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Research paper

Isochrysis zhanjiangensis exhibits protective effects against metabolic abnormalities induced by high-fat diet in mice

Mei Wu1Yu Bai1Yanrong Li2Kang Chen1Jingyang Le3Jian Li4Chengxu Zhou1Spiros N. Agathos4,5Lin Zhang6Xiaojun Yan7Jichang Han1( )
College of Food Science and Engineering, Ningbo University, Ningbo 315211, China
Ningbo Institute of Oceanography, Ningbo 315832, China
School of Medicine, Ningbo University, Ningbo 315211, China
Qingdao Innovation and Development Base, Harbin Engineering University, Qingdao 266000, China
Earth and Life Institute, Bioengineering Laboratory, Catholic University of Louvain, 1348 Louvain-La-Neuve, Belgium
Key Laboratory of Applied Marine Biotechnology, Ministry of Education of China, Ningbo University, Ningbo 315832, China
Collaborative Innovation Center for Zhejiang Marine High-Efficiency and Healthy Aquaculture, Ningbo University, Ningbo 315211, China

Edited by Xin Yu.

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Abstract

While Isochrysis zhanjiangensis, a marine microalga, has been widely adopted in aquaculture for its health-promoting properties, its potential as a functional food for human metabolic health remains unexplored. To bridge this gap, this study systematically evaluated the nutritional composition, biosafety, and therapeutic efficacy of I. zhanjiangensis against high-fat diet (HFD)-induced metabolic disorders in mice. Our results revealed that I. zhanjiangensis exhibits a desirable nutritional profile with no detectable toxicity, and its dietary supplementation significantly attenuated HFD-induced metabolic dysregulation. Gut microbiota profiling further demonstrated that I. zhanjiangensis supplementation restored microbial homeostasis, evidenced by mitigation of the elevated Firmicutes/Bacteroidota ratio and enrichment of beneficial genera including Muribaculum, Candidatus_Arthromitus, and Veillonella. Hepatic metabolomics identified key metabolites modulated by I. zhanjiangensis, such as N1-methyl-2-pyridone-5-carboxamide, N-acetyl-L-histidine, and eicosapentaenoic acid, which are mechanistically linked to lipid metabolism regulation. These findings not only position I. zhanjiangensis as a promising candidate for functional food development targeting HFD-induced metabolic dysregulation, but also highlight the untapped potential of aquaculture microalgae as sustainable resources for nutraceutical innovation.

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Marine Life Science & Technology
Pages 96-115

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Cite this article:
Wu M, Bai Y, Li Y, et al. Isochrysis zhanjiangensis exhibits protective effects against metabolic abnormalities induced by high-fat diet in mice. Marine Life Science & Technology, 2026, 8(1): 96-115. https://doi.org/10.1007/s42995-025-00320-x

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Received: 23 December 2024
Accepted: 11 August 2025
Published: 01 October 2025
© Ocean University of China 2025