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Effects of Antidepressant Treatment on Neurotrophic Factors (BDNF and IGF-1) in Patients with Major Depressive Disorder (MDD)

Anna Mosiołek, Jadwiga Mosiołek, Sławomir Jakima, Aleksandra Pięta, Agata Szulc

2021Journal of Clinical Medicine89 citationsDOIOpen Access PDF

Abstract

Major depressive disorder (MDD) remains the subject of ongoing research as a multifactorial disease and a serious public health problem. There is a growing body of literature focusing on the role of neurotrophic factors in pathophysiology of MDD. A neurotrophic hypothesis of depression proposes that abnormalities of neurotrophins serum levels lead to neuronal atrophy and decreased neurogenesis, resulting in mood disorders. Consequently, in accordance with recent findings, antidepressant treatment modifies the serum levels of neurotrophins and thus leads to a clinical improvement of MDD. The purpose of this review is to summarize the available data on the effects of various antidepressants on serum levels of neurotrophins such as brain-derived neurotrophic factor (BDNF) and insulin-like growth factor (IGF-1). In addition, the authors discuss their role as prognostic factors for treatment response in MDD. A literature search was performed using the PubMed database. Following the inclusion and exclusion criteria, nine original articles and three meta-analyses were selected. The vast majority of studies have confirmed the effect of antidepressants on BDNF levels. Research on IGF-1 is limited and insufficient to describe the correlation between different antidepressant drugs and factor serum levels; however, four studies indicated a decrease in IGF-1 after treatment. Preliminary data suggest BDNF as a promising predictor of treatment response in MDD patients. The role of IGF-1 needs further investigation.

Topics & Concepts

Major depressive disorderAntidepressantNeurotrophic factorsMedicineNeurotrophinBrain-derived neurotrophic factorDepression (economics)MoodMood disordersOncologyInternal medicinePsychiatryBioinformaticsReceptorEconomicsAnxietyHippocampusMacroeconomicsBiologyNerve injury and regenerationNeurogenesis and neuroplasticity mechanismsStress Responses and Cortisol
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