Literature DB >> 19787388

Limb ischemic preconditioning reduces heart and lung injury after an open heart operation in infants.

Wenwu Zhou1, Debing Zeng, Renwei Chen, Jian Liu, Guangxian Yang, Pingbo Liu, Xinmin Zhou.   

Abstract

Open heart surgery supported by cardiopulmonary bypass is associated with heart and lung ischemia-reperfusion injury (IRI). Limb remote ischemic preconditioning (RIPC) reduces injury caused by ischemia-reperfusion in multiple distant organs. We conducted a prospective clinical trial (randomized and controlled) to test the feasibility and safety of limb RIPC, as well as its protective effects against myocardial and pulmonary IRI for infants undergoing repair of simple congenital heart defects. Infants undergoing repair of ventricular septal defects were enrolled in our study and randomly assigned to one of two treatment groups: limb RIPC or control. RIPC was induced twice (24 h and 1 h preoperatively) via three 5-min cycles of ischemia and reperfusion on the left upper arm using a blood pressure cuff. Lung compliance, respiratory index (RI), and cardiac inotropic score (IS) were calculated for each patient. Serum concentrations of the following factors were measured perioperatively: interleukin (IL)-6, IL-8, IL-10, and tumor necrosis factor (TNF)-alpha; lactate dehydrogenase (LDH), creatine kinase (CK), and its isoenzyme (CK-MB), and troponin I (TnI); malondialdehyde (MDA) and superoxide dismutase (SOD). The expression of heat shock protein 70 (HSP 70) in cardiomyocytes was analyzed by Western blot. Surgical outcomes, including limb movement and sensory function, were recorded in detail. Sixty infants weighting less than 7 kg were studied, with 30 patients in the RIPC group and 30 in the control group. Within 6 months of discharge from the hospital, no limb disability, sensory disturbance, or other surgical complications were found in any patient. Compared with the control group, patients in the RIPC group had higher Cs and Cd, along with lower RI and IS at various postoperative phases. At the beginning of the operation, serum concentrations of IL-6, IL-8, IL-10, TNF-alpha, LDH, CK, and TnI were higher in the RIPC group than the control group. Postoperatively, release of cytokines and leakage of heart enzymes were attenuated in the RIPC group; serum concentrations of cytokines and heart enzymes were lower in the RIPC group at some, but not all, postoperative time points. Furthermore, the RIPC group had lower coronary sinus venous concentrations of MDA and higher concentrations of SOD. Similarly, the expression of HSP 70 was upregulated in cardiomyocytes from the RIPC group. Limb RIPC can be applied safely and easily in infants, can attenuate systemic inflammatory response syndrome, and can increase systemic tolerance to IRI, imparting a protective effect against myocardial and pulmonary IRI. The expression of HSP 70 has an important role in the mechanism of action for RIPC.

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Year:  2009        PMID: 19787388     DOI: 10.1007/s00246-009-9536-9

Source DB:  PubMed          Journal:  Pediatr Cardiol        ISSN: 0172-0643            Impact factor:   1.655


  15 in total

1.  Randomized controlled trial of the effects of remote ischemic preconditioning on children undergoing cardiac surgery: first clinical application in humans.

Authors:  Michael M H Cheung; Rajesh K Kharbanda; Igor E Konstantinov; Mikiko Shimizu; Helena Frndova; Jia Li; Helen M Holtby; Peter N Cox; Jeffrey F Smallhorn; Glen S Van Arsdell; Andrew N Redington
Journal:  J Am Coll Cardiol       Date:  2006-05-15       Impact factor: 24.094

2.  Stress inhibits nucleocytoplasmic shuttling of heat shock protein hsc70.

Authors:  Mohamed Kodiha; Angel Chu; Omar Lazrak; Ursula Stochaj
Journal:  Am J Physiol Cell Physiol       Date:  2005-06-01       Impact factor: 4.249

3.  Remote ischemic preconditioning provides early and late protection against endothelial ischemia-reperfusion injury in humans: role of the autonomic nervous system.

