Rajalakshmi Sakthivel, Chang-Yun Chen, Yu-Chien Lin, S Ramesh, Ren-Jei Chung
Ovarian cancer (OC) is one of the deadliest gynecological cancers, primarily because of the lack of effective techniques for early detection. The precise detection of cancer antigen 125 (CA-125), a well-known biomarker of OC, is vital for early diagnosis. In this study, we developed a novel electrochemical immunosensor based on flower-like ZnSe-FeSe2@MoS2 for highly sensitive detection of CA-125. First, a ZnSe-FeSe2 nanocomposite was synthesized via the thermal annealing of iron-doped zeolitic imidazolate framework-8 (Fe-ZIF-8) with selenium powder. Subsequently, the flower-like ZnSe-FeSe2@MoS2 was obtained through the solvothermal growth of MoS2 in the presence of varying amounts (20-100 mg) of ZnSe-FeSe2 material. The structural and morphological features were analyzed using spectrophotometric methods, and the electrochemical properties were assessed via voltammetry and impedimetry. Among different concentrations tested, ZnSe-FeSe2(80)@MoS2 exhibited the optimum electrochemical performance. The immunosensor was fabricated by modifying a glassy carbon electrode (GCE) with ZnSe-FeSe2(80)@MoS2, followed by the immobilization of Ab-CA-125 using chitosan (CS) and glutaraldehyde (Glut) as crosslinking agents. The resulting sensor (BSA/Ab-CA-125/Glut/CS/ZnSe-FeSe2(80)@MoS2/GCE) demonstrated a broad linear detection range spanning 1 × 10-6 to 1 × 103 U mL-1 and an extremely low detection limit of 4.68 × 10-8 U mL-1. Additionally, it demonstrated excellent stability and reproducibility, along with reliable recovery rates in human serum samples. These results indicate that the ZnSe-FeSe2@MoS2-based electrochemical immunosensor is a promising candidate for the early and accurate diagnosis of OC.