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Cathode Photoelectrochemical Immunosensing Platform Integrating Photocathode with Photoanode
Gao-Chao Fan1, Xiao-Mei Shi1, Jian-Rong Zhang1,2
1State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University , Nanjing 210093, People's Republic of China.
Insights
This study introduces a novel photoelectrochemical immunosensing platform combining photocathode and photoanode for sensitive biomarker detection. The new system offers improved anti-interference and detection limits for accurate real-world sample analysis.
Area of Science:
- Electrochemistry
- Biosensing
- Materials Science
Background:
- Photoanode-based immunoassays offer high sensitivity but suffer from poor anti-interference in real samples.
- Photocathode-based immunoassays excel in anti-interference but exhibit limited photocurrent response and sensitivity.
- A need exists for a photoelectrochemical immunoassay that combines the strengths of both photoanode and photocathode approaches.
Discussion:
- A novel photoelectrochemical immunosensing platform integrating both photocathode and photoanode was developed.
- The platform utilizes a TiO2/CdS:Mn hybrid structure as the photoanode and CuInS2 microflowers as the photocathode.
- Prostate-specific antigen (PSA) was used as a model analyte to demonstrate the platform's analytical capabilities.
Key Insights:
- The integrated platform provides excellent anti-interference capabilities due to biorecognition occurring on the photocathode.
- The system achieves a significant photocurrent response and low detection limit for target analytes, attributed to the photoanode.
- The developed immunosensing platform demonstrates high specificity, reproducibility, and stability.
Outlook:
- This work presents a new paradigm for constructing advanced photoelectrochemical biosensors.
- The dual-component system overcomes the limitations of single-component photoelectrochemical immunoassays.
- Future research can explore the application of this platform for detecting various other biomarkers in complex biological matrices.
Abstract:
Generally, photoanode-based photoelectrochemical immunoassay possesses obvious photocurrent response and lower detection limit for ideal sample detection, but it has the inherent imperfection of poor anti-interference capability for real sample detection. Photocathode-based immunoassay can well avoid the intrinsic drawback of photoanode-based immunoassay, but it has low photocurrent response resulting in less good sensitivity. Herein, a promising new cathode photoelectrochemical immunosensing platform integrating photocathode with photoanode was reported for accurate and sensitive detection of biomarkers. In this proposal, prostate-specific antigen (PSA, Ag) was chosen as a model of target analyte to exhibit the analytical performances of this platform. TiO2/CdS:Mn hybrid structure modified indium-tin oxide (ITO) electrode served as photoanode, whereas CuInS2 microflowers modified ITO electrode was selected as photocathode. The transducer elements of PSA antibody (Ab) were modified on photocathode to fabricate a label-free cathode immunosensing electrode. The proposed immunosensing platform possesses two distinct advantages simultaneously. First, it has good anti-interference capability for the detection of real biological samples, since the biorecognition events occurred on photocathode. Second, the photoelectrochemical system owns evident photocurrent response and low detection limit for target Ag detection thanks to the introduction of the photoanode. Moreover, the proposed immunosensing platform also exhibits good specificity, reproducibility, and stability, and meanwhile it opens up a new horizon to construct other kinds of photoelectrochemical biosensors.
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