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Search Items: PRESSURE OVERLOAD, . hits: 34

2020

Marx, L; Gsell, MAF; Rund, A; Caforio, F; Prassl, AJ; Toth-Gayor, G; Kuehne, T; Augustin, CM; Plank, G Personalization of electro-mechanical models of the pressure-overloaded left ventricle: fitting of Windkessel-type afterload models.
Philos Trans A Math Phys Eng Sci. 2020; 378(2173): 20190342-20190342. [OPEN ACCESS]
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Niestrawska, JA; Augustin, CM; Plank, G Computational modeling of cardiac growth and remodeling in pressure overloaded hearts-Linking microstructure to organ phenotype.
Acta Biomater. 2020; 106:34-53 [OPEN ACCESS]
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Veith, C; Neghabian, D; Luitel, H; Wilhelm, J; Egemnazarov, B; Muntanjohl, C; Fischer, JH; Dahal, BK; Schermuly, RT; Ghofrani, HA; Grimminger, F; Fink, L; Kwapiszewska, G; Weissmann, N; Sydykov, A FHL-1 is not involved in pressure overload-induced maladaptive right ventricular remodeling and dysfunction.
Basic Res Cardiol. 2020; 115(2):17-17 [OPEN ACCESS]
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Wallner, M; Eaton, DM; Berretta, RM; Liesinger, L; Schittmayer, M; Gindlhuber, J; Wu, J; Jeong, MY; Lin, YH; Borghetti, G; Baker, ST; Zhao, H; Pfleger, J; Blass, S; Rainer, PP; von Lewinski, D; Bugger, H; Mohsin, S; Graier, WF; Zirlik, A; McKinsey, TA; Birner-Gruenberger, R; Wolfson, MR; Houser, SR HDAC inhibition improves cardiopulmonary function in a feline model of diastolic dysfunction.
Sci Transl Med. 2020; 12(525): [OPEN ACCESS]
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Weiss, A; Boehm, M; Egemnazarov, B; Grimminger, F; Pullamsetti, SS; Kwapiszewska, G; Schermuly, RT Kinases as potential targets for treatment of pulmonary hypertension and right ventricular dysfunction.
Br J Pharmacol. 2019; 9(4): [OPEN ACCESS]
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2019

Egemnazarov, B; Kwapiszewska, G; Marsh, LM Echocardiographic Measurement of Right Ventricular Diastolic Parameters in Mouse.
J Vis Exp. 2019; 10(146):
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2018

Gsell, MAF; Augustin, CM; Prassl, AJ; Karabelas, E; Fernandes, JF; Kelm, M; Goubergrits, L; Kuehne, T; Plank, G Assessment of wall stresses and mechanical heart power in the left ventricle: Finite element modeling versus Laplace analysis.
Int J Numer Method Biomed Eng. 2018; 34(12):e3147-e3147 [OPEN ACCESS]
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Harper, SC; Johnson, J; Borghetti, G; Zhao, H; Wang, T; Wallner, M; Kubo, H; Feldsott, EA; Yang, Y; Joo, Y; Gou, X; Sabri, AK; Gupta, P; Myzithras, M; Khalil, A; Franti, M; Houser, SR GDF11 Decreases Pressure Overload-Induced Hypertrophy, but Can Cause Severe Cachexia and Premature Death.
Circ Res. 2018; 123(11):1220-1231 [OPEN ACCESS]
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Koentges, C; Pepin, ME; Müsse, C; Pfeil, K; Alvarez, SVV; Hoppe, N; Hoffmann, MM; Odening, KE; Sossalla, S; Zirlik, A; Hein, L; Bode, C; Wende, AR; Bugger, H Gene expression analysis to identify mechanisms underlying heart failure susceptibility in mice and humans.
Basic Res Cardiol. 2018; 113(1):8-8 [OPEN ACCESS]
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2017

Nagy, BM; Nagaraj, C; Egemnazarov, B; Kwapiszewska, G; Stauber, RE; Avian, A; Olschewski, H; Olschewski, A Lack of ABCG2 Leads to Biventricular Dysfunction and Remodeling in Response to Hypoxia.
Front Physiol. 2017; 8(8):98-98 [OPEN ACCESS]
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Rouf, R; MacFarlane, EG; Takimoto, E; Chaudhary, R; Nagpal, V; Rainer, PP; Bindman, JG; Gerber, EE; Bedja, D; Schiefer, C; Miller, KL; Zhu, GS; Myers, L; Amat-Alarcon, N; Lee, DI; Koitabashi, N; Judge, DP; Kass, DA; Dietz, HC Nonmyocyte ERK1/2 signaling contributes to load-induced cardiomyopathy in Marfan mice
JCI INSIGHT. 2017; 2(15): e91588 [OPEN ACCESS]
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Troupes, CD; Wallner, M; Borghetti, G; Zhang, C; Mohsin, S; von Lewinski, D; Berretta, RM; Kubo, H; Chen, X; Soboloff, J; Houser, S Role of STIM1 (Stromal Interaction Molecule 1) in Hypertrophy-Related Contractile Dysfunction.
Circ Res. 2017; 121(2):125-136 [OPEN ACCESS]
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Wallner, M; Eaton, DM; Berretta, RM; Borghetti, G; Wu, J; Baker, ST; Feldsott, EA; Sharp, TE; Mohsin, S; Oyama, MA; von Lewinski, D; Post, H; Wolfson, MR; Houser, SR A Feline HFpEF Model with Pulmonary Hypertension and Compromised Pulmonary Function.
Sci Rep. 2017; 7(1):16587-16587 [OPEN ACCESS]
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2016

