Behera Lingaraj, Mishra Lopamudra, Mishra Monalisa, Mohapatra Sasmita
Department of Chemistry, National Institute of Technology Rourkela, Odisha, 769008, India.
Department of Life Science, National Institute of Technology Rourkela, Odisha, 769008, India.
J Mater Chem B. 2024 May 29;12(21):5181-5193. doi: 10.1039/d4tb00060a.
Hydrothermally prepared copper-doped carbon dots (Cu-CDs) were modified with Ca, which serve as an excellent platform for the recognition of glycine. The feeble emission of Ca@Cu-CD increases substantially in the presence of glycine due to aggregation-induced emission. At the same time, there was a 5-fold increase in the current response of the Ca@Cu-CD modified electrode as compared to the control. The exceptional combination of fluorescence and conducting properties, along with Ca-glycine interaction, establishes our probe as a dual sensor for the detection of glycine in real serum samples. The limit of detection for this nonenzymatic fluorescence and electrochemical sensing are 17.2 and 4.1 nM, respectively. Furthermore, an extensive evaluation of the toxicity and bioimaging properties in fruit fly shows that the Ca@Cu-CD probe is not cytotoxic and can be applied for imaging of glycine.
水热法制备的铜掺杂碳点(Cu-CDs)用钙进行了修饰,这为甘氨酸的识别提供了一个出色的平台。由于聚集诱导发光,在甘氨酸存在下,Ca@Cu-CD微弱的发射显著增强。同时,与对照组相比,Ca@Cu-CD修饰电极的电流响应增加了5倍。荧光和导电特性的出色结合,以及钙与甘氨酸的相互作用,使我们的探针成为用于检测实际血清样品中甘氨酸的双功能传感器。这种非酶荧光和电化学传感的检测限分别为17.2和4.1 nM。此外,对果蝇毒性和生物成像特性的广泛评估表明,Ca@Cu-CD探针没有细胞毒性,可用于甘氨酸成像。