Electrodics and Electrocatalysis Division, CSIR-Central Electrochemical Research Institute (CECRI), Karaikudi 630 003, Tamil Nadu, India.
Academy of Scientific & Innovative Research (AcSIR), Ghaziabad 201 002, India.
ACS Appl Bio Mater. 2024 Jul 15;7(7):4602-4610. doi: 10.1021/acsabm.4c00474. Epub 2024 Jun 13.
Biocompatible, industrially scalable, and opto/electrochemically active biomaterials are promising for biosensor platform design and application. Herein, cyclic oligosaccharide, β-cyclodextrin (BCD), is conjugated with Butein, a chalcone-type polyphenol, via dehydration reaction of the hydroxyl groups of BCD and the benzoyl ring of Butein. Functional group changes in the conjugated BCD-Butein were comprehensively studied using UV-visible absorbance, Fourier transform-infrared, and X-ray photoelectron spectroscopic techniques. The electrochemical characteristics of BCD-Butein were explored using cyclic voltammetry, showing the reversible redox behavior (2e/2H) attributed to the catecholic OH group of Butein. The BCD-Butein-modified electrode exhibits a surface-confined redox process ( = 0.99, and ) at the interface, suitable for external mediatorless sensor studies. An enzymatic biomolecular sensor has been constructed using BCD-Butein-modified glassy carbon and a screen-printed electrode targeting sialic acid as the model clinical biomarker. With the enzyme sialic acid aldolase, BCD-Butein-modified substrate exhibited a selective conversion of sialic acid to -acetyl-d-mannosamine and pyruvate, with a wide linear detection range (1-100 nM), the lowest detection limit of 0.2 nM, and a quantification limit of 0.69 nM, convenient for clinical threshold diagnosis.
具有生物相容性、工业可扩展性和光电化学活性的生物材料有望用于生物传感器平台的设计和应用。在此,通过环糊精(BCD)的羟基和补骨脂素的苯甲酰环之间的脱水反应,将查尔酮型多酚补骨脂素与环状低聚糖β-环糊精(BCD)偶联。使用紫外可见吸收光谱、傅里叶变换红外光谱和 X 射线光电子能谱技术全面研究了偶联的 BCD-补骨脂素的官能团变化。使用循环伏安法研究了 BCD-补骨脂素的电化学特性,显示出归因于补骨脂素的邻苯二酚 OH 基团的可逆氧化还原行为(2e/2H)。BCD-补骨脂素修饰电极在界面处表现出表面受限的氧化还原过程(=0.99,和),适合用于外部无介体传感器研究。使用 BCD-补骨脂素修饰的玻碳和丝网印刷电极构建了针对唾液酸的酶生物分子传感器作为模型临床生物标志物。用酶唾液酸醛缩酶,BCD-补骨脂素修饰的底物表现出唾液酸向 -乙酰-d-甘露糖胺和丙酮酸的选择性转化,具有宽线性检测范围(1-100 nM)、最低检测限为 0.2 nM 和定量限为 0.69 nM,方便临床阈值诊断。