College of Marine Life Sciences, Ocean University of China, Qingdao 266003, China.
Observation and Research Station of Bohai Eco-Corridor and Key Laboratory of Marine Eco-Environmental Science and Technology, Marine Bioresource and Environment Research Center, First Institute of Oceanography, Ministry of Natural Resources, Qingdao 266061, China.
J Hazard Mater. 2024 Dec 5;480:136292. doi: 10.1016/j.jhazmat.2024.136292. Epub 2024 Oct 24.
The contamination of Campylobacter in shellfish poses a health risk for its pathogenicity associated with campylobacteriosis. However, an efficient method to detect this risk is unavailable. Herein, we introduce a portable colorimetric biosensing platform that comprises three modules: an enrichment module 1, a binding and transduction module 2, and a smartphone-based module 3. Module 1 is an aptamer-modified 96-well plate for the specific capture of Campylobacter in a simple and high-throughput manner. Module 2 features a bifunctional biopolymer of L-glutamic acid γ-hydroxamate-alginate-Fe coordinating fusarinine C, which can bind the captured Campylobacter cells and transduce them into amplified color signals upon reaction with Fe-violurate complexes. Module 1 achieves a capture efficiency of 97.24 %, and the subsequent addition of module 2 renders colorimetric indication of Campylobacter ranging from 10 to 10 CFU/mL, achieving an actual limit of detection of 8 CFU/mL validated by Campylobacter single-cells. Moreover, the generated colors can be recognized and converted into cell densities by module 3 with ultrasensitivity. Notably, this biosensor-smartphone platform accomplishe reliable high-throughput colorimetric detection of Campylobacter in real samples with an accuracy of 80 %. This work showcases a proof of principle for efficient on-site detection of Campylobacter contamination regarding shellfish farming.
贝类中弯曲杆菌的污染因其与弯曲杆菌病相关的致病性而对健康构成威胁。然而,目前还没有有效的方法来检测这种风险。在此,我们介绍了一种便携式比色生物传感平台,它由三个模块组成:富集模块 1、结合和转导模块 2 以及基于智能手机的模块 3。模块 1 是一种经适配体修饰的 96 孔板,可简单、高通量地特异性捕获弯曲杆菌。模块 2 采用 L-谷氨酸 γ-羟肟酸-海藻酸钠-Fe 配位呋咱素 C 的双功能生物聚合物,可与捕获的弯曲杆菌细胞结合,并在与 Fe-紫尿酸复合物反应时将其转化为放大的颜色信号。模块 1 的捕获效率达到 97.24%,随后添加模块 2 可使弯曲杆菌的比色指示范围从 10 到 10 CFU/mL,通过对弯曲杆菌单细胞的验证,实际检测限达到 8 CFU/mL。此外,模块 3 可以识别并将生成的颜色转换为细胞密度,具有超高灵敏度。值得注意的是,该生物传感器-智能手机平台能够可靠地实现对贝类养殖中弯曲杆菌污染的高通量比色检测,准确率为 80%。这项工作展示了一种用于现场检测贝类弯曲杆菌污染的高效方法的原理验证。