School of Instrumentation and Optoelectronic Engineering, School of Space and Environment, Beihang University, Beijing 100191, China.
Key Laboratory of New Energy & New Functional Materials, Shaanxi Key Laboratory of Chemical Reaction Engineering, College of Chemistry and Chemical Engineering, Yan'an University, Yan'an, Shaanxi, 716000, China.
Biosens Bioelectron. 2025 Jan 1;267:116845. doi: 10.1016/j.bios.2024.116845. Epub 2024 Oct 9.
Sensors capable of detecting organophosphorus (OP) compounds have attracted the most attention owing to severe OP contamination worldwide. Despite many years of research, the developed OP sensors mainly focused on detecting water-soluble OPs in proper environments and the exploration of OP sensors suitable in resource-limited areas is extremely challenging. Here, a simple two-dimensional photonic crystal (2D PC) hydrogel featuring capabilities of effectively quantitative determination of OP compounds is facilely constructed by immobilizing the enzyme acetylcholinesterase (AChE) onto a bovine serum albumin (BSA) protein hydrogel. Owing to the specific interaction between AChE and OP compounds, the OP compounds are easily bound to the hydrogel, triggering volume phase transition and resulting in apparent Debye diffraction ring variations. The resulting hydrogel sensors show a limit of detection (LoD) of 2.23 nM for trichlorfon and 0.07 nM for diethyl methylphosphonate (DMPP), respectively. On the basis of the hydrogel, a responsive organohydrogel is facilely fabricated utilizing a solvent exchange strategy to meet the requirements of applications in harsh environments and detection of the non-water-soluble OP compounds. The organohydrogel sensors, however, demonstrated a LoD of 0.70 μM for trichlorfon and 4.46 μM for DMPP, respectively. This work provides new light on the development of next-generation stable, low-cost, and portable field sensing devices.
由于全世界范围内存在严重的有机磷(OP)化合物污染,能够检测到有机磷化合物的传感器引起了人们的极大关注。尽管经过多年的研究,但开发的 OP 传感器主要集中在适当环境中检测水溶性 OP 化合物,以及探索适合资源有限地区的 OP 传感器极具挑战性。在这里,通过将酶乙酰胆碱酯酶(AChE)固定到牛血清白蛋白(BSA)蛋白水凝胶上,构建了一种简单的二维光子晶体(2D PC)水凝胶,该水凝胶具有有效定量测定 OP 化合物的能力。由于 AChE 和 OP 化合物之间的特异性相互作用,OP 化合物很容易与水凝胶结合,引发体积相转变,导致明显的德拜衍射环变化。所得到的水凝胶传感器对三氯膦的检测限(LoD)为 2.23 nM,对二乙基甲基膦酸酯(DMPP)的检测限为 0.07 nM。在此基础上,利用溶剂交换策略,轻松制备了响应性有机水凝胶,以满足在恶劣环境中应用和检测非水溶性 OP 化合物的要求。然而,有机水凝胶传感器对三氯膦的检测限为 0.70 μM,对 DMPP 的检测限为 4.46 μM。这项工作为开发下一代稳定、低成本、便携式现场传感设备提供了新的思路。