Genetic polymorphisms of BDNF on cognitive functions in drug-naive first episode patients with schizophrenia

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作者
Xiuru Su
Limin Qiao
Qing Liu
Yujie Shang
Xiaoni Guan
Meihong Xiu
Xiangyang Zhang
机构
[1] Hebei Province Veterans Hospital,Department of Psychiatry
[2] Lian Yang Community Health Service Center,Qingdao Mental Health Center
[3] Qingdao University,Peking University HuiLongGuan Clinical Medical School
[4] Beijing HuiLongGuan Hospital,CAS Key Laboratory of Mental Health, Institute of Psychology
[5] Chinese Academy of Sciences,undefined
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Scientific Reports | / 11卷
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摘要
Brain-derived neurotrophic factor (BDNF) is reported to be involved in cognitive decline in patients with schizophrenia (SZ). Previous studies have found that cognitive deficits remain stable during the chronic disease phase in SZ, but the findings were inconsistent. The role of BDNF in cognitive deficits at different stage of illness remains unclear. This study aimed to examine the effect of BDNF polymorphisms on cognitive deficits in drug-naïve first-episode (DNFE) patients and chronic patients with SZ. 262 DNFE patients, 844 chronic patients, and 1043 healthy controls were recruited to compare 4 polymorphisms in BDNF gene and cognitive function. We found that there was no significant difference in genotype and allele frequencies between SZ patients and controls. However, they were closely related to cognitive functioning. BDNF rs2030324 polymorphism played a strong role in language performance only in DNFE patients with SZ. The language index of DNFE patients with rs2030324 TT and TC genotypes was worse than that of chronic patients, but there was no significant difference in CC genotypes between DNFE and chronic patients. Rs6265 had no significant effect on cognitive functioning in patients and controls. Our result suggests BDNF gene polymorphisms were related to different domains of cognitive function at the different stage of SZ, especially language in DNFE patients.
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[1]  
Xiu MH(2020)Interrelationships between BDNF, superoxide dismutase, and cognitive impairment in drug-naive first-episode patients with schizophrenia Schizophr. Bull. 46 1498-1510
[2]  
Li Z(2014)Motivational and neurocognitive deficits are central to the prediction of longitudinal functional outcome in schizophrenia Acta Psychiatr. Scand. 130 290-299
[3]  
Chen DC(2018)A comprehensive review of genetic and epigenetic mechanisms that regulate BDNF expression and function with relevance to major depressive disorder Am. J. Med. Genet. B Neuropsychiatr. Genet. 177 143-167
[4]  
Fervaha G(2013)Neurotrophin regulation of neural circuit development and function Nat. Rev. Neurosci. 14 7-23
[5]  
Foussias G(2014)New insight in expression, transport, and secretion of brain-derived neurotrophic factor: Implications in brain-related diseases World J. Biol. Chem. 5 409-428
[6]  
Agid O(2015)Regulation of hippocampal synaptic plasticity by BDNF Brain Res. 1621 82-101
[7]  
Remington G(2005)Neurotrophins: A ticket to ride for BDNF Curr. Biol. 15 R262-R264
[8]  
Hing B(2011)Blood BDNF concentrations reflect brain-tissue BDNF levels across species Int. J. Neuropsychopharmacol. 14 347-353
[9]  
Sathyaputri L(2015)Peripheral brain-derived neurotrophic factor in schizophrenia and the role of antipsychotics: Meta-analysis and implications Mol. Psychiatry 20 1108-1119
[10]  
Potash JB(2018)The neurobiological hypothesis of neurotrophins in the pathophysiology of schizophrenia: A meta-analysis J. Psychiatr. Res. 106 43-53