Ketogenic diet alleviates brain iron deposition and cognitive dysfunction via Nrf2-mediated ferroptosis pathway in APP/PS1 mouse

被引:12
作者
Qin, Yaya
Bai, Dazhang
Tang, Ming
Zhang, Ming
Zhao, Li
Li, Jia
Yang, Rui
Jiang, Guohui [1 ]
机构
[1] North Sichuan Med Coll, Affiliated Hosp, Dept Neurol, 1 South Maoyuan Rd, Nanchong 637000, Sichuan, Peoples R China
关键词
Alzheimer's disease; Ketogenic diet; Ferroptosis; Brain iron deposition; Cognitive dysfunction; TAU PHOSPHORYLATION; BETA; HIPPOCAMPUS; MODEL;
D O I
10.1016/j.brainres.2023.148404
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Progressive cognitive decline and increased brain iron deposition with age are important features of Alzheimer's disease. Previous studies have found that the short-term ketogenic diet has neuroprotective effects in a variety of neurodegenerative diseases, but the effects of an early and long-term ketogenic diet on brain iron content and cognition of Alzheimer's disease have not been reported. In our study, 8-week-old APP/PS1 mice were given a 12-month ketogenic or standard diet, while C57BL/6 mice matched with the age and genetic background of APP/ PS1 mice were used as normal controls to be given a standard diet for the same length of time. We found that 12 months of an early ketogenic diet improved the impaired learning and memory ability of APP/PS1 mice. The improvement of cognitive function may be related to the reduction of amyloid-beta deposition and neuronal ferroptosis. The mechanism was achieved by the regulation of ferroptosis-related pathways after activation of nuclear factor erythroid 2-related factor 2 by ketogenic diet-induced elevated beta-hydroxybutyrate. In addition, blood biochemical results showed that compared with the standard diet group of the disease, although the early and long-term ketogenic diet increased blood lipids to some extent, it seemed to reduce liver, renal, and myocardial damage caused by genetic differences. This will provide a piece of positive evidence for the early and long-term use of ketogenic diets in people at risk of Alzheimer's disease.
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页数:13
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  • [21] Ablation of ferroptosis regulator glutathione peroxidase 4 in forebrain neurons promotes cognitive impairment and neurodegeneration
    Hambright, William Sealy
    Fonseca, Rene Solano
    Chen, Liuji
    Na, Ren
    Ran, Qitao
    [J]. REDOX BIOLOGY, 2017, 12 : 8 - 17
  • [22] The β-Secretase BACE1 in Alzheimer's Disease
    Hampel, Harald
    Vassar, Robert
    De Strooper, Bart
    Hardy, John
    Willem, Michael
    Singh, Neeraj
    Zhou, John
    Yan, Riqiang
    Vanmechelen, Eugeen
    De Vos, Ann
    Nistico, Robert
    Corbo, Massimo
    Imbimbo, Bruno Pietro
    Streffer, Johannes
    Voytyuk, Iryna
    Timmers, Maarten
    Monfared, Amir Abbas Tahami
    Irizarry, Michael
    Albala, Bruce
    Koyama, Akihiko
    Watanabe, Naoto
    Kimura, Teiji
    Yarenis, Lisa
    Lista, Simone
    Kramer, Lynn
    Vergallo, Andrea
    [J]. BIOLOGICAL PSYCHIATRY, 2021, 89 (08) : 745 - 756
  • [23] The development of the concept of ferroptosis
    Hirschhorn, Tal
    Stockwell, Brent R.
    [J]. FREE RADICAL BIOLOGY AND MEDICINE, 2019, 133 : 130 - 143
  • [24] Effects of Ketone Bodies on Brain Metabolism and Function in Neurodegenerative Diseases
    Jensen, Nicole Jacqueline
    Wodschow, Helena Zander
    Nilsson, Malin
    Rungby, Jorgen
    [J]. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2020, 21 (22) : 1 - 17
  • [25] Transferrin and transferrin receptors update
    Kawabata, Hiroshi
    [J]. FREE RADICAL BIOLOGY AND MEDICINE, 2019, 133 : 46 - 54
  • [26] The Roles of NRF2 in Modulating Cellular Iron Homeostasis
    Kerins, Michael John
    Ooi, Aikseng
    [J]. ANTIOXIDANTS & REDOX SIGNALING, 2018, 29 (17) : 1756 - 1773
  • [27] Ketone bodies: from enemy to friend and guardian angel
    Kolb, Hubert
    Kempf, Kerstin
    Roehling, Martin
    Lenzen-Schulte, Martina
    Schloot, Nanette C.
    Martin, Stephan
    [J]. BMC MEDICINE, 2021, 19 (01)
  • [28] Cystine transporter SLC7A11/xCT in cancer: ferroptosis, nutrient dependency, and cancer therapy
    Koppula, Pranavi
    Zhuang, Li
    Gan, Boyi
    [J]. PROTEIN & CELL, 2021, 12 (08) : 599 - 620
  • [29] Effects of Deferasirox in Alzheimer's Disease and Tauopathy Animal Models
    Kwan, Ping
    Ho, Amy
    Baum, Larry
    [J]. BIOMOLECULES, 2022, 12 (03)
  • [30] Iron and Alzheimer's Disease: An Update on Emerging Mechanisms
    Lane, Darius J. R.
    Ayton, Scott
    Bush, Ashley I.
    [J]. JOURNAL OF ALZHEIMERS DISEASE, 2018, 64 : S379 - S395