Voelkl, J; Alesutan, I; Primessnig, U; Feger, M; Mia, S; Jungmann, A; Castor, T; Viereck, R; Stöckigt, F; Borst, O; Gawaz, M; Schrickel, JW; Metzler, B; Katus, HA; Müller, OJ; Pieske, B; Heinzel, FR; Lang, F AMP-activated protein kinase α1-sensitive activation of AP-1 in cardiomyocytes.
J Mol Cell Cardiol. 2016; 97(4):36-43
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2015

Alesutan, I; Voelkl, J; Stöckigt, F; Mia, S; Feger, M; Primessnig, U; Sopjani, M; Munoz, C; Borst, O; Gawaz, M; Pieske, B; Metzler, B; Heinzel, F; Schrickel, JW; Lang, F AMP-activated protein kinase α1 regulates cardiac gap junction protein connexin 43 and electrical remodeling following pressure overload.
Cell Physiol Biochem. 2015; 35(1):406-418 [OPEN ACCESS]
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Braun, M; Hettinger, N; Koentges, C; Pfeil, K; Cimolai, MC; Hoffmann, MM; Osterholt, M; Doenst, T; Bode, C; Bugger, H Myocardial mitochondrial and contractile function are preserved in mice lacking adiponectin.
PLoS One. 2015; 10(3): e0119416-e0119416. [OPEN ACCESS]
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Egemnazarov, B; Schmidt, A; Crnkovic, S; Sydykov, A; Nagy, BM; Kovacs, G; Weissmann, N; Olschewski, H; Olschewski, A; Kwapiszewska, G; Marsh, LM Pressure Overload Creates Right Ventricular Diastolic Dysfunction in a Mouse Model: Assessment by Echocardiography.
J Am Soc Echocardiogr. 2015; 28(7):828-843
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Mayer, SC; Gilsbach, R; Preissl, S; Monroy Ordonez, EB; Schnick, T; Beetz, N; Lother, A; Rommel, C; Ihle, H; Bugger, H; Rühle, F; Schrepper, A; Schwarzer, M; Heilmann, C; Bönisch, U; Gupta, SK; Wilpert, J; Kretz, O; von Elverfeldt, D; Orth, J; Aktories, K; Beyersdorf, F; Bode, C; Stiller, B; Krüger, M; Thum, T; Doenst, T; Stoll, M; Hein, L Adrenergic Repression of the Epigenetic Reader MeCP2 Facilitates Cardiac Adaptation in Chronic Heart Failure.
Circ Res. 2015; 117(7): 622-633. [OPEN ACCESS]
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2014

Mariño, G; Pietrocola, F; Eisenberg, T; Kong, Y; Malik, SA; Andryushkova, A; Schroeder, S; Pendl, T; Harger, A; Niso-Santano, M; Zamzami, N; Scoazec, M; Durand, S; Enot, DP; Fernández, ÁF; Martins, I; Kepp, O; Senovilla, L; Bauvy, C; Morselli, E; Vacchelli, E; Bennetzen, M; Magnes, C; Sinner, F; Pieber, T; López-Otín, C; Maiuri, MC; Codogno, P; Andersen, JS; Hill, JA; Madeo, F; Kroemer, G Regulation of autophagy by cytosolic acetyl-coenzyme A.
Mol Cell. 2014; 53(5):710-725 [OPEN ACCESS]
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Sedej, S; Schmidt, A; Denegri, M; Walther, S; Matovina, M; Arnstein, G; Gutschi, EM; Windhager, I; Ljubojević, S; Negri, S; Heinzel, FR; Bisping, E; Vos, MA; Napolitano, C; Priori, SG; Kockskämper, J; Pieske, B Subclinical abnormalities in sarcoplasmic reticulum Ca(2+) release promote eccentric myocardial remodeling and pump failure death in response to pressure overload.
J Am Coll Cardiol. 2014; 63(15):1569-1579 [OPEN ACCESS]
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Seo, K; Rainer, PP; Shalkey Hahn, V; Lee, DI; Jo, SH; Andersen, A; Liu, T; Xu, X; Willette, RN; Lepore, JJ; Marino, JP; Birnbaumer, L; Schnackenberg, CG; Kass, DA Combined TRPC3 and TRPC6 blockade by selective small-molecule or genetic deletion inhibits pathological cardiac hypertrophy.
Proc Natl Acad Sci U S A. 2014; 111(4):1551-1556 [OPEN ACCESS]
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2013

