Literature DB >> 19074543

Paroxetine-induced increase in LDL cholesterol levels.

J M Le Melledo1, K Mailo, N Lara, M C Abadia, L Gil, M Van Ameringen, G Baker, J Perez-Parada.   

Abstract

Paroxetine is widely prescribed because it has the indication for multiple psychiatric disorders. Our objective was to assess the effect of short-term administration of paroxetine on low-density lipoprotein cholesterol (LDL-C) levels in both healthy controls (HCs) and in patients with panic disorder (PD). Blood samples for measurement of LDL-C were collected atbaseline, after 8 weeks of paroxetine administration and post-discontinuation in 24 male HCs and nine male patients suffering from PD, for a total of 33 subjects. Paroxetine treatment, both in HCs and PD patients, induced a mean 9% increase per subject in LDL-C that normalized post-discontinuation, suggesting causality. The National Cholesterol Education Program (NCEP) guidelines suggest that this paroxetine-induced increase in LDL-C is clinically significant but would not warrant therapeutic intervention in this population selected to be at low cardiovascular risk. However, the increase in LDL-C levels raised above the threshold of 2.7 mmol/L (100 mg/dL) in 36% of our low-risk subjects. The LDL-C increase in this subgroup would be associated with a minor increase in coronary heart disease (CHD) risk. A similar 9% paroxetine-induced increase in LDL-C observed in the large number of psychiatric patients suffering from comorbid established CHD would be detrimental from a cardiovascular perspective and would oppose the new NCEP therapeutic goals of decreasing LDL-C levels by 30-40% in high and moderately high-risk patients. It is possible that longer treatment duration and use of higher doses of paroxetine would lead to a greater increase in LDL-C.

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Year:  2008        PMID: 19074543     DOI: 10.1177/0269881108094320

Source DB:  PubMed          Journal:  J Psychopharmacol        ISSN: 0269-8811            Impact factor:   4.153


  6 in total

1.  Decreased serum L-arginine and L-citrulline levels in major depression.

Authors:  S Hess; G Baker; G Gyenes; R Tsuyuki; S Newman; Jean-Michel Le Melledo
Journal:  Psychopharmacology (Berl)       Date:  2017-08-13       Impact factor: 4.530

2.  Fluoxetine induces lipid metabolism abnormalities by acting on the liver in patients and mice with depression.

Authors:  Shu-Juan Pan; Yun-Long Tan; Shang-Wu Yao; Yu Xin; Xuan Yang; Jing Liu; Jing Xiong
Journal:  Acta Pharmacol Sin       Date:  2018-05-10       Impact factor: 6.150

3.  Genetic variants associated with cardiometabolic abnormalities during treatment with selective serotonin reuptake inhibitors: a genome-wide association study.

Authors:  Katrine K Fjukstad; Lavinia Athanasiu; Shahram Bahrami; Kevin S O'Connell; Dennis van der Meer; Francesco Bettella; Ingrid Dieset; Nils Eiel Steen; Srdjan Djurovic; Olav Spigset; Ole A Andreassen
Journal:  Pharmacogenomics J       Date:  2021-04-06       Impact factor: 3.550

Review 4.  Cardiometabolic effects of psychotropic medications.

Authors:  Oluchi Abosi; Sneha Lopes; Samantha Schmitz; Jess G Fiedorowicz
Journal:  Horm Mol Biol Clin Investig       Date:  2018-01-10

5.  Metabolic Abnormalities Related to Treatment With Selective Serotonin Reuptake Inhibitors in Patients With Schizophrenia or Bipolar Disorder.

Authors:  Katrine Kveli Fjukstad; Anne Engum; Stian Lydersen; Ingrid Dieset; Nils Eiel Steen; Ole A Andreassen; Olav Spigset
Journal:  J Clin Psychopharmacol       Date:  2016-12       Impact factor: 3.153

6.  The mechanisms by which antidepressants may reduce coronary heart disease risk.

Authors:  Marc J Mathews; Edward H Mathews; Leon Liebenberg
Journal:  BMC Cardiovasc Disord       Date:  2015-08-01       Impact factor: 2.298

  6 in total

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