17β-oestradiol inhibits ferroptosis in the hippocampus by upregulating DHODH and further improves memory decline after ovariectomy
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Yuan Xie | Zaixin Guo | Q. Yu | Peng-hui Feng | Ying Tian | Yang You
[1] I. Stura,et al. Iron Deposition in Brain: Does Aging Matter? , 2022, International journal of molecular sciences.
[2] C. Sen,et al. Sex as Biological Variable in Cardiac Mitochondrial Bioenergetic Responses to Acute Stress , 2022, International journal of molecular sciences.
[3] Xinnan Wang,et al. Mitochondrial heterogeneity and homeostasis through the lens of a neuron , 2022, Nature Metabolism.
[4] V. Chevaleyre,et al. Sequential inhibitory plasticities in hippocampal area CA2 and social memory formation , 2022, Neuron.
[5] D. Dexter,et al. Iron, Neuroinflammation and Neurodegeneration , 2022, International journal of molecular sciences.
[6] R. Olsen,et al. Scene memory and hippocampal volume in middle-aged women with early hormone loss , 2022, Neurobiology of Aging.
[7] Stephen Maren,et al. Estrous cycle contributes to state-dependent contextual fear in female rats , 2022, Psychoneuroendocrinology.
[8] Yao Tian,et al. Iron Metabolism in Aging and Age-Related Diseases , 2022, International journal of molecular sciences.
[9] L. Mosconi,et al. Endogenous and Exogenous Estrogen Exposures: How Women’s Reproductive Health Can Drive Brain Aging and Inform Alzheimer’s Prevention , 2022, Frontiers in Aging Neuroscience.
[10] K. Burdick,et al. Brain-derived Neurotrophic Factor and Mood in Perimenopausal Depression. , 2021, Journal of affective disorders.
[11] C. Lohse,et al. Association of Premenopausal Bilateral Oophorectomy With Cognitive Performance and Risk of Mild Cognitive Impairment , 2021, JAMA network open.
[12] H. Bimonte-Nelson,et al. Surgical Menopause and Estrogen Therapy Modulate the Gut Microbiota, Obesity Markers, and Spatial Memory in Rats , 2021, Frontiers in Cellular and Infection Microbiology.
[13] H. Lane,et al. From Menopause to Neurodegeneration—Molecular Basis and Potential Therapy , 2021, International journal of molecular sciences.
[14] W. Chung,et al. Absolute quantification of phosphorylated ERβ amino acid residues in the hippocampus of women and in a rat model of menopause. , 2021, Endocrinology.
[15] Kellen L. Olszewski,et al. DHODH-mediated ferroptosis defence is a targetable vulnerability in cancer , 2021, Nature.
[16] Na Sang,et al. DHODH and cancer: promising prospects to be explored , 2021, Cancer & metabolism.
[17] A. Mamun,et al. DL-3-n-butylphthalide ameliorates diabetes-associated cognitive decline by enhancing PI3K/Akt signaling and suppressing oxidative stress , 2021, Acta Pharmacologica Sinica.
[18] Siqiong June Liu,et al. Inhibitory neurotransmission drives endocannabinoid degradation to promote memory consolidation , 2020, Nature Communications.
[19] M. McCarthy,et al. The peri-menopause in a woman’s life: a systemic inflammatory phase that enables later neurodegenerative disease , 2020, Journal of neuroinflammation.
[20] D. Tang,et al. Iron Metabolism in Ferroptosis , 2020, Frontiers in Cell and Developmental Biology.
[21] K. Frick,et al. Oestradiol as a neuromodulator of learning and memory , 2020, Nature Reviews Neuroscience.
[22] Ulrich Dirnagl,et al. The ARRIVE guidelines 2.0: Updated guidelines for reporting animal research* , 2020, BMC Veterinary Research.
[23] S. Weinberg,et al. Mitochondrial ubiquinol oxidation is necessary for tumour growth , 2020, Nature.
[24] V. Rishi,et al. Quercetin alleviates cognitive decline in ovariectomized mice by potentially modulating histone acetylation homeostasis. , 2020, The Journal of nutritional biochemistry.