Mühlfeld, C; Schipke, J; Schmidt, A; Post, H; Pieske, B; Sedej, S Hypoinnervation is an early event in experimental myocardial remodelling induced by pressure overload.
J Anat. 2013; 222(6):634-644 [OPEN ACCESS]
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2012

Goonasekera, SA; Hammer, K; Auger-Messier, M; Bodi, I; Chen, X; Zhang, H; Reiken, S; Elrod, JW; Correll, RN; York, AJ; Sargent, MA; Hofmann, F; Moosmang, S; Marks, AR; Houser, SR; Bers, DM; Molkentin, JD Decreased cardiac L-type Ca²⁺ channel activity induces hypertrophy and heart failure in mice.
J Clin Invest. 2012; 122(1):280-290 [OPEN ACCESS]
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Koestenberger, M; Nagel, B; Avian, A; Ravekes, W; Sorantin, E; Cvirn, G; Beran, E; Halb, V; Gamillscheg, A Systolic Right Ventricular Function in Children and Young Adults with Pulmonary Artery Hypertension Secondary to Congenital Heart Disease and Tetralogy of Fallot: Tricuspid Annular Plane Systolic Excursion (TAPSE) and Magnetic Resonance Imaging Data.
Congenit Heart Dis. 2012; 7(3):250-258
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2011

Riehle, C; Wende, AR; Zaha, VG; Pires, KM; Wayment, B; Olsen, C; Bugger, H; Buchanan, J; Wang, X; Moreira, AB; Doenst, T; Medina-Gomez, G; Litwin, SE; Lelliott, CJ; Vidal-Puig, A; Abel, ED PGC-1β deficiency accelerates the transition to heart failure in pressure overload hypertrophy.
Circ Res. 2011; 109(7): 783-793. [OPEN ACCESS]
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2010

Bugger, H; Schwarzer, M; Chen, D; Schrepper, A; Amorim, PA; Schoepe, M; Nguyen, TD; Mohr, FW; Khalimonchuk, O; Weimer, BC; Doenst, T Proteomic remodelling of mitochondrial oxidative pathways in pressure overload-induced heart failure.
Cardiovasc Res. 2010; 85(2): 376-384. [OPEN ACCESS]
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Heidrich, F; Schotola, H; Popov, AF; Sohns, C; Schuenemann, J; Friedrich, M; Coskun, KO; von Lewinski, D; Hinz, J; Bauer, M; Mokashi, SA; Sossalla, S; Schmitto, JD AMPK - Activated Protein Kinase and its Role in Energy Metabolism of the Heart.
Curr Cardiol Rev. 2010; 6(4):337-342 [OPEN ACCESS]
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2009

Schmitto, JD; Doerge, H; Post, H; Coutibaly, M; Sellin, C; Popov, AF; Sossalla, S; Schoendube, FA Progressive right ventricular failure is not explained by myocardial ischemia in a pig model of right ventricular pressure overload.
EUR J CARDIO-THORAC SURG. 2009; 35(2): 229-234. [OPEN ACCESS]
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2008

Jacobshagen, C; Grüber, M; Teucher, N; Schmidt, AG; Unsöld, BW; Toischer, K; Nguyen, VP; Maier, LS; Kögler, H; Hasenfuss, G Celecoxib modulates hypertrophic signalling and prevents load-induced cardiac dysfunction.
Eur J Heart Fail. 2008; 10(4): 334-342. [OPEN ACCESS]
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2007

Scharhag, J; Herrmann, M; Weissinger, M; Herrmann, W; Kindermann, W N-terminal B-type natriuretic peptide concentrations are similarly increased by 30 minutes of moderate and brisk walking in patients with coronary artery disease.
Clin Res Cardiol. 2007; 96(4):218-226
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2006

Bisping, E; Ikeda, S; Kong, SW; Tarnavski, O; Bodyak, N; McMullen, JR; Rajagopal, S; Son, JK; Ma, Q; Springer, Z; Kang, PM; Izumo, S; Pu, WT Gata4 is required for maintenance of postnatal cardiac function and protection from pressure overload-induced heart failure.
Proc Natl Acad Sci U S A. 2006; 103(39):14471-14476 [OPEN ACCESS]
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2003

Kinugawa, S; Post, H; Kaminski, PM; Zhang, X; Xu, X; Huang, H; Recchia, FA; Ochoa, M; Wolin, MS; Kaley, G; Hintze, TH Coronary microvascular endothelial stunning after acute pressure overload in the conscious dog is caused by oxidant processes: the role of angiotensin II type 1 receptor and NAD(P)H oxidase.
Circulation. 2003; 108(23):2934-2940 [OPEN ACCESS]
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1994

Weihs, W; Anelli-Monti, B; Picha, R; Schuchlenz, H; Harb, S; Harnoncourt, K Current status and indications for contrast echocardiography
Acta Med Austriaca. 1994; 21(3):74-76
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1985

Metzler, H Hemodynamics in right heart damage under continuous positive pressure respiration. An experimental study of the open thorax
ANAESTHESIST. 1985; 34(2): 72-78.
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