Gene Profiling of Aortic Valve Interstitial Cells under Elevated Pressure Conditions: Modulation of Inflammatory Gene Networks
Author(s) -
J. Warnock,
Bindu Nanduri,
Carol A. Pregonero Gamez,
Juliet D. Tang,
Daniel Koback,
William M. Muir,
Shane C. Burgess
Publication year - 2011
Publication title -
international journal of inflammation
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.106
H-Index - 33
eISSN - 2090-8040
pISSN - 2042-0099
DOI - 10.4061/2011/176412
Subject(s) - medicine , gene , aortic valve , cardiology , profiling (computer programming) , cancer research , genetics , biology , computer science , operating system
The study aimed to identify mechanosensitive pathways and gene networks that are stimulated by elevated cyclic pressure in aortic valve interstitial cells (VICs) and lead to detrimental tissue remodeling and/or pathogenesis. Porcine aortic valve leaflets were exposed to cyclic pressures of 80 or 120 mmHg, corresponding to diastolic transvalvular pressure in normal and hypertensive conditions, respectively. Linear, two-cycle amplification of total RNA, followed by microarray was performed for transcriptome analysis (with qRT-PCR validation). A combination of systems biology modeling and pathway analysis identified novel genes and molecular mechanisms underlying the biological response of VICs to elevated pressure. 56 gene transcripts related to inflammatory response mechanisms were differentially expressed. TNF- α , IL-1 α , and IL-1 β were key cytokines identified from the gene network model. Also of interest was the discovery that pentraxin 3 (PTX3) was significantly upregulated under elevated pressure conditions (41-fold change). In conclusion, a gene network model showing differentially expressed inflammatory genes and their interactions in VICs exposed to elevated pressure has been developed. This system overview has detected key molecules that could be targeted for pharmacotherapy of aortic stenosis in hypertensive patients.
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