C-Reactive Protein as a Potential Peripheral Biomarker for High-Lethality Suicide Attempts
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G. Serafini | M. Amore | L. Fusar-Poli | E. Aguglia | A. Aguglia | G. Spedicato | A. Costanza | A. Amerio | A. Natale | Giovanni Battista Gnecco | Alessio Lechiara | M. Marino | Matteo Meinero | Fabrizio Pastorino
[1] G. Serafini,et al. Hyper/neuroinflammation in COVID-19 and suicide etiopathogenesis: Hypothesis for a nefarious collision? , 2022, Neuroscience & Biobehavioral Reviews.
[2] L. Sher. The pathophysiology of high-lethality suicide attempts: a vital area of suicide research , 2022, Revista brasileira de psiquiatria.
[3] H. Nicolini,et al. Association and Genetic Expression between Genes Involved in HPA Axis and Suicide Behavior: A Systematic Review , 2021, Genes.
[4] M. Maes,et al. Inflammation and nitro-oxidative stress in current suicidal attempts and current suicidal ideation: a systematic review and meta-analysis , 2021, Molecular Psychiatry.
[5] D. Guden,et al. C-reactive protein as a potential biomarker in psychiatric practice: Are we there yet? , 2021, The world journal of biological psychiatry : the official journal of the World Federation of Societies of Biological Psychiatry.
[6] M. Maes,et al. Increased C‐reactive protein concentration and suicidal behavior in people with psychiatric disorders: A systematic review and meta‐analysis , 2021, Acta psychiatrica Scandinavica.
[7] A. Docherty,et al. Genetic contributions to suicidal thoughts and behaviors , 2021, Psychological Medicine.
[8] Michael Maes,et al. Suicide attempts are associated with activated immune-inflammatory, nitro-oxidative, and neurotoxic pathways: A systematic review and meta-analysis. , 2021, Journal of affective disorders.
[9] G. Serafini,et al. Peripheral BDNF levels in psychiatric patients with and without a history of suicide attempt: A systematic review and meta-analysis , 2021, Progress in Neuro-Psychopharmacology and Biological Psychiatry.
[10] G. Serafini,et al. Meteorological Variables and Suicidal Behavior: Air Pollution and Apparent Temperature Are Associated With High-Lethality Suicide Attempts and Male Gender , 2021, Frontiers in Psychiatry.
[11] Alja Videtič Paska,et al. Biomarkers for suicidal behavior: miRNAs and their potential for diagnostics through liquid biopsy - a systematic review. , 2020, Epigenomics.
[12] J. Mann,et al. A Brain-Centric Model of Suicidal Behavior. , 2020, The American journal of psychiatry.
[13] M. Pompili,et al. The Involvement of Hypothalamus–Pituitary–Adrenal (HPA) Axis in Suicide Risk , 2020, Brain sciences.
[14] G. Serafini,et al. Predictors of relapse in high lethality suicide attempters: a six-month prospective study. , 2020, Journal of affective disorders.
[15] G. Serafini,et al. High-lethality of suicide attempts associated with platelet to lymphocyte ratio and mean platelet volume in psychiatric inpatient setting , 2020, The world journal of biological psychiatry : the official journal of the World Federation of Societies of Biological Psychiatry.
[16] M. Pompili,et al. A Specific Inflammatory Profile Underlying Suicide Risk? Systematic Review of the Main Literature Findings , 2020, International journal of environmental research and public health.
[17] A. Canuto,et al. Impulsivity and Impulsivity-Related Endophenotypes in Suicidal Patients with Substance Use Disorders: an Exploratory Study , 2020, International Journal of Mental Health and Addiction.
[18] M. Pompili,et al. Understanding the Complex of Suicide in Depression: from Research to Clinics , 2020, Psychiatry investigation.
[19] J. Pardo-Fernández,et al. The Youden Index in the Generalized Receiver Operating Characteristic Curve Context , 2019, The international journal of biostatistics.
[20] G. Serafini,et al. The Association Between Dyslipidemia and Lethality of Suicide Attempts: A Case-Control Study , 2019, Front. Psychiatry.
