Air pollution and hippocampal atrophy in first episode schizophrenia
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Authors
Worthington, Michelle A.Petkova, Eva
Freudenreich, Oliver
Cather, Corrine
Holt, Daphne
Bello, Iruma
Diminich, Erica
Tang, Yingying
Ardekani, Babak A.
Zeng, Botao
Wu, Renrong
Fan, Xiaoduo
Zhao, Jingping
Wang, Jijun
Goff, Donald C.
UMass Chan Affiliations
Department of PsychiatryDocument Type
Journal ArticlePublication Date
2020-03-10Keywords
Air pollutionEarly psychosis
Hippocampal volume
Inflammation
Oxidative stress
Schizophrenia
Environmental Public Health
Mental and Social Health
Nervous System
Nervous System Diseases
Neuroscience and Neurobiology
Psychiatry
Psychiatry and Psychology
Therapeutics
Metadata
Show full item recordAbstract
Air pollution has recently been linked to central nervous system (CNS) diseases, possibly mediated by inflammation and oxidative stress. Hippocampal atrophy in individuals with first episode schizophrenia (FES) has also been associated with biomarkers of inflammation and oxidative stress, whereas hippocampal atrophy was not observed in matched healthy controls with similar biomarker levels of inflammation and oxidative stress. Fine particulate matter (PM2.5), one component of air pollution, is most strongly implicated in CNS disease. The present study examined the association between PM2.5 and hippocampal volume in individuals with FES who participated in a 52-week placebo-controlled clinical trial of citalopram added to clinician-determined antipsychotic treatment at four sites in the US and China. Left hippocampal volumetric integrity (LHVI; inversely related to atrophy) was measured at baseline and week 52 using an automated highly-reliable algorithm. Mean annual PM2.5 concentrations were obtained from records compiled by the World Health Organization. The relationships between baseline LHVI and PM2.5 and change in LHVI and PM2.5 were evaluated using regression analyses. 89 participants completed imaging at baseline and 46 participants completed imaging at week 52. Mean annual PM2.5 was significantly associated with both baseline LHVI and change in LHVI after controlling for age, sex, baseline LHVI, duration of untreated psychosis and baseline antipsychotic medication dose. Air pollution may contribute to the progression of hippocampal atrophy after a first episode of illness, but these findings should be considered preliminary since other unmeasured factors may have differed between cities and contributed to the observed effect.Source
Worthington MA, Petkova E, Freudenreich O, Cather C, Holt D, Bello I, Diminich E, Tang Y, Ardekani BA, Zeng B, Wu R, Fan X, Zhao J, Wang J, Goff DC. Air pollution and hippocampal atrophy in first episode schizophrenia. Schizophr Res. 2020 Mar 10:S0920-9964(20)30104-3. doi: 10.1016/j.schres.2020.03.001. Epub ahead of print. PMID: 32169403. Link to article on publisher's site
DOI
10.1016/j.schres.2020.03.001Permanent Link to this Item
http://hdl.handle.net/20.500.14038/46378PubMed ID
32169403Related Resources
ae974a485f413a2113503eed53cd6c53
10.1016/j.schres.2020.03.001