[25] Dan Han,et al. Loss of Cardiac Ferritin H Facilitates Cardiomyopathy via Slc7a11-Mediated Ferroptosis , 2020, Circulation research.
[26] S. Weinberg,et al. Mitochondrial ubiquinol oxidation is necessary for tumor growth , 2020, Nature.
[27] S. Kingsberg,et al. Clinical Effects of Early or Surgical Menopause. , 2020, Obstetrics and gynecology.
[28] P. So,et al. Iron dyshomeostasis, lipid peroxidation and perturbed expression of cystine/glutamate antiporter in Alzheimer’s disease: Evidence of ferroptosis , 2020, Redox biology.
[29] Estrogen , 2020, Reactions Weekly.
[30] C. Klinge. Estrogenic control of mitochondrial function , 2020, Redox biology.
[31] Wugang Hou,et al. The Critical Period for Neuroprotection by Estrogen Replacement Therapy and the Potential Underlying Mechanisms , 2020, Current neuropharmacology.
[32] E. Mishima,et al. Drugs Repurposed as Antiferroptosis Agents Suppress Organ Damage, Including AKI, by Functioning as Lipid Peroxyl Radical Scavengers. , 2019, Journal of the American Society of Nephrology : JASN.
[33] Jiayi Yang,et al. Analysis of Learning and Memory Ability in an Alzheimer's Disease Mouse Model using the Morris Water Maze. , 2019, Journal of visualized experiments : JoVE.
[34] J. Manson,et al. Menopausal Estrogen-Alone Therapy and Health Outcomes in Women With and Without Bilateral Oophorectomy , 2019, Annals of Internal Medicine.
[35] George E. Barreto,et al. Molecular mechanisms and cellular events involved in the neuroprotective actions of estradiol. Analysis of sex differences , 2019, Frontiers in Neuroendocrinology.
[36] Monya Baker,et al. Reporting animal research: Explanation and Elaboration for the ARRIVE guidelines 2019 , 2019, bioRxiv.
[37] E. Swisher,et al. Hormone replacement therapy after risk reducing salpingo-oophorectomy in patients with BRCA1 or BRCA2 mutations; a systematic review of risks and benefits. , 2019, Gynecologic oncology.
[38] B. Stockwell,et al. The development of the concept of ferroptosis. , 2019, Free radical biology & medicine.
[39] M. Aschner,et al. Sex-Specific Differences in Redox Homeostasis in Brain Norm and Disease , 2019, Journal of Molecular Neuroscience.
[40] Robert I. Reid,et al. Association of Bilateral Salpingo-Oophorectomy Before Menopause Onset With Medial Temporal Lobe Neurodegeneration , 2018, JAMA neurology.
[41] P. Babaei,et al. Kaempferol attenuates cognitive deficit via regulating oxidative stress and neuroinflammation in an ovariectomized rat model of sporadic dementia , 2018, Neural regeneration research.
[42] F. Ros-Bernal,et al. Modulation of forebrain function by nucleus incertus and relaxin‐3/RXFP3 signaling , 2018, CNS neuroscience & therapeutics.
[43] Imane Lejri,et al. Mitochondria, Estrogen and Female Brain Aging , 2018, Front. Aging Neurosci..
[44] P. Neufer,et al. 17β-Estradiol Directly Lowers Mitochondrial Membrane Microviscosity and Improves Bioenergetic Function in Skeletal Muscle. , 2018, Cell metabolism.
[45] Y. Ke,et al. Expression of Iron Transporters and Pathological Hallmarks of Parkinson’s and Alzheimer’s Diseases in the Brain of Young, Adult, and Aged Rats , 2017, Molecular Neurobiology.
[46] Dragan Gamberger,et al. Identification of clusters of rapid and slow decliners among subjects at risk for Alzheimer’s disease , 2017, Scientific Reports.
[47] M. Voytko,et al. Effect of Ovarian Hormone Therapy on Cognition in the Aged Female Rhesus Macaque , 2016, The Journal of Neuroscience.
