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                                        客戶采用我司PuriMag G-ProG蛋白G磁珠結合多克隆抗體在Food Chemistry發文

                                        2022-3-9 23:07:44點擊:

                                        客戶采用我司PuriMag G-ProG蛋白G磁珠結合多克隆抗體在Food Chemistry發文

                                        Food Chemistry

                                        Volume 383, 30 July 2022, 132404
                                        Food Chemistry
                                        Temporal sensing platform based on anodic dissolution of Ag and cathodic biocatalysis of oxygen reduction for Staphylococcus aureus detection

                                        Bin Chen, Qin Tao, Fanglin Qiao, Yunjie Fei, Yuanjian Liu, Xiaohui Xiong, Songqin Liu,

                                        Abstract
                                        An Ag@C hybrid bipolar electrode (BPE) sensing platform has been established for the temporal detection of Staphylococcus aureus (S. aureus) in food. Combining the advantages of anodic dissolution of Ag and cathodic biocatalysis of oxygen (O2) reduction, this strategy showed an ultralow detection limit down to 10 CFU mL?1. As the formation of Ag@C completely quenched the electrochemiluminescence (ECL) emission of luminol, the ECL emission recovery reflected the extent of anodic dissolution. Meanwhile, S. aureus catalyzed the electrochemical reduction of O2 at the cathode, reducing the overpotential for cathodic O2 reduction and thus increasing the rate of anodic electron loss, facilitating Ag dissolution and restoring the ECL emission of luminol. When a constant potential was applied, through monitoring the ECL recovery time before and after the incubation of S. aureus on the cathode, S. aureus could be quantified due to the slight difference of the conductivity.

                                        建立了 Ag@C 混合雙極電極 (BPE) 傳感平臺,用于食品中金黃色葡萄球菌 (S. aureus) 的時間檢測。 結合 Ag 的陽極溶解和氧 (O2) 還原的陰極生物催化的優勢,該策略顯示出低至 10 CFU mL-1 的檢測限。 由于 Ag@C 的形成完全淬滅了魯米諾的電化學發光 (ECL) 發射,因此 ECL 發射恢復反映了陽極溶解的程度。 同時,金黃色葡萄球菌在陰極催化了O2的電化學還原,降低了陰極O2還原的過電位,從而增加了陽極電子損失率,促進了Ag的溶解,恢復了魯米諾的ECL發射。 當施加恒定電位時,通過監測金黃色葡萄球菌在陰極上孵育前后的ECL恢復時間,由于電導率的微小差異,可以對金黃色葡萄球菌進行量化。


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