A MnO2/PANI/rGO-modified electrode enabled highly sensitive electrochemical detection of doxorubicin with a linear response over 0.01–3 μM and a detection limit of 0.0055 μM.
The MnO₂/PANI/rGO ternary nanohybrid provides a highly sensitive platform for the electrochemical determination of doxorubicin in biologically relevant matrices.
Monitoring doxorubicin (DOX) at clinically relevant levels is essential due to its narrow therapeutic index and dose-dependent cardiotoxicity, necessitating sensitive and reliable analytical tools. In this work, a ternary MnO₂/polyaniline/reduced graphene oxide (MnO₂/PANI/rGO) nanocomposite was rationally engineered and employed to modify a glassy carbon electrode for the electrochemical detection of DOX under physiological conditions (pH 7.0). The nanocomposite was synthesized via a stepwise procedure and thoroughly characterized by FE-SEM and TEM analyses. Electrochemical investigations revealed that the MnO₂/PANI/rGO-modified electrode exhibits a dramatically enhanced oxidation response toward DOX compared with bare, single-component, and binary-component electrodes, confirming the presence of a pronounced synergistic effect among MnO₂, PANI, and rGO. This synergistic ternary architecture provided an increased electroactive surface area, improved charge-transfer kinetics, and accelerated DOX redox behavior. Under optimized conditions, the sensor delivered a linear response over 0.01–3 μM with a detection limit of 0.0055 μM (S/N = 3). The practical performance of the sensor was validated using commercial human serum analyzed via the standard addition method, achieving high recovery and precision. These findings demonstrate that the synergistic MnO₂/PANI/rGO ternary nanohybrid offers a robust and highly sensitive platform for the electrochemical determination of doxorubicin in biologically relevant matrices.
Poormolaie et al. (Fri,) conducted a other in Doxorubicin detection. MnO2/PANI/rGO-modified electrode vs. Bare, single-component, and binary-component electrodes was evaluated on Electrochemical detection of doxorubicin (linear response and detection limit). A MnO2/PANI/rGO-modified electrode enabled highly sensitive electrochemical detection of doxorubicin with a linear response over 0.01–3 μM and a detection limit of 0.0055 μM.