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Updated: Jan 29, 2026

Analysis of Oxidative Stress in Zebrafish Embryos
Published on: July 7, 2014
Exposure to propylparaben induces craniofacial bone developmental toxicity through ROS-induced oxidative stress and
Runhao Zhu1, Yong Huang2, Xinyue Chang3
1Department of Cariology & Endodontics, Affiliated Stomatological Hospital, Jiangxi Medical College, Nanchang University, Nanchang, Jiangxi 330006, China; Jiangxi Branch of State Key Laboratory for Macromolecule Drugs and Large-scale Preparation & National Engineering Research Center of Cell Growth Factor Drugs and Protein Biologics, Center for Genetic Development and Regenerative Medicine, First Affiliated Hospital of Gannan Medical University, Ganzhou, Jiangxi Province, China; Jiangxi Key Laboratory of Oral Biomedicine, Jiangxi Clinical Medical Research Center of Oral Diseases, Nanchang, Jiangxi 330006, China.
Abstract:
Propylparaben (PrP) is an extensively utilized antimicrobial preservative in food industry, cosmetics, personal care products, and pharmaceuticals. Nevertheless, the toxicological effects of PrP on animals are still not well characterized. In this study, zebrafish embryos and larvae were exposed to PrP at concentrations of 5, 7.5, and 10 μM from 10 h post-fertilization (hpf) to 4 days post-fertilization (dpf), reflecting international safety standards. PrP exposure induced severe craniofacial cartilage deformities in larvae at 4 dpf, concomitant with a significant elevation in oxidative stress. Biochemical analyses confirmed markedly increased the activities of the antioxidant superoxide dismutase (SOD) and enzymes catalase (CAT), alongside elevated malondialdehyde (MDA) levels, indicating lipid peroxidation. RT-qPCR revealed downregulated expression of key chondrogenic marker genes (col2a1a, sox9a, sox9b). Additionally, morphological alterations in maxillofacial chondrocytes were observed, driven by significantly enhanced apoptosis without significant inhibition of proliferation. Critically, cotreatment with the antioxidant astaxanthin (AST) partially rescued craniofacial cartilage development. These findings demonstrate that PrP-induced oxidative stress promotes chondrocyte apoptosis, leading to craniofacial malformations in zebrafish embryos.
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