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Rapid detection of Staphylococcus aureus using a membrane fiber optic biosensor

机译:使用膜光纤生物传感器快速检测金黄色葡萄球菌

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Abstract: A simple, sensitive and rapid chemiluminescent fiber optic biosensor utilizing monoclonal antibodies to S. aureus was developed to detect the pathogen in food. The S. aureus cells were selectively labeled with a monoclonal-horseradish peroxidase (POD) conjugate, collected by membrane filtration, and detected with a luminometer and an enhanced chemiluminescent luminol reagent. Two different diameter membranes, 25 mm and 13 mm, were first tested in a luminometer tube format assay. A hand operated syringe filtration unit was used to capture cells and the membrane was then transferred to a luminometer tube for the chemiluminescent reaction. An improved system utilized a simple but efficient microwell plate vacuum filtration unit with an 8 mm membrane sealed at the bottom of the sample well. The sample was concentrated on the membrane and positioned directly in front of a fiber optic light guide to effectively collect and transmit the signal to the luminometer. Labeling S. aureus in solution proved to be much more effective than on the membrane surface. Using the microwell plate filtration system resulted in less sample handling, better reproducibility, and dramatically reduced assay time. The variability for 25 mm and 13 mm assays were 24.7% and 13.3%, while the microwell plate assay reduced this to 4.0%. The ability of the fiber optic probe to effectively collect the signal meant the sensitivity of the assay was not compromised with smaller membrane and sample size. The sensitivity of the biosensor was 3.8 $MUL 10$+4$/ CFU/ml, adequate to detect the organism at concentrations lower than the level that could result in food poisoning. The performance of the biosensor was not effected by the food materials and by the presence of other bacteria. !15
机译:摘要:开发了一种简单,灵敏和快速的化学发光光纤生物传感器,该传感器利用针对金黄色葡萄球菌的单克隆抗体来检测食品中的病原体。用单克隆辣根过氧化物酶(POD)结合物选择性标记金黄色葡萄球菌细胞,通过膜过滤收集,并用发光计和增强的化学发光鲁米诺试剂检测。首先在光度计管形式分析中测试两种不同直径的膜片,分别为25 mm和13 mm。使用手动注射器过滤单元捕获细胞,然后将膜转移到发光仪管中进行化学发光反应。一种改进的系统利用了一个简单而有效的微孔板真空过滤装置,在样品孔的底部密封了一个8 mm的膜。将样品浓缩在膜上,并直接放置在光纤光导的前面,以有效收集信号并将其传输到发光计。在溶液中标记金黄色葡萄球菌被证明比在膜表面上更有效。使用微孔板过滤系统可减少样品处理,提高重现性,并显着减少测定时间。 25 mm和13 mm分析的变异性分别为24.7%和13.3%,而微孔板分析将其降低至4.0%。光纤探针有效收集信号的能力意味着较小的膜和样品尺寸不会影响测定的灵敏度。该生物传感器的灵敏度为3.8 $ MUL 10 $ + 4 $ / CFU / ml,足以检测浓度低于可能导致食物中毒的生物。生物传感器的性能不受食品原料和其他细菌的影响。 !15

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