CAS Key laboratory of Chemistry of Northwestern Plant Resources and Key laboratory for Natural Medicine of Gansu Province, Lanzhou Institute of Chemical Physics, The Chinese Academy of Sciences, Lanzhou 730000, PR China.
Key Laboratory of Bioelectrochemistry & Environmental Analysis of Gansu Province, College of Chemistry & Chemical Engineering, Northwest Normal University, Lanzhou 730000, PR China.
Talanta. 2017 Oct 1;173:94-100. doi: 10.1016/j.talanta.2017.05.045. Epub 2017 May 17.
An electrochemical sensor using the composites of graphene quantum dots (GQDs) and β-cyclodextrins (β-CDs) functionalized glassy carbon electrode (GCE) was developed for determination and recognition of tyrosine (Tyr) enantiomers which are biomarker of depression. The modified electrode is simple to fabricate and rapid, sensitive, selective to detect the Tyr enantiomers. In order to further validate the feasibility of the electrochemical sensor in real samples, the sensor was applied to the detection of L-Tyr in blood serum samples of healthy people and depression patients, and found that the quantities of L-Tyr of depression patients in serum is less than healthy people. The β-CDs-GQDs composites were fabricated as modification layer of electrodes. GQDs were used as substrate and functionalized with β-CDs. The β-CDs-GQDs composites utilized nanosize of GQDs and enantioselectivity of β-CDs to realize chiral recognition of Tyr. The β-CDs-GQDs modified electrode presented significant difference in the oxidation peak current with ratio of L to D-Tyr reaching 2.35. The detection limits of L-Tyr and D-Tyr were 6.07×10 M and 1.03×10 M, respectively and superior to detection limits of the reported methods. In addition, the stability and reproducibility of the prepared modified electrode were investigated, and achieved good results.
一种电化学传感器,使用石墨烯量子点(GQDs)和β-环糊精(β-CDs)功能化玻碳电极(GCE)的复合材料,用于测定和识别酪氨酸(Tyr)对映异构体,其是抑郁症的生物标志物。修饰电极易于制造,具有快速、灵敏、选择性,可用于检测 Tyr 对映异构体。为了进一步验证电化学传感器在实际样品中的可行性,将传感器应用于健康人和抑郁症患者血清样品中 L-Tyr 的检测,发现抑郁症患者血清中 L-Tyr 的含量低于健康人。β-CDs-GQDs 复合材料被用作电极的修饰层。GQDs 被用作基底,并与β-CDs 功能化。β-CDs-GQDs 复合材料利用 GQDs 的纳米尺寸和β-CDs 的对映选择性实现了 Tyr 的手性识别。β-CDs-GQDs 修饰电极的氧化峰电流与 L 与 D-Tyr 的比值有显著差异,达到 2.35。L-Tyr 和 D-Tyr 的检测限分别为 6.07×10 M 和 1.03×10 M,优于报道的方法的检测限。此外,还研究了制备的修饰电极的稳定性和重现性,取得了良好的效果。