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椰子碳点:酪氨酸的逐步大规模合成、详细生物活性及智能传感能力

Coconut Carbon Dots: Progressive Large-Scale Synthesis, Detailed Biological Activities and Smart Sensing Aptitudes towards Tyrosine.

作者信息

Chauhan Pooja, Mundekkad Deepa, Mukherjee Amitava, Chaudhary Savita, Umar Ahmad, Baskoutas Sotirios

机构信息

Centre of Advanced Studies in Chemistry, Department of Chemistry, Panjab University, Chandigarh 160014, India.

Centre for Nanobiotechnology, Vellore Institute of Technology, Vellore 632014, India.

出版信息

Nanomaterials (Basel). 2022 Jan 3;12(1):162. doi: 10.3390/nano12010162.

Abstract

In the recent era, carbon dots (C-dots) have been extensively considered as a potential tool in drug delivery analysis. However, there have been fewer reports in the literature on their application in the sensing of amino acids. As part of our ongoing research on coconut-husk-derived C-dots, we synthesized C-dots under different temperature conditions and utilized them in the field of amino acid sensing and found them to be highly selective and sensitive towards tyrosine. The detailed characterization of the prepared C-dots was carried out. The developed C-dots exhibit good values of quantum yield. BSA, HSA and glutamic acid were utilized to explore the binding efficiency of C-dots with biologically active components. Hemolysis, blood clotting index activity and cell viability assays using the prepared C-dots were evaluated and they were found to be biocompatible. Therefore, the C-dots described in this work have high potential to be utilized in the field of amino acid sensing, especially L-tyrosine. The limit of detection and the binding constant for the developed C-dots in the presence of tyrosine were found to be 0.96 nM and 296.38 nM, respectively. The efficiency of the developed C-dots was also investigated in the presence of various other amino acids and different water mediums in order to enhance the working scope of the developed sensors.

摘要

近年来,碳点(C点)已被广泛视为药物递送分析中的一种潜在工具。然而,关于它们在氨基酸传感中的应用,文献报道较少。作为我们对椰子壳衍生C点持续研究的一部分,我们在不同温度条件下合成了C点,并将其用于氨基酸传感领域,发现它们对酪氨酸具有高度选择性和敏感性。对制备的C点进行了详细表征。所开发的C点表现出良好的量子产率值。利用牛血清白蛋白(BSA)、人血清白蛋白(HSA)和谷氨酸来探究C点与生物活性成分的结合效率。使用制备的C点进行了溶血、凝血指数活性和细胞活力测定,发现它们具有生物相容性。因此,本文所述的C点在氨基酸传感领域,尤其是L - 酪氨酸传感方面具有很高的应用潜力。在酪氨酸存在下,所开发C点的检测限和结合常数分别为0.96 nM和296.38 nM。为了扩大所开发传感器的工作范围,还研究了在各种其他氨基酸和不同水介质存在下所开发C点的效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0f3/8746512/fe994df09a31/nanomaterials-12-00162-g001.jpg

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