Department of Food Science, National Pingtung University of Science and Technology, Pingtung 91201, Taiwan.
Department of Engineering Science, National Cheng Kung University, Tainan 70101, Taiwan.
Food Chem. 2023 Jan 30;400:134063. doi: 10.1016/j.foodchem.2022.134063. Epub 2022 Sep 5.
Cyclamate is an artificial sweetener with high sweetness and low calories, and is a common sugar substitute for weight control and diabetic patients. However, excessive cyclamate consumption is associated with various health disorders, and hence it is prohibited as a food additive in many countries around the world. The current research proposes a light-shading reaction microfluidic PMMA/paper detection (MPD) system for determining the cyclamate concentration in food. In the current system, inject 10 μL of the extracted sodium cyclamate sample into the sample chamber of the MPD device, perform the diazotization reaction under shading conditions, and then suck it into the detection area through a paper strip, which consists of a paper chip embedded with modified Bratton-Marshall reagent. Once the paper chip is thoroughly wetted, the MPD device is inserted into a microanalysis box, where a fuchsia azo reaction compound is produced through heating at 40 °C for 3 min. The reaction complex is observed by a camera and the reaction image is wirelessly transmitted to a smartphone, and the concentration of sodium cyclamate is measured through the self-developed grayscale software. The results obtained for the sodium cyclamate samples with a concentration in the range of 50-1000 ppm show that the measured gray value changes linearly with the sodium cyclamate concentration, and the correlation coefficient (R) is 0.9898. By analyzing the concentration of sodium cyclamate in 10 real-world samples, the practical feasibility of the current MPD system is proved. The results showed that the concentration measurement value did not deviate by more than 4.8 % from the value obtained using the conventional liquid chromatography/tandem mass spectrometry (LC-MS/MS) method.
甜蜜素是一种高甜度、低热量的人工甜味剂,是控制体重和糖尿病患者的常用糖替代品。然而,过量食用甜蜜素会导致各种健康问题,因此在世界上许多国家都被禁止作为食品添加剂。本研究提出了一种基于光遮挡反应的微流控 PMMA/纸检测(MPD)系统,用于测定食品中的甜蜜素浓度。在当前的系统中,将 10 μL 提取的甜蜜素钠样品注入 MPD 装置的样品室,在遮光条件下进行重氮化反应,然后通过纸条将其吸入检测区,纸条由嵌入改性 Bratton-Marshall 试剂的纸芯片组成。一旦纸芯片完全润湿,就将 MPD 装置插入微分析盒中,在 40°C 下加热 3 分钟产生 fuchsia 偶氮反应化合物。通过相机观察反应复合物,并将反应图像无线传输到智能手机上,通过自行开发的灰度软件测量甜蜜素钠的浓度。对浓度在 50-1000 ppm 范围内的甜蜜素钠样品进行测试,结果表明,测量的灰度值随甜蜜素钠浓度呈线性变化,相关系数(R)为 0.9898。通过分析 10 个实际样品中的甜蜜素钠浓度,证明了当前 MPD 系统的实际可行性。结果表明,浓度测量值与使用传统液相色谱/串联质谱(LC-MS/MS)方法获得的值相差不超过 4.8%。