Optimisation of methods for quantifying plasma mRNA levels from genes responsible for coronary artery plaque development and destabilization

Aim To investigate the hypothesis that in patients with coronaryatherosclerosis it is possible to measure plasma mRNA levels fromgenes responsible for plaque development and destabilization.Methods Methods for RNA isolation, mRNA transcription and quantitative PCR were evaluated and optimised, in or...

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Main Authors: Darko Černe, Irma Štern, Igor Kranjec, Janja Marc
Format: Article
Language:English
Published: Medical Association of Zenica-Doboj Canton 2011-02-01
Series:Medicinski Glasnik
Subjects:
Online Access:http://www.ljkzedo.com.ba/medglasnik/vol81/MGvol81.2011_19.pdf
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spelling doaj-86943505f6e041a29bafe75e42c87d4a2020-11-25T00:29:16ZengMedical Association of Zenica-Doboj CantonMedicinski Glasnik1840-01321840-24452011-02-01819096Optimisation of methods for quantifying plasma mRNA levels from genes responsible for coronary artery plaque development and destabilizationDarko ČerneIrma ŠternIgor KranjecJanja MarcAim To investigate the hypothesis that in patients with coronaryatherosclerosis it is possible to measure plasma mRNA levels fromgenes responsible for plaque development and destabilization.Methods Methods for RNA isolation, mRNA transcription and quantitative PCR were evaluated and optimised, in order to achievereliable mRNA quantiication. Results mRNA level was possible to quantify from plasma of patients with coronary atherosclerosis, as well as from healthy volunteers, from genes encoding cathepsin S, cathepsin B, CD40 molecule, monocyte chemotactic protein 1, death-associated protein kinase 1, matrix metallopeptidase 9, vascular cell adhesion molecule 1 and phosphoglycerate kinase 1 (reference gene). Analytical between-run imprecision of average threshold cycle, expressed as coeficient of variation was below 2%. EDTA blood samples should be centrifuged within one hour of venesection. It wasnot possible to quantify plasma mRNA level from genes encodingmacrophage scavenger receptor 1, perilipin, tissue factor, phospholipase A2 group IIA, collagen type I alpha 2 and interleukin 1alpha. Conclusion Further plasma mRNA analysis is reasonable to access its potential usefulness in non-invasive in vivo monitoring ofgene expression proile in vascular beds.http://www.ljkzedo.com.ba/medglasnik/vol81/MGvol81.2011_19.pdfplasma mRNAcoronary atherosclerosismethod optimisation
collection DOAJ
language English
format Article
sources DOAJ
author Darko Černe
Irma Štern
Igor Kranjec
Janja Marc
spellingShingle Darko Černe
Irma Štern
Igor Kranjec
Janja Marc
Optimisation of methods for quantifying plasma mRNA levels from genes responsible for coronary artery plaque development and destabilization
Medicinski Glasnik
plasma mRNA
coronary atherosclerosis
method optimisation
author_facet Darko Černe
Irma Štern
Igor Kranjec
Janja Marc
author_sort Darko Černe
title Optimisation of methods for quantifying plasma mRNA levels from genes responsible for coronary artery plaque development and destabilization
title_short Optimisation of methods for quantifying plasma mRNA levels from genes responsible for coronary artery plaque development and destabilization
title_full Optimisation of methods for quantifying plasma mRNA levels from genes responsible for coronary artery plaque development and destabilization
title_fullStr Optimisation of methods for quantifying plasma mRNA levels from genes responsible for coronary artery plaque development and destabilization
title_full_unstemmed Optimisation of methods for quantifying plasma mRNA levels from genes responsible for coronary artery plaque development and destabilization
title_sort optimisation of methods for quantifying plasma mrna levels from genes responsible for coronary artery plaque development and destabilization
publisher Medical Association of Zenica-Doboj Canton
series Medicinski Glasnik
issn 1840-0132
1840-2445
publishDate 2011-02-01
description Aim To investigate the hypothesis that in patients with coronaryatherosclerosis it is possible to measure plasma mRNA levels fromgenes responsible for plaque development and destabilization.Methods Methods for RNA isolation, mRNA transcription and quantitative PCR were evaluated and optimised, in order to achievereliable mRNA quantiication. Results mRNA level was possible to quantify from plasma of patients with coronary atherosclerosis, as well as from healthy volunteers, from genes encoding cathepsin S, cathepsin B, CD40 molecule, monocyte chemotactic protein 1, death-associated protein kinase 1, matrix metallopeptidase 9, vascular cell adhesion molecule 1 and phosphoglycerate kinase 1 (reference gene). Analytical between-run imprecision of average threshold cycle, expressed as coeficient of variation was below 2%. EDTA blood samples should be centrifuged within one hour of venesection. It wasnot possible to quantify plasma mRNA level from genes encodingmacrophage scavenger receptor 1, perilipin, tissue factor, phospholipase A2 group IIA, collagen type I alpha 2 and interleukin 1alpha. Conclusion Further plasma mRNA analysis is reasonable to access its potential usefulness in non-invasive in vivo monitoring ofgene expression proile in vascular beds.
topic plasma mRNA
coronary atherosclerosis
method optimisation
url http://www.ljkzedo.com.ba/medglasnik/vol81/MGvol81.2011_19.pdf
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