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71篇 您的检索式:作者名="Rassaf"
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1Concepts of hypoxic NO signaling in remote ischemic preconditioning显示文摘Acute coronary syndromes remain a leading single cause of death worldwide. Therapeutic strategies to treat cardiomyocyte threatening ischemia/reperfusion injury are urgently needed. Remote ischemic preconditioning(r IPC) applied by brief ischemic episodes to heartdistant organs has been tested in several clinical studies, and the major body of evidence points to beneficial effects of r IPC for patients. The underlying signaling, however, remains incompletely understood. This relates particularly to the mechanism by which the protective signal is transferred from the remote site to the target organ. Many pathways have been forwarded but none can explain the protective effects completely. In light of recent experimental studies, we here outline the current knowledge relating to the generation of the protective signal in the remote organ, the signal transfer to the target organ and the transduction of the transferred signal into cardioprotection. The majority of studies favors a humoral factor that activates cardiomyocyte downstream signaling- receptor-dependent and independently. Cellular targets include deleterious calcium(Ca2+) signaling, reactive oxygen species, mitochondrial function and structure, and cellular apoptosis and necrosis. Following an outline of the existing evidence, we will furthermore characterize the existing knowledge and discuss future perspectives with particular emphasis on the interaction between the recently discovered hypoxic nitrite-nitric oxide signaling in r IPC. This refers to the protective role of nitrite, which can be activated endogenously using r IPC and which then contributes to cardioprotection by rIPC.Matthias Totzeck Ulrike Hendgen-Cotta Tienush Rassaf 2015World Journal of Cardiology2015,7,10:4
2Potential of dietary nitrate in angiogenesis显示文摘Endothelial dysfunction with impaired bioavailability of nitric oxide(NO) is the hallmark in the development of cardiovascular disease. Endothelial dysfunction leads to atherosclerosis, characterized by chronic inflammation of the arterial wall and stepwise narrowing of the vessel lumen. Atherosclerosis causes deprivation of adequate tissue blood flow with compromised oxygen supply. To overcome this undersupply, remodeling of the vascular network is necessary to reconstitute and sustain tissue viability. This physiological response is often not sufficient and therapeutic angiogenesis remains an unmet medical need in critical limb ischemia or coronary artery disease. Feasible approaches to promote blood vessel formation are sparse. Administration of pro-angiogenic factors, gene therapy, or targeting of micro RNAs has not yet entered the daily practice. Nitric oxide is an important mediator of angiogenesis that becomes limited under ischemic conditions and the maintenance of NO availability might constitute an attractive therapeutic target. Until recently it was unknown how the organism provides NO under ischemia. In recent years it could be demonstrated that NO can be formed independently of its enzymatic synthesis in the endothelium by reduction of inorganic nitrite under hypoxic conditions. Circulating nitrite derives from oxidation of NO or reduction of inorganic nitrate by commensal bacteria in the oral cavity. Intriguingly, nitrate is a common constituent of our everyday diet and particularly high concentrations are found in leafy green vegetables such as spinach, lettuce, or beetroot. Evidence suggests that dietary nitrate supplementation increases the regenerative capacity of ischemic tissue and that this effect may offer an attractive nutrition-based strategy to improve ischemia-induced revascularization. We here summarize and discuss the regenerative capacity of dietary nitrate on the vascular system.Christos Rammos Peter Luedike Ulrike Hendgen-Cotta Tienush Rassaf 2015World Journal of Cardiology2015,7,10:4
