Metabolic polygenic risk scores effect on antipsychotic-induced metabolic dysregulation: A longitudinal study in a first episode psychosis cohort
2022; Elsevier BV; Volume: 244; Linguagem: Inglês
10.1016/j.schres.2022.05.021
ISSN1573-2509
AutoresÀlex G. Segura, Albert Martínez-Pinteño, Patricia Gassó, Natalia Rodríguez, Miquel Bioque, Manuel J. Cuesta, Javier González‐Peñas, Clemente García‐Rizo, António Lobo, Ana González‐Pinto, Alicia García-Alcón, Alexandra Roldán, Eduard Vieta, Josefina Castro‐Fornieles, Anna Mané, Jerónimo Saíz, Miquel Bernardo, Sergi Mas,
Tópico(s)Diabetes Treatment and Management
ResumoMetabolic syndrome is a health-threatening condition suffered by approximately one third of schizophrenia patients and largely attributed to antipsychotic medication. Previous evidence reports a common genetic background of psychotic and metabolic disorders. In this study, we aimed to assess the role of polygenic risk scores (PRSs) on the progression of the metabolic profile in a first-episode psychosis (FEP) cohort.Of the 231 FEP individuals included in the study, 192-220 participants were included in basal analysis and 118-179 in longitudinal 6-month models. Eleven psychopathologic and metabolic PRSs were constructed. Basal and longitudinal PRSs association with metabolic measurements was assessed by statistical analyses.No major association of psychopathological PRSs with the metabolic progression was found. However, high risk individuals for depression and cholesterol-related PRSs reported a higher increase of cholesterol levels during the follow-up (FDR ≤ 0.023 for all analyses). Their effect was comparable to other well-established pharmacological and environmental risk factors (explaining at least 1.2% of total variance).Our findings provide new evidence of the effects of metabolic genetic risk on the development of metabolic dysregulation. The future establishment of genetic profiling tools in clinical procedures could enable practitioners to better personalize antipsychotic treatment selection and dosage.
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