[21] G. Serafini,et al. The role of seasonality and photoperiod on the lethality of suicide attempts: A case-control study. , 2019, Journal of affective disorders.
[22] H. Su,et al. Ambient temperature, sunlight duration, and suicide: A systematic review and meta-analysis. , 2019, The Science of the total environment.
[23] P. Das,et al. Understanding suicide: Focusing on its mechanisms through a lithium lens. , 2018, Journal of affective disorders.
[24] M. Feldner,et al. Lethality of Previous Suicidal Behavior among Patients Hospitalized for Suicide Risk Predicts Lethality of Future Suicide Attempts. , 2018, Suicide & life-threatening behavior.
[25] M. Pompili,et al. Suicide Risk among Immigrants and Ethnic Minorities: A Literature Overview , 2018, International journal of environmental research and public health.
[26] J. Ashworth,et al. Role of C-Reactive Protein at Sites of Inflammation and Infection , 2018, Front. Immunol..
[27] A. Krystal,et al. The relationship of person-specific eveningness chronotype, greater seasonality, and less rhythmicity to suicidal behavior: A literature review. , 2018, Journal of affective disorders.
[28] G. Turecki,et al. Neuropathology of suicide: recent findings and future directions , 2017, Molecular Psychiatry.
[29] Wolzt,et al. World Medical Association Declaration of Helsinki: ethical principles for medical research involving human subjects. , 2003, The Journal of the American College of Dentists.
[30] Asma Lamrani Hanchi,et al. Immunoanalytical characteristics of C-reactive protein and high sensitivity C-reactive protein. , 2017, Annales de biologie clinique.
[31] P. Courtet,et al. Neuroinflammation in suicide: Toward a comprehensive model , 2016, The world journal of biological psychiatry : the official journal of the World Federation of Societies of Biological Psychiatry.
[32] Howard R. Underwood,et al. Association of Systemic Inflammation With Risk of Completed Suicide in the General Population. , 2016, JAMA psychiatry.
[33] Gustavo Turecki,et al. Suicide and suicidal behaviour , 2016, The Lancet.
[34] G. Turecki. The molecular bases of the suicidal brain , 2014, Nature Reviews Neuroscience.
[35] M. Åsberg,et al. High interleukin-6 and impulsivity: determining the role of endophenotypes in attempted suicide , 2014, Translational Psychiatry.
[36] E. Coccaro,et al. Elevated plasma inflammatory markers in individuals with intermittent explosive disorder and correlation with aggression in humans. , 2014, JAMA psychiatry.
[37] G. Engström,et al. CSF biomarkers in suicide attempters – a principal component analysis , 2011, Acta psychiatrica Scandinavica.
[38] Xavier Robin,et al. pROC: an open-source package for R and S+ to analyze and compare ROC curves , 2011, BMC Bioinformatics.
[39] Yi-Jen Su,et al. Clinical characteristics, precipitating stressors, and correlates of lethality among suicide attempters. , 2009, Chang Gung medical journal.
[40] M. Oquendo,et al. Columbia Classification Algorithm of Suicide Assessment (C-CASA): classification of suicidal events in the FDA's pediatric suicidal risk analysis of antidepressants. , 2007, The American journal of psychiatry.
[41] E. Coccaro. Association of C-reactive protein elevation with trait aggression and hostility in personality disordered subjects: a pilot study. , 2006, Journal of psychiatric research.
[42] M. Garvey. The Suicidal Mind , 1998 .
[43] D. Brent,et al. Personality disorder, personality traits, impulsive violence, and completed suicide in adolescents. , 1994, Journal of the American Academy of Child and Adolescent Psychiatry.
[44] D. Hosmer,et al. Applied Logistic Regression , 1991 .
[45] Patrice Mangin,et al. Neurobiology of suicide: do biomarkers exist? , 2013, International Journal of Legal Medicine.
[46] L. Hankoff. Why People Die by Suicide , 2006 .
[47] W. Youden,et al. Index for rating diagnostic tests , 1950, Cancer.