Identification of Chiari Type i Malformation subtypes using whole genome expression profiles and cranial base morphometrics

Christina A. Markunas, Eric Lock, Karen Soldano, Heidi Cope, Chien Kuang C. Ding, David S. Enterline, Gerald Grant, Herbert Fuchs, Allison E. Ashley-Koch, Simon G. Gregory

Research output: Contribution to journalArticlepeer-review

18 Scopus citations

Abstract

Background: Chiari Type I Malformation (CMI) is characterized by herniation of the cerebellar tonsils through the foramen magnum at the base of the skull, resulting in significant neurologic morbidity. As CMI patients display a high degree of clinical variability and multiple mechanisms have been proposed for tonsillar herniation, it is hypothesized that this heterogeneous disorder is due to multiple genetic and environmental factors. The purpose of the present study was to gain a better understanding of what factors contribute to this heterogeneity by using an unsupervised statistical approach to define disease subtypes within a case-only pediatric population. Methods. A collection of forty-four pediatric CMI patients were ascertained to identify disease subtypes using whole genome expression profiles generated from patient blood and dura mater tissue samples, and radiological data consisting of posterior fossa (PF) morphometrics. Sparse k-means clustering and an extension to accommodate multiple data sources were used to cluster patients into more homogeneous groups using biological and radiological data both individually and collectively. Results: All clustering analyses resulted in the significant identification of patient classes, with the pure biological classes derived from patient blood and dura mater samples demonstrating the strongest evidence. Those patient classes were further characterized by identifying enriched biological pathways, as well as correlated cranial base morphological and clinical traits. Conclusions: Our results implicate several strong biological candidates warranting further investigation from the dura expression analysis and also identified a blood gene expression profile corresponding to a global down-regulation in protein synthesis.

Original languageEnglish (US)
Article number39
JournalBMC Medical Genomics
Volume7
Issue number1
DOIs
StatePublished - Jun 25 2014

Bibliographical note

Funding Information:
We would like to thank all patients for participating in the Chiari genetics study. In addition, we acknowledge the technical assistance received from Kaitlyn Dunlap at the Duke Center for Human Genetics. This work was supported by grants provided from Conquer Chiari (SGG), Chiari and Syringomyelia Foundation (CAM), the National Institutes of Health (NS063273, AAK and SGG).

Keywords

  • Chiari Type I Malformation
  • Clustering
  • Cranial base morphometrics
  • Disease subtypes
  • Posterior fossa
  • Whole genome expression

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