Topological insulator Bi 2 Se 3 based electrochemical aptasensors for the application of sensitive detection of interferon-γ.
Yetong WuPeng ZhuYujiu JiangXu ZhangZhiwei WangBingteng XieTinglu SongFulai ZhangAiqin LuoShanshan LiXiaolu XiongJunfeng HanPublished in: Journal of materials chemistry. B (2023)
Interferon-γ (IFN-γ) is one of the crucial inflammatory cytokines as an early indicator of multiple diseases. A fast, simple, sensitive and reliable IFN-γ detection method is valuable for early diagnosis and monitoring of treatment. In this work, we creatively developed an electrochemical aptasensor based on the topological material Bi 2 Se 3 for sensitive IFN-γ quantification. The high-quality Bi 2 Se 3 sheet was directly exfoliated from a single crystal, which immobilized the synthesized IFN-γ aptamer. Under optimal conditions, the electrochemical signal revealed a wide linear relation along with the logarithmic concentration of IFN-γ from 1.0 pg mL -1 to 100.0 ng mL -1 , with the limit of detection as low as 0.5 pg mL -1 . The topological material Bi 2 Se 3 with Dirac surface states improved the electrochemical signal/noise ratio and thus the sensitivity of the sensors. Furthermore, this electrochemical aptasensor exhibited excellent specificity and stability, which could be attributed to the large-scale smooth surface of the Bi 2 Se 3 sheet with few defects decreasing the non-specific absorption. The developed biosensor has the same good performance as the ELISA method for detecting the real serum samples. Our work demonstrates that the developed electrochemical aptasensors based on topological materials have great potential in the field of clinical determination.