光电阴极                        
                
                                
                        
                            DNA                        
                
                                
                        
                            光电流                        
                
                                
                        
                            纳米生物技术                        
                
                                
                        
                            材料科学                        
                
                                
                        
                            化学                        
                
                                
                        
                            组合化学                        
                
                                
                        
                            纳米技术                        
                
                                
                        
                            物理                        
                
                                
                        
                            光电子学                        
                
                                
                        
                            纳米颗粒                        
                
                                
                        
                            生物化学                        
                
                                
                        
                            量子力学                        
                
                                
                        
                            电子                        
                
                        
                    
            作者
            
                Huimin Chen,Zhen Wang,Ying Zhao,Zhiling Song,Gao‐Chao Fan,Xiliang Luo            
         
                    
            出处
            
                                    期刊:ACS Sensors
                                                         [American Chemical Society]
                                                        日期:2025-01-06
                                                                        被引量:2
                                 
         
        
    
            
            标识
            
                                    DOI:10.1021/acssensors.4c02972
                                    
                                
                                 
         
        
                
            摘要
            
            Precise and sensitive analysis of specific DNA in actual human bodily fluids is crucial for the early diagnosis of major diseases and for a deeper understanding of DNA functions. Herein, by grafting a peptide-conjugated hairpin DNA probe to a covalent organic framework (COF)-based photocathode, a robust anti-interference photoelectrochemical (PEC) DNA bioassay was explored, which could specifically resist potential interference from nonspecific proteins and reducing species. Human immunodeficiency virus (HIV) DNA was used as the target DNA (tDNA) for the PEC DNA bioassay. The vinyl-functionalized COF (COF-V) was modified with meso-tetra(4-carboxyphenyl)-porphine (TCPP) and polydopamine (PDA) to fabricate a PDA/TCPP/COF-V photocathode, which served as the photocurrent signal transducer. Toward the unconventional recognition element, a hairpin DNA probe (hDNA) was efficiently linked with a linear zwitterionic peptide (LZP) to form the LZP-hDNA bioconjugate, which was then grafted onto the COF-based photocathode. The grafting of the LZP generated a sturdy anti-interference interface on the signal transducer. For tDNA probing, AgInS2 (AIS) quantum dots acted as signal quenchers, marked on signaling DNA (sDNA) to obtain AIS-sDNA labeling, and a striking drop in the photocurrent signal was achieved through λ-exonuclease (λ-Exo)-aided target recycling. This novel peptide-conjugated hairpin DNA probe endowed the PEC DNA bioassay with an impressive anti-interference property without requiring tedious steps. By combining the excellent photoelectric properties of the COF-based photocathode with an effective signaling strategy, accurate and sensitive results for tDNA probing were achieved.
         
            
 
                 
                
                    
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