Fatahi Zahra, Esfandiari Neda, Ehtesabi Hamide, Bagheri Zeinab, Tavana Hossein, Ranjbar Zahra, Latifi Hamid
Protein Research Center, Shahid Beheshti University G.C., Tehran, Iran.
Department of Bioengineering and Bionanotechnology, Faculty of Life Sciences and Biotechnology, Shahid Beheshti University G.C., Tehran, Iran.
EXCLI J. 2019 Jun 27;18:454-466. doi: 10.17179/excli2019-1465. eCollection 2019.
Carbon dots (CDs) have outstanding optical properties, biocompatibility, and photostability, making them attractive for imaging applications. A facile and green one-step hydrothermal synthesis method is proposed, which can be safely used in a wide range of applications such as chemical sensing, bioimaging, and optoelectronics. In this study, we report green synthesis of carbon dots from bitter orange juice (Citrus Aurantium) by hydrothermal treatment for the first time. We studied effects of time, temperature, and pH on fluorescence of CDs, characterized them using various spectroscopic and microscopic methods, and evaluated their toxicity to different cell lines. Identifying an optimum reaction condition of 180 ºC for 7 h heating gave CDs that showed pH-dependent fluorescence, with the largest fluorescence at a pH of 7.0. The CDs were 1-2 nm in size with a spherical morphology and negative surface charge. The CDs showed a high quantum yield of 19.9 %, reasonable photostability, excellent water solubility, and long fluorescence lifetime. A one step hydrothermal rout led to various hydrophilic functional groups on the surface of the CDs. Our results showed that the CDs were non-toxic over a large concentration range and effective for imaging of cells, indicating their potential as imaging probes in medical diagnostics and biosensor applications.
碳点(CDs)具有出色的光学性能、生物相容性和光稳定性,使其在成像应用中颇具吸引力。本文提出了一种简便、绿色的一步水热合成方法,该方法可安全应用于化学传感、生物成像和光电子学等广泛领域。在本研究中,我们首次报道了通过水热处理从苦橙汁(Citrus Aurantium)中绿色合成碳点。我们研究了时间、温度和pH值对碳点荧光的影响,使用各种光谱和显微镜方法对其进行表征,并评估了它们对不同细胞系的毒性。确定180℃加热7小时的最佳反应条件可得到具有pH依赖性荧光的碳点,在pH为7.0时荧光最强。碳点尺寸为1-2纳米,呈球形形态,表面带负电荷。碳点显示出19.9%的高量子产率、合理的光稳定性、优异的水溶性和长荧光寿命。一步水热法使碳点表面带有各种亲水性官能团。我们的结果表明,碳点在很大的浓度范围内无毒,并且对细胞成像有效,表明它们在医学诊断和生物传感器应用中作为成像探针的潜力。