Literature DB >> 22457146

Differential gene expression profile in PBMCs from subjects with AERD and ATA: a gene marker for AERD.

Seungwoo Shin1, Jong Sook Park, Yoon-Jeong Kim, Taejeong Oh, Sungwhan An, Choon-Sik Park.   

Abstract

Aspirin-exacerbated respiratory disease (AERD) is associated with severe asthma and aspirin can cause asthma to worsen, often in the form of a severe and sudden attack. The oral aspirin challenge is the gold standard to confirm the diagnosis of AERD, but it is time consuming and produces serious complications in some cases. Therefore, more efficient and practical method is needed to predict AERD patients. The aim of the present study was to identify AERD-related gene expression in peripheral blood mononuclear cells (PBMCs) and examine the diagnostic potential of these candidate gene(s) for predicting AERD. To do this, RNAs from 24 subjects with AERD and 18 subjects with aspirin-tolerant asthma (ATA) were subjected to microarray analysis of ~34,560 genes. In total, 10 genes were selected as candidate gene markers by applying p ≤ 0.001(t test) and ≥8-fold change, and to correct for multiple comparisons, the false discovery rate analyses were performed. By applying multiple logistic regression analysis, among possible 1,023 models (2(10)-1), a model consisting of CNKSR3, SPTBN2, and IMPACT was selected as candidate set, because this set showed the best AUC (0.98) with 88 % sensitivity and 89 % specificity. For validation, mRNA levels by real-time PCR on PBMCs from two population sets in a gene-chip study and another replication sample, 20 AERD, 20 ATA, and 8 normal controls, were significantly different between groups with 100 % sensitivity and 100 % specificity in each of the two population sets. However, IMPACT gene did not differentiate between AERD and normal controls. The set of the two genes (CNKSR3 and SPTBN2) showed the best AUC (0.96) with 88 % sensitivity and 94 % specificity in a gene-chip study sample. In addition, this set showed perfect discriminative power with AUC (1.0, 100 % sensitivity and 100 % specificity) in each of the two population sets: the gene-chip samples and the replication samples. It also showed perfect discrimination for AERD from NC (AUC: 1.0) and ATA from NC (AUC: 1.0). In conclusion, we developed the two gene markers (CNKSR3 and SPTBN2) of PBMC which differentiate between AERD and ATA with a perfect discriminative power. These gene markers may be an efficient and practical method for predicting AERD.

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Year:  2012        PMID: 22457146     DOI: 10.1007/s00438-012-0685-9

Source DB:  PubMed          Journal:  Mol Genet Genomics        ISSN: 1617-4623            Impact factor:   3.291


  44 in total

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Authors:  Jeong-Hyun Kim; Ji-Yeon Cha; Hyun Sub Cheong; Jong Sook Park; An Soo Jang; Soo-Taek Uh; Mi-Kyeong Kim; Inseon S Choi; Sang Heon Cho; Byung-Lae Park; Joon Seol Bae; Choon-Sik Park; Hyoung Doo Shin
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Review 2.  Beyond odds ratios--communicating disease risk based on genetic profiles.

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3.  Concerning the nature of intolerance to aspirin.

Authors:  M Samter; R F Beers
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5.  Characterization of within-subject responses to fluticasone and montelukast in childhood asthma.

Authors:  Stanley J Szefler; Brenda R Phillips; Fernando D Martinez; Vernon M Chinchilli; Robert F Lemanske; Robert C Strunk; Robert S Zeiger; Gary Larsen; Joseph D Spahn; Leonard B Bacharier; Gordon R Bloomberg; Theresa W Guilbert; Gregory Heldt; Wayne J Morgan; Mark H Moss; Christine A Sorkness; Lynn M Taussig
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6.  Expression profiling of genes related to asthma exacerbations.

Authors:  T Aoki; Y Matsumoto; K Hirata; K Ochiai; M Okada; K Ichikawa; M Shibasaki; T Arinami; R Sumazaki; E Noguchi
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7.  Global strategy for asthma management and prevention: GINA executive summary.

