Centro de Ciência e Tecnologia, Universidade Federal do Cariri, Juazeiro do Norte 63048-080, CE, Brazil.
REQUIMTE-LAQV, Instituto Superior de Engenharia do Porto, Instituto Politécnico do Porto, Rua Dr. António Bernardino de Almeida, 431, 4249-015 Porto, Portugal.
Biosensors (Basel). 2023 Feb 3;13(2):224. doi: 10.3390/bios13020224.
mushroom biomass contains a lectin, ABL, with remarkable specificity for lactose biorecognition; in this work, this feature was explored to develop a photoelectrochemical biosensor. The high lectin activity found in saline extracts of this macrofungus (640 HU mL), even at critical pH values (4-10) and temperatures (20-100 °C), allowed its direct use as an ABL source. Theoretical and experimental evidence revealed favorable electrostatic and biocompatible conditions to immobilize ABL on a poly(methylene blue)/fluorine-doped tin oxide-coated glass platform, giving rise to the ABL/PMB/FTO biosensor. The conducting polymer added further photoactivity to the device, allowing the identification of lectin-carbohydrate interactions with even greater sensitivity. The dose-response curves studied by electrochemical impedance spectroscopy showed a sigmoidal profile that was well-fitted by Hill's equation, expanding the working dynamic range (15-540 nmol L lactose; 20.2 pmol L detection limit) and avoiding undesirable sample dilution or preconcentration procedures. Under the optimized photoelectrochemical conditions, the ABL/PMB/FTO biosensor showed remarkable signal stability, accuracy, specificity, and selectivity to analyze lactose in commercial food products. This research raises interest in ABL-based biosensors and the added value of the crude extract toward the development of greener and more sustainable biotechnological approaches.
蘑菇生物质中含有一种凝集素,ABL,对乳糖具有显著的生物识别特异性;在这项工作中,探索了这一特性,以开发光电化学生物传感器。这种大型真菌的盐提取液中发现的凝集素活性很高(640 HU mL),即使在临界 pH 值(4-10)和温度(20-100°C)下,也可以直接用作 ABL 来源。理论和实验证据表明,ABL 在聚(亚甲蓝)/掺氟氧化锡涂覆玻璃平台上的固定化具有有利的静电和生物相容性条件,从而产生 ABL/PMB/FTO 生物传感器。添加的导电聚合物进一步提高了器件的光活性,使得能够更灵敏地识别凝集素-碳水化合物相互作用。电化学阻抗光谱研究的剂量反应曲线显示出一种良好拟合希尔方程的 S 形曲线,扩展了工作动态范围(15-540 nmol L 乳糖;20.2 pmol L 检测限),避免了不必要的样品稀释或预浓缩程序。在优化的光电化学条件下,ABL/PMB/FTO 生物传感器对商业食品中乳糖的分析表现出显著的信号稳定性、准确性、特异性和选择性。这项研究引起了基于 ABL 的生物传感器的兴趣,以及粗提物在开发更绿色和更可持续的生物技术方法方面的附加值。