Literature DB >> 26516418

Concepts of hypoxic NO signaling in remote ischemic preconditioning.

Matthias Totzeck1, Ulrike Hendgen-Cotta1, Tienush Rassaf1.   

Abstract

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 (rIPC) applied by brief ischemic episodes to heart-distant organs has been tested in several clinical studies, and the major body of evidence points to beneficial effects of rIPC 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 (Ca(2+)) 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 rIPC. This refers to the protective role of nitrite, which can be activated endogenously using rIPC and which then contributes to cardioprotection by rIPC.

Entities:  

Keywords:  Ischemia/reperfusion injury; Mitochondria; Nitrite; Remote ischemic preconditioning; S-nitrosation

Year:  2015        PMID: 26516418      PMCID: PMC4620075          DOI: 10.4330/wjc.v7.i10.645

Source DB:  PubMed          Journal:  World J Cardiol


  68 in total

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Authors:  Christos Rammos; Ulrike B Hendgen-Cotta; Julia Sobierajski; Andrea Bernard; Malte Kelm; Tienush Rassaf
Journal:  J Am Coll Cardiol       Date:  2013-08-28       Impact factor: 24.094

2.  The neural and humoral pathways in remote limb ischemic preconditioning.

Authors:  Shiang Y Lim; Derek M Yellon; Derek J Hausenloy
Journal:  Basic Res Cardiol       Date:  2010-05-07       Impact factor: 17.165

3.  Positive effects of nitric oxide on left ventricular function in humans.

Authors:  Tienush Rassaf; Ludger W Poll; Paris Brouzos; Thomas Lauer; Matthias Totzeck; Petra Kleinbongard; Putrika Gharini; Kjel Andersen; Rainer Schulz; Gerd Heusch; Ulrich Mödder; Malte Kelm
Journal:  Eur Heart J       Date:  2006-06-16       Impact factor: 29.983

4.  Remote ischaemic conditioning before hospital admission, as a complement to angioplasty, and effect on myocardial salvage in patients with acute myocardial infarction: a randomised trial.

Authors:  Hans Erik Bøtker; Rajesh Kharbanda; Michael R Schmidt; Morten Bøttcher; Anne K Kaltoft; Christian J Terkelsen; Kim Munk; Niels H Andersen; Troels M Hansen; Sven Trautner; Jens Flensted Lassen; Evald Høj Christiansen; Lars R Krusell; Steen D Kristensen; Leif Thuesen; Søren S Nielsen; Michael Rehling; Henrik Toft Sørensen; Andrew N Redington; Torsten T Nielsen
Journal:  Lancet       Date:  2010-02-27       Impact factor: 79.321

5.  Simultaneous measurement of protein oxidation and S-nitrosylation during preconditioning and ischemia/reperfusion injury with resin-assisted capture.

Authors:  Mark J Kohr; Junhui Sun; Angel Aponte; Guanghui Wang; Marjan Gucek; Elizabeth Murphy; Charles Steenbergen
Journal:  Circ Res       Date:  2010-12-30       Impact factor: 17.367

6.  Nitric oxide is an essential mediator of the protective effects of remote ischaemic preconditioning in a mouse model of liver ischaemia/reperfusion injury.

Authors:  Mahmoud Abu-Amara; Shi Yu Yang; Alberto Quaglia; Peter Rowley; Achala de Mel; Niteen Tapuria; Alexander Seifalian; Brian Davidson; Barry Fuller
Journal:  Clin Sci (Lond)       Date:  2011-09       Impact factor: 6.124

7.  Measurement and characterization of postischemic free radical generation in the isolated perfused heart.

Authors:  J L Zweier; P Kuppusamy; R Williams; B K Rayburn; D Smith; M L Weisfeldt; J T Flaherty
Journal:  J Biol Chem       Date:  1989-11-15       Impact factor: 5.157

8.  Mitochondrial m-calpain plays a role in the release of truncated apoptosis-inducing factor from the mitochondria.

Authors:  Taku Ozaki; Tetsuro Yamashita; Sei-Ichi Ishiguro
Journal:  Biochim Biophys Acta       Date:  2009-10-13

9.  Correlation between cytosolic free calcium, contracture, ATP, and irreversible ischemic injury in perfused rat heart.

