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◆ Cell and tissue banking2026-09-07

Electroconductive and biodegradable scaffold based on alginate/polyaniline hydrogel loaded with green synthesized magnesium oxide nanoparticles for bone regeneration.

Bowen Lei, Hua Zhang

原始摘要(英文原文)· Original abstract
Bone fractures are increasing globally, and the limitations of traditional grafts have encouraged the development of advanced biomaterial-based strategies for bone repair. In this study, we developed an injectable alginate/polyaniline (Alg/PANI) hydrogel containing green-synthesized magnesium oxide nanoparticles (MgONPs). The Alg/PANI/NPs scaffold exhibited favorable cytocompatibility and bioactivity, enhancing osteoblast-like cell viability/proliferation to 115.7% by day 3 and reducing hemolysis to 4.67%, indicating improved hemocompatibility. In addition, the scaffold was associated with macrophage polarization toward the pro-healing M2 phenotype, supported by morphological changes and increased TGF-β1 expression. It also established a regenerative microenvironment associated with enhanced antioxidant status, including a 2.5-fold increase in superoxide dismutase (SOD) activity, a 65% reduction in malondialdehyde (MDA), and a 2.1-fold increase in nitric oxide (NO) levels. Overall, these findings indicate that the Alg/PANI/NPs hydrogel is a promising multifunctional biomaterial that supports regenerative responses through immunomodulatory, antioxidative, and cytocompatible effects.
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Electroconductive and biodegradable scaffold based on alginate/polyaniline hydrogel loaded with green synthesized magnesium oxide nanoparticles for bone regeneration. — 科研速览 Science Skim