Mapping genetic determinants of coronary microvascular remodeling in the spontaneously hypertensive rat

Author:

Mancini Massimiliano,Petretto Enrico,Kleinert Christina,Scavone Angela,De Tisham,Cook Stuart,Silhavy Jan,Zidek Vaclav,Pravenec Michal,d’Amati Giulia,Camici Paolo G.

Publisher

Springer Science and Business Media LLC

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

Reference46 articles.

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2. Atanur SS, Birol I, Guryev V, Hirst M, Hummel O, Morrissey C, Behmoaras J, Fernandez-Suarez XM, Johnson MD, McLaren WM, Patone G, Petretto E, Plessy C, Rockland KS, Rockland C, Saar K, Zhao Y, Carninci P, Flicek P, Kurtz T, Cuppen E, Pravenec M, Hubner N, Jones SJ, Birney E, Aitman TJ (2010) The genome sequence of the spontaneously hypertensive rat: analysis and functional significance. Genome Res 20:791–803. doi: 10.1101/gr.103499.109

3. Berwick ZC, Moberly SP, Kohr MC, Morrical EB, Kurian MM, Dick GM, Tune JD (2012) (2012) Contribution of voltage-dependent K+ and Ca2+ channels to coronary pressure-flow autoregulation. Basic Res Cardiol 107:264. doi: 10.1007/s00395-012-0264-6

4. Boyanovsky B, Zack M, Forrest K, Webb NR (2009) The capacity of group V sPLA2 to increase atherogenicity of ApoE−/− and LDLR−/− mouse LDL in vitro predicts its atherogenic role in vivo. Arterioscler Thromb Vasc Biol 29:532–538. doi: 10.1161/ATVBAHA.108.183038

5. Brilla CG, Janicki JS, Weber KT (1991) Impaired diastolic function and coronary reserve in genetic hypertension. Role of interstitial fibrosis and medial thickening of intramyocardial coronary arteries. Circ Res 69:107–115

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