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Coumarin-Modified CQDs for Biomedical Applications—Two-Step Synthesis and Characterization

机译:用于生物医学应用的香豆素改性CQD - 两步合成和表征

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摘要

Waste biomass such as lignin constitutes a great raw material for eco-friendly carbon quantum dots (CQDs) synthesis, which find numerous applications in various fields of industry and medicine. Carbon nanodots, due to their unique luminescent properties as well as water-solubility and biocompatibility, are superior to traditional organic dyes. Thus, obtainment of CQDs with advanced properties can contribute to modern diagnosis and cell visualization method development. In this article, a new type of coumarin-modified CQD was obtained via a hybrid, two-step pathway consisting of hydrothermal carbonization and microwave-assisted surface modification with coumarin-3-carboxylic acid and 7-(Diethylamino) coumarin-3-carboxylate. The ready products were characterized over their chemical structure and morphology. The nanomaterials were confirmed to have superior fluorescence characteristics and quantum yield up to 18.40%. They also possessed the ability of biomolecules and ion detection due to the fluorescence quenching phenomena. Their lack of cytotoxicity to L929 mouse fibroblasts was confirmed by XTT assay. Moreover, the CQDs were proven over their applicability in real-time bioimaging. Obtained results clearly demonstrated that proposed surface-modified carbon quantum dots may become a powerful tool applicable in nanomedicine and pharmacy.
机译:诸如木质素的废物生物量构成环保碳量子点(CQDS)合成的巨大原料,其在各种工业和医学领域中发现了许多应用。由于它们独特的发光性能以及水溶性和生物相容性,碳纳米蛋白优异于传统的有机染料。因此,以先进的属性获得CQD可以有助于现代诊断和细胞可视化方法开发。在本文中,通过杂化,两步途径获得了一种新型的香豆素改性CQD,其由水热碳化和微波辅助表面改性与香豆素-3-羧酸和7-(二乙基氨基)香豆素-3-羧酸盐组成。 READY产品的特征在于它们的化学结构和形态。确认纳米材料具有优异的荧光特性,量子产率高达18.40%。它们还具有由于荧光猝灭现象引起的生物分子和离子检测的能力。通过XTT测定证实了它们对L929小鼠成纤维细胞的缺乏细胞毒性。此外,CQD在实时生物分析中以适用性证明了CQD。获得的结果清楚地证明,所提出的表面改性的碳量子点可能成为适用于纳米医生和药房的强大工具。

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