Authors:  C Steenbergen; E Murphy; J A Watts; R E London
Journal:  Circ Res       Date:  1990-01       Impact factor: 17.367

Review 10.  Mechanisms underlying acute protection from cardiac ischemia-reperfusion injury.

Authors:  Elizabeth Murphy; Charles Steenbergen
Journal:  Physiol Rev       Date:  2008-04       Impact factor: 37.312

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  10 in total

1.  Protection of lung oxidative injury by remote ischemic preconditioning: a study of exhaled water during pulmonary lobectomy.

Authors:  José García-de-la-Asunción; Javier Belda; Marina Soro
Journal:  J Thorac Dis       Date:  2018-03       Impact factor: 2.895

2.  MicroRNA-29a/b/c targets iNOS and is involved in protective remote ischemic preconditioning in an ischemia-reperfusion rat model of non-alcoholic fatty liver disease.

Authors:  Yun-Fei Duan; Dong-Lin Sun; Jing Chen; Feng Zhu; Yong An
Journal:  Oncol Lett       Date:  2017-01-18       Impact factor: 2.967

3.  Protective limb remote ischemic post-conditioning against high-intraocular-pressure-induced retinal injury in mice.

Authors:  Qi-Jiang Zhu; Lei Zhang; Shuang-Yu Lyu; Zhan-Jun Cui; En-She Jiang; Jun Wang
Journal:  Int J Ophthalmol       Date:  2022-04-18       Impact factor: 1.779

4.  Impact of Different Embolic Agents for Transarterial Chemoembolization (TACE) Procedures on Systemic Vascular Endothelial Growth Factor (VEGF) Levels.

Authors:  Andreas Schicho; Claus Hellerbrand; Kristina Krüger; Lukas P Beyer; Walter Wohlgemuth; Christoph Niessen; Ernst Hohenstein; Christian Stroszczynski; Philippe L Pereira; Philipp Wiggermann
Journal:  J Clin Transl Hepatol       Date:  2016-12-27

5.  Dual character of flavonoids in attenuating and aggravating ischemia-reperfusion-induced myocardial injury.

Authors:  Wenqiang Li; Yun Li; Ruifang Sun; Sumei Zhou; Meifeng Li; Mingchen Feng; Yingguang Xie
Journal:  Exp Ther Med       Date:  2017-06-26       Impact factor: 2.447

6.  The Effect of Nitric Oxide on Remote Ischemic Preconditioning in Renal Ischemia Reperfusion Injury in Rats.

Authors:  Hoon Jung; Eun Kyung Choi; Seung Ik Baek; Changhee Cho; Yehun Jin; Kyung Hwa Kwak; Younghoon Jeon; Sung-Sik Park; Sioh Kim; Dong Gun Lim
Journal:  Dose Response       Date:  2019-05-28       Impact factor: 2.658

7.  Inducible and endothelial nitric oxide synthase distribution and expression with hind limb per-conditioning of the rat kidney.

Authors:  Zahra Sedaghat; Mehri Kadkhodaee; Behjat Seifi; Eisa Salehi
Journal:  Arch Med Sci       Date:  2019-06-20       Impact factor: 3.318

8.  Synergetic protective effect of remote ischemic preconditioning and prolyl 4‑hydroxylase inhibition in ischemic cardiac injury.

Authors:  Juesheng Yang; Jiajun Xu; Lei Tao; Shiyong Wang; Haiyan Xiang; Yanhua Tang
Journal:  Mol Med Rep       Date:  2022-01-14       Impact factor: 2.952

9.  The Role of RIPC in Preventing Organ Damage, Inflammation, and Oxidative Stress during Lower Limb DSA: A Randomised Controlled Trial.

Authors:  Karl Kuusik; Teele Kasepalu; Mihkel Zilmer; Jaan Eha; Mare Vähi; Liisi Anette Torop; Jüri Lieberg; Jaak Kals
Journal:  Oxid Med Cell Longev       Date:  2021-12-08       Impact factor: 6.543

Review 10.  Remote ischaemic preconditioning - translating cardiovascular benefits to humans.

Authors:  James A Lang; Jahyun Kim
Journal:  J Physiol       Date:  2022-05-31       Impact factor: 6.228

  10 in total

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