Related Experiment Video
Updated: Sep 18, 2025

Synthesis of Graphene-Hydroxyapatite Nanocomposites for Potential Use in Bone Tissue Engineering
Published on: July 27, 2022
Wolfiporia extensa Extract-Loaded Carboxymethyl Cellulose-Stabilized Cerium Oxide-Doped Hydroxyapatite Nanocomposites
Kiseok Han1, Anbazhagan Sathiyaseelan1, Myeong-Hyeon Wang1
1Department of Bio-Health Convergence, Kangwon National University, Chuncheon 24341, Republic of Korea.
Abstract:
Excessive levels of reactive oxygen species (ROS) are known to hinder effective bone regeneration by inducing oxidative stress in osteogenic environments. In this study, we developed novel nanocomposites (NCs) composed of green-synthesized cerium oxide (CeO2), bovine-derived hydroxyapatite (HA), carboxymethylcellulose (CMC), and Wolfiporia extensa (WE) extract. Comprehensive physicochemical characterization confirmed the nanocomposites' uniform morphology (average size ∼201 nm) and colloidal stability (zeta potential -32.6 mV). Notably, these NCs displayed strong antioxidant activity, significantly improving the survival of MC3T3-E1 preosteoblasts exposed to H2O2-induced stress (64.9% viability at 31.2 μg/mL). Furthermore, the composites significantly enhanced calcium deposition by 72.2%, indicating promoted osteogenic differentiation, and increased cell migration by 25.5% compared to the untreated control group. Biocompatibility was corroborated through chorioallantoic membrane (CAM) assays. Collectively, the CeO2/HA/CMC/WE NCs present a promising approach to mitigating oxidative stress and facilitating bone repair in ROS-compromised conditions.
More Related Videos
Related Concept Videos
Essential Minerals for Bone Health
Calcium and Phosphorus
Calcium is a critical component of bones, especially in the form of calcium phosphate and calcium carbonate. Since the body cannot make calcium, it must be obtained from the diet. However, calcium cannot be absorbed from the small intestine without...
Osteoclasts in Bone Remodeling

