Psychosis Research - Clinical Depression, Schizophrenia, Bipolar Disorder

Psychosis Research Today is a free monthly online journal that collates and summarizes the latest research about Psychosis, including details on clinical depression, schizophrenia, bipolar disorder.


Psychosis Research Today

Home

View Latest Issue

Information About Psychosis

Books on Psychosis

Advertising in Research Today

View Other Research Today Publications



Rapid array-based genomic characterization of a subtle structural abnormality: a patient with psychosis and der(18)t(5;18)(p14.1;p11.23).

Drazinic CM, Ercan-Sencicek AG, Gault LM, Hisama FM, Qumsiyeh MB, Nowak NJ, Cubells JF, State MW

Child Study Center, Yale University School of Medicine, New Haven, CT 06520, USA.

Array-based copy number analysis has recently emerged as a rapid means of mapping complex and/or subtle chromosomal abnormalities. We have compared two such techniques, using bacterial artificial chromosome (BAC) and single nucleotide polymorphism (SNP) arrays in the evaluation of a 45-year-old woman with dysmorphic features, mental retardation, psychosis, and an unbalanced derivative chromosome 18, (46,XX, der(18)t(18;?)(p12;?)). Both array-based methods demonstrated that the additional material on chromosome 18 was of 5p origin. The 5p duplication mapped telomeric to 25.320 Mb (BAC array) and 25.607 Mb (SNP array), corresponding to the band 5p14.1. Both BAC and SNP arrays also showed a deletion involving chromosome 18p extending telomeric from 8.437 Mb (BAC array) and 8.352 Mb (SNP array), corresponding to the band 18p11.23. Molecular cytogenetic mapping using fluorescence in situ hybridization (FISH) supported the array findings and further refined the breakpoint regions, confirming that the BAC and SNP chips were both useful in this regard. Both case reports and linkage analyses have implicated these chromosomal intervals in psychosis. The array-based experiments were completed over the course of several days. While these methods do not eliminate the requirement for traditional fine-mapping, they provide an efficient approach to identifying the origin and extent of deleted and duplicated material in chromosomal rearrangements.

Published 24 March 2005 in Am J Med Genet A, 134(3): 282-9.
Full-text of this article is available online (may require subscription).

Place a permanent text-link or advertisement here for just US$15.

© 2005-2008 Psychosis Research Today. All Rights Reserved.



Psychosis Research Today Archive:

Volume 1 (2005)
  Issue 1 (February)
  Issue 2 (March)
  Issue 3 (April)
  Issue 4 (May)
  Issue 5 (June)
  Issue 6 (July)
  Issue 7 (August)
  Issue 8 (September)
  Issue 9 (October)
  Issue 10 (November)
  Issue 11 (December)

Volume 2 (2006)
  Issue 1 (January)
  Issue 2 (February)
  Issue 3 (March)
  Issue 4 (April)
  Issue 5 (May)
  Issue 6 (June)
  Issue 7 (July)
  Issue 8 (August)
  Issue 9 (September)
  Issue 10 (October)
  Issue 11 (November)
  Issue 12 (December)

Volume 3 (2007)
  Issue 1 (January)
  Issue 2 (February)
  Issue 3 (March)
  Issue 4 (April)
  Issue 5 (May)
  Issue 6 (June)
  Issue 7 (July)
  Issue 8 (August)
  Issue 9 (September)
  Issue 10 (October)
  Issue 11 (November)
  Issue 12 (December)

Volume 4 (2008)
  Issue 1 (January)
  Issue 2 (February)
  Issue 3 (March)
  Issue 4 (April)
  Issue 5 (May)
  Issue 6 (June)
  Issue 7 (July)
  Issue 8 (August)
  Issue 9 (September)
  Issue 10 (October)



Psychosis Books

The Case Study Guide to Cognitive Behaviour Therapy of Psychosis (Wiley Series in Clinical Psychology)

The Case Study Guide to Cognitive Behaviour Therapy of Psychosis (Wiley Series in Clinical Psychology)