Biosensor Lab., Chemistry Group, Birla Institute of Technology & Science, Pilani-KK Birla Goa Campus, NH17B Bypass, Zuari Nagar, Goa 403726, India.
Biosens Bioelectron. 2010 Dec 15;26(4):1560-4. doi: 10.1016/j.bios.2010.07.113. Epub 2010 Aug 4.
Urea in adulterated milk is one of the major health concern, it is especially harmful to pregnant women, children, and the sick. A sophisticated and reliable detection system is needed to replace current diagnostic tools for the urea in the milk. In this work, we report a flow injection analysis-enzyme thermistor (FIA-ET) bio-sensing system for monitoring of urea in adulterated milk. This biosensor was made of the covalently immobilized enzyme urease (Jack bean) on controlled pore glass (CPG) and packed into a column inside thermistor, which selectively hydrolysed the urea present in the sample. The specific heat registered from the hydrolysis of urea was found proportional to the concentration of urea present in the milk sample. The biosensor showed a linear range 1-200 mM, with % R.S.D. 0.96 for urea in 100 mM phosphate buffer, pH 7.2. Good recoveries were obtained (97.56-108.7%) for urea up to 200 mM in the spiked milk samples with % R.S.D. 0.95. In the adulterated milk, a simple filtration strategy and matrix matching technique was used to analyse urea. The response time of the sensor was evaluated for urea, which was 2 min, and it gives satisfactory output. A good comparison was observed between the urea concentrations measured through FIA-ET and the colorimetric method. These results indicate that utilizing this system could be very effective to detect low and high level of urea in adulterated milk. The immobilized urease column exhibited a good operational stability up to 180 days when used continuously at room temperature.
掺假牛奶中的尿素是主要的健康问题之一,尤其对孕妇、儿童和病人有害。需要一种复杂且可靠的检测系统来替代当前用于牛奶中尿素的诊断工具。在这项工作中,我们报告了一种用于监测掺假牛奶中尿素的流动注射分析-酶热敏电阻(FIA-ET)生物传感系统。该生物传感器由固定在受控孔玻璃(CPG)上的共价结合的酶脲酶(杰克豆)制成,并装入热敏电阻内的柱中,该柱选择性地水解样品中存在的尿素。从尿素水解中记录的比热被发现与牛奶样品中存在的尿素浓度成正比。该生物传感器在 1-200mM 范围内呈线性,在 100mM 磷酸盐缓冲液,pH7.2 中,100mM 尿素的%R.S.D.为 0.96。在掺假牛奶中,采用简单的过滤策略和基质匹配技术来分析尿素。传感器对尿素的响应时间进行了评估,响应时间为 2 分钟,输出结果令人满意。通过 FIA-ET 和比色法测量的尿素浓度之间观察到良好的比较。这些结果表明,利用该系统可以非常有效地检测掺假牛奶中的低浓度和高浓度尿素。固定化脲酶柱在室温下连续使用 180 天时表现出良好的操作稳定性。