[48] W. Rocca,et al. Accelerated Accumulation of Multimorbidity After Bilateral Oophorectomy: A Population-Based Cohort Study , 2016, Mayo Clinic proceedings.
[49] Xiao-Min Wang,et al. The E3 Ubiquitin Ligase c‐Cbl Inhibits Microglia‐Mediated CNS Inflammation by Regulating PI3K/Akt/NF‐κB Pathway , 2016, CNS neuroscience & therapeutics.
[50] D. Gelain,et al. Oral administration of curcumin relieves behavioral alterations and oxidative stress in the frontal cortex, hippocampus, and striatum of ovariectomized Wistar rats. , 2016, The Journal of nutritional biochemistry.
[51] Z. Xi,et al. Cannabinoid Type 2 Receptors Mediate a Cell Type-Specific Plasticity in the Hippocampus , 2016, Neuron.
[52] B. Stockwell,et al. Cell-Line Selectivity Improves the Predictive Power of Pharmacogenomic Analyses and Helps Identify NADPH as Biomarker for Ferroptosis Sensitivity. , 2016, Cell chemical biology.
[53] Chu‐Hua Li,et al. Schizandrin ameliorates ovariectomy‐induced memory impairment, potentiates neurotransmission and exhibits antioxidant properties , 2015, British journal of pharmacology.
[54] Jeff H Duyn,et al. The role of iron in brain ageing and neurodegenerative disorders , 2014, The Lancet Neurology.
[55] K. Umehara,et al. Effect of miroestrol on ovariectomy-induced cognitive impairment and lipid peroxidation in mouse brain. , 2014, Phytomedicine : international journal of phytotherapy and phytopharmacology.
[56] D. Bennett,et al. Age at surgical menopause influences cognitive decline and Alzheimer pathology in older women , 2014, Neurology.
[57] L. Rodríguez-Mañas,et al. Role of oestrogens on oxidative stress and inflammation in ageing , 2013, Hormone molecular biology and clinical investigation.
[58] Karen M Rodrigue,et al. The role of hippocampal iron concentration and hippocampal volume in age-related differences in memory. , 2013, Cerebral cortex.
[59] E. Theodorsson,et al. Ovariectomy and 17β-estradiol replacement in rats and mice: a visual demonstration. , 2012, Journal of visualized experiments : JoVE.
[60] E. Pelle,et al. Iron and menopause: does increased iron affect the health of postmenopausal women? , 2009, Antioxidants & redox signaling.
[61] M. Day,et al. Activation of estrogen receptor-β regulates hippocampal synaptic plasticity and improves memory , 2008, Nature Neuroscience.
[62] L. Melton,et al. Increased risk of cognitive impairment or dementia in women who underwent oophorectomy before menopause , 2007, Neurology.
[63] G. Brewer,et al. Isolation and culture of adult neurons and neurospheres , 2007, Nature Protocols.
[64] Andrea Riccardo Genazzani,et al. Estrogen, cognition and female ageing. , 2007, Human reproduction update.
[65] S. Kaech,et al. Culturing hippocampal neurons , 2006, Nature Protocols.
[66] R. Crichton. Intracellular Iron Metabolism and Cellular Iron Homeostasis , 2002 .
[67] B. Mcewen,et al. Estradiol mediates fluctuation in hippocampal synapse density during the estrous cycle in the adult rat [published erratum appears in J Neurosci 1992 Oct;12(10):following table of contents] , 1992, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[68] B. Sherwin,et al. Estrogen and/or androgen replacement therapy and cognitive functioning in surgically menopausal women , 1988, Psychoneuroendocrinology.
[69] P. Brandt,et al. Mitochondria , 1959, The Journal of Biophysical and Biochemical Cytology.
[70] Lloyd H. Michael,et al. The Guide for the Care and Use of Laboratory Animals. , 2016, ILAR journal.
[71] M Chevion,et al. A site-specific mechanism for free radical induced biological damage: the essential role of redox-active transition metals. , 1988, Free radical biology & medicine.