Institute of Environmental Science, and School of Chemistry and Chemical Engineering, Shanxi University, Taiyuan 030006, PR China.
Institute of Environmental Science, and School of Chemistry and Chemical Engineering, Shanxi University, Taiyuan 030006, PR China.
Spectrochim Acta A Mol Biomol Spectrosc. 2019 Apr 15;213:90-96. doi: 10.1016/j.saa.2019.01.040. Epub 2019 Jan 16.
A novel far-red fluorescence resonance energy transfer (FRET) fluorescent probe for ratiometric detection of l-cysteine (l-Cys) has been designed. The system was established a FRET assembly by positively charged carbon dots (CDs) and negatively charged N-acetyl-l-cysteine capped gold nanoparticles (NAC-AuNPs). The fluorescence of CDs at 539 nm could be effectively quenched in the presence of NAC-AuNPs owing to FRET process, while the emission of NAC-AuNPs at 630 nm was appeared. Subsequently, the interactions between l-Cys and NAC-AuNPs resulted in the decreased emission intensity of NAC-AuNPs, but the emission intensity of CDs kept almost constant due to the continuous FRET efficiency. The ratio of emission intensities at 539 and 630 nm (I/I) exhibited a linear correlation to the l-Cys concentration in the range of 1.0-110 μM with the detection limit of 0.16 μM. Moreover, this far-red ratiometric sensor also revealed excellent selectivity toward l-Cys over other amino acids, which showed very high potential in the practical application for diagnosing of cysteine-related disease.
设计了一种新型的远红光荧光共振能量转移(FRET)荧光探针,用于比色检测 l-半胱氨酸(l-Cys)。该系统通过带正电荷的碳点(CDs)和带负电荷的 N-乙酰-l-半胱氨酸封端的金纳米颗粒(NAC-AuNPs)建立了 FRET 组装体。由于 FRET 过程,CDs 在 539nm 处的荧光可以被有效地猝灭,而 NAC-AuNPs 在 630nm 处的发射则出现。随后,l-Cys 与 NAC-AuNPs 的相互作用导致 NAC-AuNPs 的发射强度降低,但由于连续的 FRET 效率,CDs 的发射强度几乎保持不变。539nm 和 630nm 处发射强度的比值(I/I)与 1.0-110μM 范围内的 l-Cys 浓度呈线性相关,检测限为 0.16μM。此外,这种远红光比率传感器对 l-Cys 相对于其他氨基酸也表现出优异的选择性,这在诊断与半胱氨酸相关的疾病的实际应用中显示出了很高的潜力。