Department of Textiles, Merchandising and Fashion Design, Seoul National University, Seoul 08826, Korea.
Reliability Assessment Center, FITI Testing & Research Institute, Seoul 07791, Korea.
ACS Appl Mater Interfaces. 2022 Aug 24;14(33):38153-38161. doi: 10.1021/acsami.2c08613. Epub 2022 Aug 10.
Protective equipment for detecting bacterial contamination has been in high demand with increasing interest in public health and hygiene. Herein, a fiber-based visually indicating bacteria sensor (VIBS) embedded with iodonitrotetrazolium chloride is developed for the general purpose of detecting live bacteria, and its chromogenic effectiveness is investigated for Gram-negative and Gram-positive . The developed color intensity is measured by the light absorption coefficient to the scattering coefficient (/) based on the Kubelka-Munk equation, and the colorimetric sensitivities of different membranes are examined by calculating the limit of detection (LOD) and the limit of quantification (LOQ). The results demonstrate that the interactions between VIBS and bacteria depend on the wetting properties of membranes. A hydrophobic membrane shows excessive interactions at high concentrations of Gram-negative bacteria, whose cell membrane is lipophilic. The membrane blended with hydrophobic and hydrophilic polymers displays linear colorimetric responses for both Gram-negative and Gram-positive bacteria strains, demonstrating a reliable sensing capability in the range of the tested bacteria concentration. This study is significant in that explorative experimentations are performed to conceive a proof of concept of a fiber-based bacteria sensor, which is readily applicable in various fields where bacteria pose a threat.
随着人们对公共卫生和卫生的日益关注,检测细菌污染的防护设备的需求一直很高。本文开发了一种基于纤维的带有碘硝基四唑氯的可视指示细菌传感器(VIBS),用于普遍检测活菌,并研究了其显色效果在革兰氏阴性菌和革兰氏阳性菌中的应用。通过基于 Kubelka-Munk 方程的光吸收系数与散射系数(/)来测量开发的颜色强度,并通过计算检测限(LOD)和定量限(LOQ)来检查不同膜的比色灵敏度。结果表明,VIBS 与细菌之间的相互作用取决于膜的润湿性。疏水膜在革兰氏阴性菌浓度较高时表现出过度的相互作用,因为其细胞膜是亲脂性的。混合了疏水和亲水聚合物的膜对革兰氏阴性和革兰氏阳性细菌菌株均表现出线性比色响应,在测试的细菌浓度范围内显示出可靠的传感能力。这项研究具有重要意义,因为进行了探索性实验来构思基于纤维的细菌传感器的概念验证,该传感器可在存在细菌威胁的各种领域中得到广泛应用。