Document details

Evening and morning alterations in Obstructive Sleep Apnea red blood cell proteome

Author(s): Feliciano, Amélia ; Vaz, Fátima ; Valentim-Coelho, Cristina ; Torres, Vukosava M. ; Silva, Rita ; Prosinecki, Vesna ; Alexandre, Bruno M. ; Almeida, Andreia ; Almeida-Marques, Catarina ; Carvalho, Ana S. ; Matthiesen, Rune ; Malhotra, Atul ; Pinto, Paula ; Bárbara, Cristina ; Penque, Deborah

Date: 2017

Persistent ID: http://hdl.handle.net/10362/153236

Origin: Repositório Institucional da UNL

Project/scholarship: info:eu-repo/grantAgreement/FCT/5876/147362/PT; info:eu-repo/grantAgreement/FCT//SFRH%2FBPD%2F43365%2F2008/PT;

Subject(s): 2D-DIGE; Biomarkers; Obstructive Sleep Apnea; Red blood cells; General


Description

Project partially supported by Harvard Medical School-Portugal Program (HMSP-ICJ/ 0022/2011), ToxOmics - Centre for Toxicogenomics and Human Health (FCT-UID/BIM/00009/2013), FCT/Poly-Annual Funding Program and FEDER/Saúde XXI Program (Portugal) and postdoctoral fellowship SFRH/BPD/43365/2008 of Fundação para a Ciência e a Tecnologia (FCT), Portugal.

This article presents proteomics data referenced in [1] Using proteomics-based evaluation of red blood cells (RBCs), we have identified differentially abundant proteins associated with Obstructive Sleep Apnea Syndrome (OSA). RBCs were collected from peripheral blood of patients with moderate/severe OSA or snoring at pre- (evening) and post-night (morning) polysomnography, so that proteome variations between these time points could be assessed. RBC cytoplasmic fraction depleted of hemoglobin, using Hemovoid™ system, were analyzed by two-dimensional fluorescence difference gel electrophoresis (2D-DIGE), the 2D image software-based analyzed and relevant differentially abundant proteins identified by mass spectrometry (MS). MS identified 31 protein spots differentially abundant corresponding to 21 unique proteins possibly due to the existence of post-translational modification regulations. Functional analysis by bioinformatics tools indicated that most proteins are associated with catalytic, oxidoreductase, peroxidase, hydrolase, ATPase and anti-oxidant activity. At morning a larger numbers of differential proteins including response to chemical stimulus, oxidation reduction, regulation of catalytic activity and response to stress were observed in OSA. The data might support further research in OSA biomarker discovery and validation.

Document Type Journal article
Language English
Contributor(s) Centre for Toxicogenomics and Human Health (ToxOmics); NOVA Medical School|Faculdade de Ciências Médicas (NMS|FCM); RUN
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