Authors:  E D Bateman; S S Hurd; P J Barnes; J Bousquet; J M Drazen; J M FitzGerald; P Gibson; K Ohta; P O'Byrne; S E Pedersen; E Pizzichini; S D Sullivan; S E Wenzel; H J Zar
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8.  Inhibition of NF-kappa B by sodium salicylate and aspirin.

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10.  Transglutaminase 2, a novel regulator of eicosanoid production in asthma revealed by genome-wide expression profiling of distinct asthma phenotypes.

Authors:  Teal S Hallstrand; Mark M Wurfel; Ying Lai; Zhanglin Ni; Michael H Gelb; William A Altemeier; Richard P Beyer; Moira L Aitken; William R Henderson
Journal:  PLoS One       Date:  2010-01-05       Impact factor: 3.240

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  11 in total

1.  Development of a genetic marker set to diagnose aspirin-exacerbated respiratory disease in a genome-wide association study.

Authors:  H S Chang; S W Shin; T H Lee; D J Bae; J S Park; Y H Kim; S T Uh; B W Choi; M K Kim; I S Choi; B L Park; H D Shin; C S Park
Journal:  Pharmacogenomics J       Date:  2015-02-24       Impact factor: 3.550

2.  Biomarkers of Resilience in Stress Reduction for Caregivers of Alzheimer's Patients.

Authors:  Lap Ho; Patricia A Bloom; Joan G Vega; Shrishailam Yemul; Wei Zhao; Libby Ward; Evan Savage; Robert Rooney; Divyen H Patel; Giulio Maria Pasinetti
Journal:  Neuromolecular Med       Date:  2016-03-17       Impact factor: 3.843

Review 3.  Aspirin-intolerant asthma: a comprehensive review of biomarkers and pathophysiology.

Authors:  Juan R Velazquez; Luis M Teran
Journal:  Clin Rev Allergy Immunol       Date:  2013-08       Impact factor: 8.667

4.  DNA methylation profiles of airway epithelial cells and PBMCs from healthy, atopic and asthmatic children.

Authors:  Dorota Stefanowicz; Tillie-Louise Hackett; Farshid S Garmaroudi; Oliver P Günther; Sarah Neumann; Erika N Sutanto; Kak-Ming Ling; Michael S Kobor; Anthony Kicic; Stephen M Stick; Peter D Paré; Darryl A Knight
Journal:  PLoS One       Date:  2012-09-06       Impact factor: 3.240

5.  Elevation of Eosinophil-Derived Neurotoxin in Plasma of the Subjects with Aspirin-Exacerbated Respiratory Disease: A Possible Peripheral Blood Protein Biomarker.

Authors:  Seung-Woo Shin; Jong Sook Park; Choon-Sik Park
Journal:  PLoS One       Date:  2013-06-21       Impact factor: 3.240

6.  Integrative information theoretic network analysis for genome-wide association study of aspirin exacerbated respiratory disease in Korean population.

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Review 7.  Pharmacogenomics of Hypersensitivity to Non-steroidal Anti-inflammatory Drugs.

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Journal:  Front Genet       Date:  2021-06-25       Impact factor: 4.599

8.  Immune cell subsets and their gene expression profiles from human PBMC isolated by Vacutainer Cell Preparation Tube (CPT™) and standard density gradient.

Authors:  Christopher P Corkum; Danielle P Ings; Christopher Burgess; Sylwia Karwowska; Werner Kroll; Tomasz I Michalak
Journal:  BMC Immunol       Date:  2015-08-26       Impact factor: 3.615

9.  The whole-genome expression analysis of peripheral blood mononuclear cells from aspirin sensitive asthmatics versus aspirin tolerant patients and healthy donors after in vitro aspirin challenge.

Authors:  Joanna Wieczfinska; Dorota Kacprzak; Karolina Pospiech; Milena Sokolowska; Magdalena Nowakowska; Ewa Pniewska; Andrzej Bednarek; Izabela Kuprys-Lipinska; Piotr Kuna; Rafal Pawliczak
Journal:  Respir Res       Date:  2015-12-09

Review 10.  Aspirin-exacerbated respiratory disease: pathophysiological insights and clinical advances.

Authors:  John W Steinke; Jeff M Wilson
Journal:  J Asthma Allergy       Date:  2016-03-10
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