» Articles » PMID: 23563574

Gene Expression Analysis in Cardiac Tissues from Infants Identifies Candidate Agents for Tetralogy of Fallot

Overview
Journal Pediatr Cardiol
Date 2013 Apr 9
PMID 23563574
Citations 4
Authors
Affiliations
Soon will be listed here.
Abstract

Tetralogy of Fallot (TOF) is the most common cyanotic heart defect and the most common cause of blue baby syndrome. Although great progress has been made, the molecular mechanisms of TOF are far from being fully understood, and treatment of this disease remains palliative. In this study, we downloaded gene expression data of TOF subjects with those of normally developing subjects from the Gene Expression Omnibus database and employed computational bioinformatics analyses to compare their gene expression patterns. Furthermore, small molecules that induce inverse gene changes to TOF were identified. A total of 2,274 genes involved in energy metabolism and protein binding were differentially expressed in TOF samples compared with samples from normal controls. Pathways associated with cellular oxygen tension were dysfunctional. In addition, we identified a group of small molecules that may be exploited as adjuvant drug to alleviate some symptoms for TOF patients. These drugs are clearly a direction that warrants additional consideration.

Citing Articles

A genome-wide analysis of cardiac lesions of pigs that die during transport: Is heart failure of in-transit-loss pigs associated with a heritable cardiomyopathy?.

Zurbrigg K, Bertolini F, Walugembe M, van Dreumel T, Alves D, Friendship R Can J Vet Res. 2021; 85(2):119-126.

PMID: 33883819 PMC: 7995549.


RNA expression profiles and regulatory networks in human right ventricular hypertrophy due to high pressure load.

Chouvarine P, Photiadis J, Cesnjevar R, Scheewe J, Bauer U, Pickardt T iScience. 2021; 24(3):102232.

PMID: 33786422 PMC: 7994198. DOI: 10.1016/j.isci.2021.102232.


Transcriptome analysis defines myocardium gene signatures in children with ToF and ASD and reveals disease-specific molecular reprogramming in response to surgery with cardiopulmonary bypass.

Raggi F, Cangelosi D, Becherini P, Blengio F, Morini M, Acquaviva M J Transl Med. 2020; 18(1):21.

PMID: 31924244 PMC: 6954611. DOI: 10.1186/s12967-020-02210-5.


Identification of differently expressed genes and small molecule drugs for Tetralogy of Fallot by bioinformatics strategy.

Gu Q, Chen X, Xiao Y, Chen L, Wang X, Fang J Pediatr Cardiol. 2014; 35(5):863-9.

PMID: 24463614 DOI: 10.1007/s00246-014-0868-8.

References
1.
Khositseth A, Tocharoentanaphol C, Khowsathit P, Ruangdaraganon N . Chromosome 22q11 deletions in patients with conotruncal heart defects. Pediatr Cardiol. 2005; 26(5):570-3. DOI: 10.1007/s00246-004-0775-5. View

2.
Becker A, Connor M, Anderson R . Tetralogy of Fallot: a morphometric and geometric study. Am J Cardiol. 1975; 35(3):402-12. DOI: 10.1016/0002-9149(75)90034-x. View

3.
Kanehisa M . The KEGG database. Novartis Found Symp. 2003; 247:91-101; discussion 101-3, 119-28, 244-52. View

4.
Eldadah Z, Hamosh A, Biery N, Montgomery R, Duke M, Elkins R . Familial Tetralogy of Fallot caused by mutation in the jagged1 gene. Hum Mol Genet. 2001; 10(2):163-9. DOI: 10.1093/hmg/10.2.163. View

5.
Huang D, Sherman B, Lempicki R . Systematic and integrative analysis of large gene lists using DAVID bioinformatics resources. Nat Protoc. 2009; 4(1):44-57. DOI: 10.1038/nprot.2008.211. View