April 2024 in “Journal of psychiatric research” Short-term finasteride use in male rats caused anxiety, depression, and memory problems.
November 2019 in “Synapse” Brain-made chemicals can control nerve cell function differently in various parts of a mouse's brain, which may help us understand neurological conditions.
Neonatal allopregnanolone and stress affect behavior differently in adolescence and adulthood.
January 2012 in “ProQuest LLC eBooks” Changes in early neurosteroid levels can affect adult learning and anxiety.
11 citations
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August 2019 in “BMJ” Post-finasteride syndrome causes sexual, physical, and psychological symptoms, but more research is needed to understand its causes and connection to finasteride.
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September 2013 in “Psychoneuroendocrinology” Blocking CYP17A1 enzyme may help improve certain brain function issues related to dopamine.
26 citations
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July 2012 in “Epilepsy & Behavior” Finasteride worsens seizures in epilepsy rats and speeds up epileptogenesis in mice.
January 2009 in “IRIS UNIMORE (University of Modena and Reggio Emilia)” Neurosteroids from glia cells help control seizure development in epilepsy.
10 citations
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August 2024 in “Neuroscience & Biobehavioral Reviews” Neurosteroids may help treat disorders with too much dopamine activity.
April 2015 in “The FASEB Journal” Midazolam's antiseizure effects are mainly due to synaptic GABA-A receptors, not neurosteroids or extrasynaptic receptors.
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November 2018 in “Medicinal Chemistry” The compound GD-23 may reduce anxiety like diazepam by targeting the TSPO receptor.
January 2014 in “eScholarship (California Digital Library)” Targeting specific GABA receptors may help treat epilepsy and postpartum depression.
52 citations
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May 2011 in “Journal of Neuroendocrinology” PEA boosts allopregnanolone production and reduces oxidative stress in brain cells.
34 citations
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June 2011 in “Alcoholism: Clinical and Experimental Research” Three drugs change mice's alcohol drinking patterns by affecting GABAA receptors.
Blocking 5α-reductase can reduce sleep deprivation-related behavioral issues in rats.
December 2004 in “Neuropsychopharmacology” Long-term alcohol exposure alters brain receptor function differently in various brain regions.
May 2026 in “Comprehensive Psychoneuroendocrinology” Hair analysis can effectively assess long-term hormone activity in young children.
September 2012 in “European journal of psychotraumatology” A new method accurately measures long-term hormone levels in hair.
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January 2009 in “PubMed” Finasteride treatment can decrease certain steroids and increase others, possibly leading to depression symptoms in some cases.
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December 2019 in “Steroids” Body hair isn't a good substitute for scalp hair in steroid analysis.
Different rat and mouse strains respond differently to stress and alcohol, which may help us understand similar human mechanisms.
January 2017 in “Archivio Istituzionale della Ricerca (Universita Degli Studi Di Milano)” Short-term diabetes can cause changes in brain steroids, cholesterol balance, and mitochondrial function.
November 2025 in “European Journal of Endocrinology” Hair steroid profiling is a feasible, non-invasive alternative to serum analysis for assessing hormone levels and metabolism.
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May 2024 in “Reproductive Biology and Endocrinology” Fetal ovaries produce different hormones than adult ovaries, and endocrine-disrupting chemicals may affect this process.
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November 2018 in “Psychoneuroendocrinology” 186 citations
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February 1980 in “Clinical Endocrinology” During puberty, hormone levels rise, with early increases in some steroids and most menstrual cycles becoming regular by six years after menarche.
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January 2000 in “Hormone Research in Paediatrics” Cytokines and neuropeptides are key in controlling androgen levels, affecting skin and hair conditions.
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December 1998 in “The Journal of Steroid Biochemistry and Molecular Biology” Human hair can be used to measure reproductive hormones.
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September 2010 in “Immunology Endocrine & Metabolic Agents - Medicinal Chemistry” Sex hormones influence immune responses and may help treat diseases.