State Key Laboratory of Food Nutrition and Safety, Tianjin University of Science and Technology, Tianjin 300457, China; Key Laboratory of Food Quality and Health of Tianjin, Tianjin University of Science & Technology, 300457 Tianjin, China.
State Key Laboratory of Food Nutrition and Safety, Tianjin University of Science and Technology, Tianjin 300457, China; Key Laboratory of Food Quality and Health of Tianjin, Tianjin University of Science & Technology, 300457 Tianjin, China.
Food Chem. 2024 Jul 15;446:138844. doi: 10.1016/j.foodchem.2024.138844. Epub 2024 Feb 25.
This study prepared a novel, portable and cost-effective microfluidic paper-based electrochemical analysis device (μ-PAD) using black phosphorus nanosheets@carboxylated multi-walled carbon nanotubes (BPNSs@MWCNTs-COOH) nanocomposites for β-lactoglobulin (β-LG) detection. At the appreciate ratio, the synthesized BPNSs@MWCNTs-COOH was demonstrated to not only serve as a high-quality substrate for the specific aptamer immobilization, but also improve the electron transfer capability of the sensing interface. The μ-PADs, utilizing BPNSs@MWCNTs-COOH and aptamer recognition, exhibited a wider detection range (10-1000 ng mL) and lower detection limit (LOD: 0.12 ng mL) for β-LG, and demonstrated enhanced specificity, satisfactory anti-interference ability and stability. When applied to the β-LG determination in dairy samples, the μ-PAD yielded β-LG concentrations highly correlated with those obtained using the HPLC method (R: 0.9982). These results emphasized the reliable performance of the developed μ-PADs in β-LG allergen quantification, highlighting their potential as an efficient platform for the rapid screening of β-LG allergens.
本研究使用黑磷纳米片@羧基化多壁碳纳米管(BPNSs@MWCNTs-COOH)纳米复合材料制备了一种新颖的、便携且经济高效的微流控纸基电化学分析装置(μ-PAD),用于β-乳球蛋白(β-LG)检测。在合适的比例下,所合成的 BPNSs@MWCNTs-COOH 不仅可用作特定适配体固定的高质量基底,而且还能提高传感界面的电子转移能力。基于 BPNSs@MWCNTs-COOH 和适配体识别的 μ-PAD 对 β-LG 具有更宽的检测范围(10-1000ng mL)和更低的检测限(LOD:0.12ng mL),并表现出增强的特异性、令人满意的抗干扰能力和稳定性。当应用于乳制品样品中的β-LG 测定时,μ-PAD 得到的 β-LG 浓度与使用 HPLC 方法获得的浓度高度相关(R:0.9982)。这些结果强调了所开发的 μ-PAD 在β-LG 过敏原定量方面的可靠性能,突出了它们作为快速筛选β-LG 过敏原的有效平台的潜力。