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Updated: Aug 28, 2026

Formulation of Zinc-Based Nanomaterials using the Eucommia ulmoides Bark Extract and their Wound Healing Potential
Published on: December 27, 2024
Comparative In Vitro Response of HaCaT and A375 Melanoma Cells to Zinc Oxide Nanoparticles Synthesized Using Puerarin
Sergio Liga1, Raluca Vodă1, Lavinia Lupa1
1Faculty of Chemical Engineering, Biotechnologies and Environmental Protection, Politehnica University Timișoara, Vasile Pârvan No. 6, 300223 Timișoara, Romania.
Abstract:
Zinc oxide nanobiocomposites were successfully synthesized using a green synthesis approach based on the isoflavone Puerarin, resulting in the formation of PUE-ZnO NPs. Building on their previous physicochemical and in ovo characterization, the present study aimed to comparatively evaluate the biological response induced by PUE-ZnO NPs in non-tumorigenic HaCaT keratinocytes and A375 melanoma cells. Cell viability was assessed by MTT assay, and the cellular response was further investigated through bright-field morphological evaluation, Hoechst 33342 nuclear staining, MitoTracker mitochondrial staining, and clonogenic assay. PUE-ZnO NPs showed a favorable cytocompatibility profile in HaCaT cells, with viability remaining above 80% at the highest tested concentration and only moderate impairment of clonogenic capacity at higher concentrations. In contrast, A375 melanoma cells exhibited a stronger response, characterized by reduced viability, marked morphological alterations, nuclear changes, mitochondrial staining disruption, and a pronounced decrease in colony-forming ability. PUE-ZnO NPs may represent a promising phytochemical-assisted ZnO-based nanosystem for further investigation in melanoma-related models.

