceted properties, ranging from fluorescence to superparamagnetism, represents an interesting option for cell tracking.
机译:在过去的几十年中已经研究了不同纳米材料的组合,并且代表了所得纳米杂交种的意外新兴性质的激动挑战。生物胺(SPD)是生物聚酰胺,其作为用于开发碳量子点(CQDS)的有用的官能单体。这里,由氧化铁-DNA(核心)和亚精氨基碳量子点(CQDSPDS,壳)构成的静电稳定的三元杂化被自组装和完全表征。在HeLa细胞上测试AS获得的纳米杂种以评估其生物相容性以及细胞吸收。最重要的是,除了核心的磁性赋予核心的磁性之外,与母体CQDSPDS相比,它显示出急剧增强的荧光性质,并且通过HeLa细胞有效地内化。这种新型三元纳米杂交具有多方型性质,范围从荧光到超级分析,代表了细胞跟踪的有趣选择。

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