Green Synthesis of Copper Oxide Nanoparticles using Hydroalcoholic Calotropis procera Leaf Extract and their in Vitro Antileishmanial Activity against Leishmania tropica
DOI:
https://doi.org/10.18502/jad.v20i3.22579Keywords:
Nanotechnology; Phytochemicals; Leishmania Infections; Cupric Oxide; Drug Delivery SystemsAbstract
Background: Leishmaniasis remains a major public health concern due to treatment toxicity, prolonged regimens and emerging drug resistance. Green-synthesized metal oxide nanoparticles are promising candidates for alternative antileishmanial therapies. This study synthesized copper oxide nanoparticles (CuO NPs) using hydroalcoholic Calotropis procera leaf extract and evaluated their in vitro activity against Leishmania tropica.
Methods: CuO NPs were synthesized using C. procera extract as a biological reducing and stabilizing agent and characterized by dynamic light scattering, field-emission scanning electron microscopy, energy-dispersive X-ray spectros-copy and Fourier-transform infrared spectroscopy. The antileishmanial activity of C. procera extract (CPE), CuO NPs, meglumine antimoniate (MA) and their combinations was assessed against promastigotes and intracellular amastigotes. Cytotoxicity was evaluated in THP-1-derived macrophages and selectivity indices (SI) were calculated. Apoptosisrelated markers and oxidative stress parameters were also assessed.
Results: CuO NPs had a mean hydrodynamic diameter of 185.26±19 nm and a zeta potential of −15.93±2.6 mV. The CuO NPs+MA combination showed the strongest activity against amastigotes (IC₅₀= 52.19 µg/mL) and promastigotes (IC₅₀= 281.63 µg/mL), with a CC₅₀ of 603.1 µg/mL and the highest SI (11.56). Treatment increased Bax, caspase-3, caspase-8 and ROS levels while reducing Bcl-2, SOD and CAT. Conclusion: Green-synthesized CuO NPs, particularly in combination with MA, demonstrated promising antileishma-nial activity and selectivity against L. tropica. These findings support further evaluation in vivo.