| Literature DB >> 30295645 |
Donghong Cui1,2,3, Yanmin Peng1,2, Chengfang Zhang1,4, Zezhi Li1, Yousong Su1, Yadan Qi5, Mengjuan Xing1, Jia Li5, Grace E Kim5, Kevin N Su5, Jinjie Xu1, Meiti Wang1, Wenhua Ding1, Marta Piecychna5, Lin Leng5, Michiru Hirasawa6, Kaida Jiang1, Lawrence Young5, Yifeng Xu1,2, Dake Qi1,2,6, Richard Bucala5.
Abstract
Atypical antipsychotics are highly effective antischizophrenic medications but their clinical utility is limited by adverse metabolic sequelae. We investigated whether upregulation of macrophage migration inhibitory factor (MIF) underlies the insulin resistance that develops during treatment with the most commonly prescribed atypical antipsychotic, olanzapine. Olanzapine monotherapy increased BMI and circulating insulin, triglyceride, and MIF concentrations in drug-naive schizophrenic patients with normal MIF expression, but not in genotypic low MIF expressers. Olanzapine administration to mice increased their food intake and hypothalamic MIF expression, which led to activation of the appetite-related AMP-activated protein kinase and Agouti-related protein pathway. Olanzapine also upregulated MIF expression in adipose tissue, which reduced lipolysis and increased lipogenic pathways. Increased plasma lipid concentrations were associated with abnormal fat deposition in liver and skeletal muscle, which are important determinants of insulin resistance. Global MIF-gene deletion protected mice from olanzapine-induced insulin resistance, as did intracerebroventricular injection of neutralizing anti-MIF antibody, supporting the role of increased hypothalamic MIF expression in metabolic dysfunction. These findings uphold the potential pharmacogenomic value of MIF genotype determination and suggest that MIF may be a tractable target for reducing the metabolic side effects of atypical antipsychotic therapy.Entities:
Keywords: Metabolism; Schizophrenia
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Year: 2018 PMID: 30295645 PMCID: PMC6205380 DOI: 10.1172/JCI93090
Source DB: PubMed Journal: J Clin Invest ISSN: 0021-9738 Impact factor: 14.808