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刚果红染料的纳米结构设计用于生物相容性荧光碳点,用于高灵敏 Fe 和铁蛋白检测。

Nanoarchitectonics of Congo red dye to biocompatible fluorescent carbon dots for highly sensitive Fe and ferritin detection.

机构信息

Department of Chemistry, Vel Tech Rangarajan Dr Sagunthala R & D Institute of Science and Technology, Avadi, Chennai-600 062, Tamil Nadu, India.

Department of Chemistry, B. S. Abdur Rahman Crescent Institute of Science and Technology, Chennai-600048, Tamil Nadu, India.

出版信息

Analyst. 2022 Dec 20;148(1):137-145. doi: 10.1039/d2an01674e.

DOI:10.1039/d2an01674e
PMID:36468752
Abstract

In this work, we have meticulously tuned the carcinogenic Congo red dye to environmentally benign fluorescent carbon dots (CDs) by adopting a typical hydrothermal method without any additives. The as-synthesized CDs were extremely water soluble, exhibited an excitation wavelength independent emission with a high fluorescence quantum yield (46%) and were biocompatible. The microscopy results revealed that the CDs were quasi-spherical with a particle diameter of ∼5 nm. The structure and functional groups of the CDs were comprehensively investigated using Fourier-transform infrared, X-ray photoelectron and Raman spectroscopy analyses. These studies show that the CDs were intrinsically functionalized with -OH, N-H and CO groups. In the sensing experiments, the CDs selectively responded to Fe ions over other analytes with a detection limit of 12 nM. The time-resolved fluorescence quenching measurements were used to decipher the sensing mechanism. For the onsite 'equipment-free' detection of iron, we have developed a CD adsorbed paper-based analytical tool. Furthermore, the selective nature of CDs was highly beneficial for detecting Fe in non-heme metalloprotein (ferritin) and real water samples. Thus, the CDs produced from the Congo red dye could be a prospective asset to the bio-imaging and biosensing research fields.

摘要

在这项工作中,我们采用典型的水热法,在不添加任何添加剂的情况下,精心将致癌的刚果红染料调谐为环境友好的荧光碳点(CDs)。合成的 CDs 具有极好的水溶性,表现出激发波长无关的发射特性,具有高荧光量子产率(46%)和生物相容性。显微镜结果表明,CDs 呈类球形,粒径约为 5nm。通过傅里叶变换红外、X 射线光电子能谱和拉曼光谱分析,对 CDs 的结构和官能团进行了全面研究。这些研究表明,CDs 内部功能化有 -OH、N-H 和 C=O 基团。在传感实验中,CDs 对 Fe 离子有选择性响应,对其他分析物的检测限为 12 nM。通过时间分辨荧光猝灭测量来破译传感机制。为了在现场进行“无设备”铁检测,我们开发了一种基于 CD 吸附的纸质分析工具。此外,CDs 的选择性对于检测非血红素金属蛋白(铁蛋白)和真实水样中的 Fe 非常有益。因此,从刚果红染料中产生的 CDs 可能成为生物成像和生物传感研究领域的有前景的资产。

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