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  • Zhang C, Yu H, Li J, et al. Mitochondrial dysfunction and lipometabolic disturbance induced by the co-effect of polystyrene nanoplastics and copper impede early life stage development of zebrafish (Danio rerio)[J]. Environmental Science: Nano, 2023.
    IF: 9.473
    Year: 2022 Journal: Environ Sci-Nano
    PubMed: 10.1039/D2EN00710J
  • Zhang C; Yu H; Li J, et al., Mitochondrial dysfunction and lipometabolic disturbance induced by co-effect of polystyrene nanoplastics and copper impedes early life stage development of zebrafish (Danio rerio). Environmental Science: Nano 2023.
    IF: 9.473
    Year: 2022 Journal: Environ Sci-Nano
    PubMed: 10.1039/d2en00710j
  • Ma P; Huang R; Ou Y, A soy glycinin derived octapeptide protects against MCD diet induced non-alcoholic fatty liver disease in mice. Food Science and Human Wellness 2022, 11 (6), 1544-1554.
    IF: 8.022
    Year: 2022 Journal: Food Sci Hum Well
    DOI:10.1016/j.fshw.2022.06.012
  • Fang W; Chen Q; Li J, et al., Endoplasmic Reticulum Stress Disturbs Lipid Homeostasis and Augments Inflammation in the Intestine and Isolated Intestinal Cells of Large Yellow Croaker (Larimichthys crocea). Front Immunol 2021, 12, 738143.
    IF: 7.561
    Year: 2021 Journal: Front Immunol
    PubMed: 34489982
  • Shen Q; Liu Y J; Qiu T T, et al., Microplastic-induced NAFLD: Hepatoprotective effects of nanosized selenium. Ecotoxicol Environ Saf 2024, 272, 115850.
    IF: 6.8
    Year: 2024 Journal: Ecotox Environ Safe
    PubMed: 38290310
  • Xia X; Chen Y; Qu H, et al., The high-expression programming of SR-B1 mediates adrenal dysfunction in female offspring induced by prenatal caffeine exposure and its cholesterol accumulation mechanism. Food Funct 2023.
    IF: 6.1
    Year: 2023 Journal: Food Funct
    PubMed: 38113052
  • Hu Y; Cai M; Zhong H, et al., A Study on How Methionine Restriction Decreases the Body's Hepatic and Lipid Deposition in Rice Field Eel (Monopterus albus). Int J Mol Sci 2021, 22 (24).
    IF: 5.923
    Year: 2021 Journal: Int J Mol Sci
    PubMed: 34948174
  • Sun X; Liu X; Wang C, et al., Deciphering Mechanisms of Adipocyte Differentiation in Abdominal Fat of Broilers. J Agric Food Chem 2024, 72 (45), 25403-25413.
    IF: 5.7
    Year: 2024 Journal: J Agric Food Chem
    PubMed: 39483088
  • Luo J; Chen M; Ji H, et al., Brown adipose tissue-derived Nrg4 alleviates non-alcoholic fatty liver disease in mice. Journal of Functional Foods 2023, 108, 105735.
    IF: 5.6
    Year: 2023 Journal: J Funct Foods
    DOI:10.1016/j.jff.2023.105735
  • Zhang X; Lin W; Lei S, et al., The anti-hyperlipidemic effects of Poria cocos (Schw.) Wolf extract: Modulating cholesterol homeostasis in hepatocytes via PPARalpha pathway. J Ethnopharmacol 2023, 321, 117532.
    IF: 5.4
    Year: 2023 Journal: J Ethnopharmacol
    PubMed: 38048892
  • Zhong M; Yan Y; Yuan H, et al., Astragalus mongholicus polysaccharides ameliorate hepatic lipid accumulation and inflammation as well as modulate gut microbiota in NAFLD rats. Food Funct 2022, 13 (13), 7287-7301.
    IF: 5.396
    Year: 2022 Journal: Food Funct
    PubMed: 35726797
  • Yang Q; Zhang Y; Li L, et al., D-chiro-Inositol facilitates adiponectin biosynthesis and activates the AMPKalpha/PPARs pathway to inhibit high-fat diet-induced obesity and liver lipid deposition. Food Funct 2022.
    IF: 5.396
    Year: 2022 Journal: Food Funct
    PubMed: 35708620
  • Li R; Xue Z; Li S, et al., Mulberry leaf polysaccharides ameliorate obesity through activation of brown adipose tissue and modulation of the gut microbiota in high-fat diet fed mice. Food Funct 2022, 13 (2), 561-573.
    IF: 5.396
    Year: 2021 Journal: Food Funct
    PubMed: 34951619
  • Sui Z; Wang X; Sun Y, et al., Optimal dietary methionine requirement of sub-adult turbot (Scophthalmus maximus L.): Growth performance, feed utilization and hepatic lipid metabolism. Aquaculture 2022, 739197.
    IF: 5.135
    Year: 2022 Journal: Aquaculture
    DOI:10.1016/j.aquaculture.2022.739197
  • Wang C; Zhang C; Yu H, et al., Glycerol monolaurate and triglycerol monolaurate alleviated high-fat diet induced lipid accumulation and damage of liver in zebrafish (Danio rerio). Aquaculture 2022, 561, 738616.
    IF: 5.135
    Year: 2022 Journal: Aquaculture
    DOI:10.1016/j.aquaculture.2022.738616
  • Chen C; Wang S; Zhang M, et al., miR-24 is involved in vertebrate LC-PUFA biosynthesis as demonstrated in marine teleost Siganus canaliculatus. Biochim Biophys Acta Mol Cell Biol Lipids 2019, 1864 (5), 619-628.
    IF: 4.966
    Year: 2019 Journal: BBA-Mol Cell Biol L
    PubMed: 30684680
  • Chen C; Wang S; Hu Y, et al., miR-26a mediates LC-PUFA biosynthesis by targeting the Lxralpha-Srebp1 pathway in the marine teleost Siganus canaliculatus. J Biol Chem 2020, 295 (40), 13875-13886.
    IF: 4.238
    Year: 2020 Journal: J Biol Chem
    PubMed: 32759307
  • Zhao Z; Xiang X; Chen Q, et al., Sterol regulatory element binding protein 1: a mediator for high fat diet-induced hepatic gluconeogenesis and glucose intolerance in fish. J Nutr 2024.
    IF: 4.2
    Year: 2024 Journal: J Nutr
    PubMed: 38460786
  • Guo Y; Huang D; Chen F, et al., Lipid deposition in abalone Haliotis discus hannai affected by dietary lipid levels through AMPKα2/PPARα and JNK/mTOR/SREBP-1c pathway. Aquaculture 2021, 532, 736040.
    IF: 3.224
    Year: 2020 Journal: Aquaculture
    DOI:10.1016/j.aquaculture.2020.736040
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