3-Chloro-1,2-Propanediol Exposure Induces Cardiotoxicity and Behavioural Abnormalities in Zebrafish Embryos.

Environ Toxicol

Affiliated Hospital of Jinggangshan University, Jiangxi Engineering Laboratory of Zebrafish Modeling and Drug Screening for Human Diseases, Jiangxi Key Laboratory of Developmental Biology of Organs and Epigenetics, Clinical Research Center of Affiliated Hospital of Jinggangshan University, College of Life Sciences, Jinggangshan University, Ji'an, China.

Published: December 2024

Numerous contemporary diseases are linked to food contamination. Pathogenic agents might stem from certain food ingredients or result from pollution stemming from food processing or packaging. One such contaminant is 3-Chloro-1,2-propanediol (3-MCPD), it has been previously reported to be produced during the preparation of chemical sauces, as well as during the heating of baked goods. Yet, uncertainty surrounds its potential to induce embryonic developmental toxicity. In this study, zebrafish were employed as the focal point to assess the impact of 3-MCPD on initial embryonic development, heart functionality, and behavior. The research unveiled that exposure of zebrafish embryos to 18, 36, and 54 mM 3-MCPD led to cardiac anomalies, including pericardial edema, reduced heart rate, and elongated SV-BA distance. Additionally, 3-MCPD exposure triggered aberrations in cardiac-related gene expression and an elevation in oxidative stress. Notably, behavioral changes were observed in 3-MCPD-exposed zebrafish embryos, while vascular development appeared unaffected. This study introduces a novel basis for comprehensive exploration of 3-MCPD toxicity.

Download full-text PDF

Source
http://dx.doi.org/10.1002/tox.24440DOI Listing

Publication Analysis

Top Keywords

zebrafish embryos
12
3-mcpd
5
3-chloro-12-propanediol exposure
4
exposure induces
4
induces cardiotoxicity
4
cardiotoxicity behavioural
4
behavioural abnormalities
4
zebrafish
4
abnormalities zebrafish
4
embryos numerous
4

Similar Publications

Bee pollen peptides as potent tyrosinase inhibitors with anti-melanogenesis effects in murine b16f10 melanoma cells and zebrafish embryos.

Sci Rep

December 2024

Center of Excellence in Bioconversion and Bioseparation for Platform Chemical Production, Institute of Biotechnology and Genetic Engineering, Chulalongkorn University, 254 Phayathai Road, Pathumwan, Bangkok, 10330, Thailand.

One important functional food ingredient today, valued for its health properties and ability to prevent disease, is bee pollen, which comprises a combination of nectar, pollen from plants, and the secretions of bees. In this research, the tyrosinase (TYR) inhibiting abilities of the peptides derived from bee pollen protein hydrolysates are investigated. Various proteases were utilized to generate these peptides, followed by testing at different concentrations.

View Article and Find Full Text PDF

Identifying target proteins for bioactive molecules is essential for understanding their mechanisms, developing improved derivatives, and minimizing off-target effects. Despite advances in target identification (target-ID) technologies, significant challenges remain, impeding drug development. Most target-ID methods use cell lysates, but maintaining an intact cellular context is vital for capturing specific drug-protein interactions, such as those with transient protein complexes and membrane-associated proteins.

View Article and Find Full Text PDF

Skin, as the primary interface with the external environment, is susceptible to damage, posing a formidable challenge for complete restoration in adult skin injuries. Wound healing remains a clinical challenge, necessitating advanced biomaterials to support cell proliferation, modulate inflammation, and combat infections. Among several options, hydrogel can be a capable contender for biological dressings.

View Article and Find Full Text PDF

Toxic effects of chlorantraniliprole on zebrafish (Danio rerio) at different developmental stages under antibiotic pressure.

Environ Pollut

December 2024

Center for Pesticide Research, Department of Applied Chemistry, China Agricultural University, Beijing, 100193, China. Electronic address:

Pesticides and antibiotics have been frequently reported in the environment, but it remains unclear whether antibiotics affect the toxicity of pesticides to aquatic organisms. In this study, the acute, developmental and reproductive toxicity effects of the pesticide chlorantraniliprole on zebrafish at different developmental stages under pressure of ciprofloxacin and erythromycin at environmental concentration were explored. Chlorantraniliprole, ciprofloxacin, and erythromycin are all low toxic to zebrafish (LC > 100 mg/L), and environmental concentrations of antibiotics have no effect on the acute toxicity of chlorantraniliprole to zebrafish.

View Article and Find Full Text PDF

The goal of this study was to compare the bioaccumulation of the PCB mixture Aroclor 1254 in zebrafish to cardiac and neurologic outcomes. The establishment of effect concentrations (ECs) for cardiac and neurotoxic effects of PCBs in early life stage fish is challenging due to a lack of measured PCB concentrations in test media (e.g.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!