Wednesday, March 6, 2013

New gene variant may explain psychotic features in bipolar disorder

Mar. 5, 2013 ? Researchers at Karolinska Institutet have found an explanation for why the level of kynurenic acid (KYNA) is higher in the brains of people with schizophrenia or bipolar disease with psychosis. The study, which is published in the scientific periodical Molecular Psychiatry, identifies a gene variant associated with an increased production of KYNA.

The discovery contributes to the further understanding of the link between inflammation and psychosis, and might pave the way for improved therapies. Kynurenic acid (KYNA) is a substance that affects several signalling pathways in the brain and that is integral to cognitive function. Earlier studies of cerebrospinal fluid have shown that levels of KYNA are elevated in the brains of patients with schizophrenia or bipolar diseases with psychotic features. The reason for this has, however, not been fully understood.

KMO is an enzyme involved in the production of KYNA, and the Karolinska Institutet team has now shown that some individuals have a particular genetic variant of KMO that affects its quantity, resulting in higher levels of KYNA. The study also shows that patients with bipolar disease who carry this gene variant had almost twice the chance of developing psychotic episodes.

KYNA is produced in inflammation, such as when the body is exposed to stress and infection. It is also known that stress and infection may trigger psychotic episodes. The present study provides a likely description of this process, which is more likely to occur in those individuals with the gene variant related to higher production of KYNA. The researchers also believe that the discovery can help explain certain features of schizophrenia or development of other psychotic conditions.

"Psychosis related to bipolar disease has a very high degree of heredity, up to 80 per cent, but we don't know which genes and which mechanisms are involved," says Martin Schalling, Professor of medical genetics at Karolinska Institutet's Department of Molecular Medicine and Surgery, also affiliated to the Center for Molecular Medicine (CMM). "This is where our study comes in, with a new explanation that can be linked to signal systems activated by inflammation. This has consequences for diagnostics, and paves the way for new therapies, since there is a large arsenal of already approved drugs that modulate inflammation."

The study was financed with grants from Karolinska Institutet, the Swedish Research Council, the S?derstr?m-K?nigska Foundation, the Royal Physiographic Society, the Fredrik and Ingrid Thuring Foundation, the ?hl?n Foundation, the Department of Clinical Psychiatry at Huddinge University Hospital, the William Lion Penzner Foundation, and the US government.

Share this story on Facebook, Twitter, and Google:

Other social bookmarking and sharing tools:


Story Source:

The above story is reprinted from materials provided by Karolinska Institutet.

Note: Materials may be edited for content and length. For further information, please contact the source cited above.


Journal Reference:

  1. C Lavebratt, S Olsson, L Backlund, L Fris?n, C Sellgren, L Priebe, P Nikamo, L Tr?skman-Bendz, S Cichon, M P Vawter, U ?sby, G Engberg, M Land?n, S Erhardt, M Schalling. The KMO allele encoding Arg452 is associated with psychotic features in bipolar disorder type 1, and with increased CSF KYNA level and reduced KMO expression. Molecular Psychiatry, 2013; DOI: 10.1038/mp.2013.11

Note: If no author is given, the source is cited instead.

Disclaimer: This article is not intended to provide medical advice, diagnosis or treatment. Views expressed here do not necessarily reflect those of ScienceDaily or its staff.

Source: http://feeds.sciencedaily.com/~r/sciencedaily/health_medicine/genes/~3/qkn8nPIqsFk/130305080741.htm

ryan o neal dark knight rises trailer dark knight rises trailer vince young vince young evan longoria ryan seacrest

No comments:

Post a Comment

Note: Only a member of this blog may post a comment.