3Nitrite Regulates Hypoxic Vasodilation via Myoglobin-Dependent Nitric Oxide Generation显示文摘Matthias Totzeck Ulrike B. Hendgen-Cotta Peter Luedike Michael Berenbrink Johann P. Klare Heinz-Juergen Steinhoff Dominik Semmler Sruti Shiva Daryl Williams Anja Kipar Mark T. Gladwin Juergen Schrader Malte Kelm Andrew R. Cossins Tienush Rassaf 2012Circulation2012,,3:2
4Dietary inorganic nitrate mobilizes circulating angiogenic cells显示文摘Christian Heiss Christian Meyer Matthias Totzeck Ulrike B. Hendgen-Cotta Yvonne Heinen Peter Luedike Stefanie Keymel Nassim Ayoub Jon O. Lundberg Eddie Weitzberg Malte Kelm Tienush Rassaf 2012Free Radical Biology and Medicine2012,,9:2
5Dietary Nitrate Reverses Vascular Dysfunction in Older Adults With Moderately Increased Cardiovascular Risk显示文摘Christos Rammos Ulrike B. Hendgen-Cotta Julia Sobierajski Andrea Bernard Malte Kelm Tienush Rassaf 2014Journal of the American College of Cardiology2014,,15:2
6Circulating Nitrite Contributes to Cardioprotection by Remote Ischemic Preconditioning显示文摘Tienush Rassaf Matthias Totzeck Ulrike B. Hendgen-Cotta Sruti Shiva Gerd Heusch Malte Kelm 2014Circulation Research2014,,10:2
7S-nitrosation of mitochondrial connexin 43 regulates mitochondrial function显示文摘Daniel Soetkamp Tiffany T. Nguyen Sara Menazza Christine Hirschh?user Ulrike B. Hendgen-Cotta Tienush Rassaf Klaus D. Schlüter Kerstin Boengler Elizabeth Murphy Rainer Schulz 2014Basic Research in Cardiology2014,,5:1
8Initial results of using a novel irrigated multielectrode mapping and ablation catheter for pulmonary vein isolation显示文摘Dong-In Shin Kiriakos Kirmanoglou Christian Eickholt Jan Schmidt Lukas Clasen Britta Butzbach Tienush Rassaf Marc Merx Malte Kelm Christian Meyer 2013Heart Rhythm2013,,:1
9Feasibility,safety,and efficacy of real-time three-dimensional transoesophageal echocardiography for guiding device closure of interatrial communications:initial clinical experience and impact on radiation exposure显示文摘Balzer J van Hall S Rassaf T 0,,01:1
10Impaired endothelial progenitor cell function predicts age-dependent carotid intimal thickening显示文摘Keymel S Kalka C Rassaf T 2008Basic Res Cardiol2008,103,6:1
11Red blood cells express a functional endothelial nitric oxide synthase显示文摘Kleinbongard P Schulz R Rassaf T 2006Blood2006,,:1
12Cellular targets and mechanisms of nitros (yl)ation: an insight into their nature and kinetics in vivo 显示文摘Bryan NS Rassaf T Maloney RE 2004Proc Natl Acad Sci USA2004,101,:1
13Real-time transesophageal three-dimensional echocardiography for guidance of percutaneous cardiac interventions:first experience显示文摘Balzer J Kühl H Rassaf T 0,,09:1
14Cellular targets and mechanisms of nitros (yl) ation:An insight into their nature and kinetics in vivo显示文摘Bryan NS Rassaf T Maloney RE 2004Proc Natl Aead Sci USA2004,101,12:1
15Health management as global challenge 显示文摘Meyer C Rassaf T Schauerte P 2008J Public Health2008,16,1:1
16Red blood cells express a functional endothelial nitric oxide syn- thase显示文摘Kleinbongard P Schμlz R Rassaf T 2006Blood2006,107,7:1
17Cireulating NO pool: assessment of nitrite and nitroso species in blood and tissues 显示文摘Rassaf T Feelisch M Kelm M 2004Free Radic Biol Med2004,36,:1
18Plasma nitrite reserve and endothelial function in the human forearm circulation显示文摘Rassaf T Heiss C Hendgen-Cotta U 2006Free Radic Biol Med2006,41,2:1
19Depletion of circulating blood NOS3 increases severity of myocardial infarction and left ventricular dysfunction显示文摘Marc W. Merx Simone Gorressen Annette M. Sandt Miriam M. Cortese-Krott Jan Ohlig Manuel Stern Tienush Rassaf Axel G?decke Mark T. Gladwin Malte Kelm 2014Basic Research in Cardiology2014,,:1
20Real-time transesophageal three-dimensional echocardiography for guidance of percutaneous cardiac interventions:first experience显示文摘Balzer J Kühl H Rassaf T 0,,:1
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