Authors:  Stavros P Loukogeorgakis; Anna T Panagiotidou; Michael W Broadhead; Ann Donald; John E Deanfield; Raymond J MacAllister
Journal:  J Am Coll Cardiol       Date:  2005-08-02       Impact factor: 24.094

4.  Remote ischemic preconditioning of the recipient reduces myocardial ischemia-reperfusion injury of the denervated donor heart via a Katp channel-dependent mechanism.

Authors:  Igor E Konstantinov; Jia Li; Michael M Cheung; Mikiko Shimizu; Jacqueline Stokoe; Rajesh K Kharbanda; Andrew N Redington
Journal:  Transplantation       Date:  2005-06-27       Impact factor: 4.939

5.  Initiation of remote microvascular preconditioning requires K(ATP) channel activity.

Authors:  Lauren Mabanta; Patrick Valane; Jonathan Borne; Mary D Frame
Journal:  Am J Physiol Heart Circ Physiol       Date:  2005-08-26       Impact factor: 4.733

6.  Myocardial protection by remote preconditioning: the role of nuclear factor kappa-B p105 and inducible nitric oxide synthase.

Authors:  Guohu Li; Fausto Labruto; Allan Sirsjö; Fei Chen; Jarle Vaage; Guro Valen
Journal:  Eur J Cardiothorac Surg       Date:  2004-11       Impact factor: 4.191

Review 7.  Protocols and mechanisms for remote ischemic preconditioning: a novel method for reducing ischemia reperfusion injury.

Authors:  Sanjeev Kanoria; Rajiv Jalan; Alexander M Seifalian; Roger Williams; Brian R Davidson
Journal:  Transplantation       Date:  2007-08-27       Impact factor: 4.939

8.  Regional ischemic 'preconditioning' protects remote virgin myocardium from subsequent sustained coronary occlusion.

Authors:  K Przyklenk; B Bauer; M Ovize; R A Kloner; P Whittaker
Journal:  Circulation       Date:  1993-03       Impact factor: 29.690

Review 9.  Management of infants with coarctation and ventricular septal defect.

Authors:  Kirk R Kanter
Journal:  Semin Thorac Cardiovasc Surg       Date:  2007

10.  Remote ischemic preconditioning reduces myocardial and renal injury after elective abdominal aortic aneurysm repair: a randomized controlled trial.

Authors:  Ziad A Ali; Chris J Callaghan; Eric Lim; Ayyaz A Ali; S A Reza Nouraei; Asim M Akthar; Jonathan R Boyle; Kevin Varty; Rajesh K Kharbanda; David P Dutka; Michael E Gaunt
Journal:  Circulation       Date:  2007-09-11       Impact factor: 29.690

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  39 in total

Review 1.  Is remote ischaemic preconditioning of benefit to patients undergoing cardiac surgery?

Authors:  Jakub Marczak; Rafal Nowicki; Julita Kulbacka; Jolanta Saczko
Journal:  Interact Cardiovasc Thorac Surg       Date:  2012-01-26

Review 2.  Moving towards preconditioning for neurological disorders: are we ready for clinical trials?

Authors:  Sebastian Koch
Journal:  Transl Stroke Res       Date:  2012-11-01       Impact factor: 6.829

3.  Remote Ischemic Preconditioning has a Cardioprotective Effect in Children in the Early Postoperative Phase: A Meta-Analysis of Randomized Controlled Trials.

Authors:  Wen Tan; Chaoji Zhang; Jianzhou Liu; Xiaofeng Li; Yuzhi Chen; Qi Miao
Journal:  Pediatr Cardiol       Date:  2018-01-04       Impact factor: 1.655

4.  Limb ischemic preconditioning for open heart surgery in infants.

Authors:  Oc Bahar; Duman Ates; Wenwu Zhou
Journal:  Pediatr Cardiol       Date:  2011-04       Impact factor: 1.655

5.  Remote Limb Ischemic Conditioning at Two Cuff Inflation Pressures Yields Learning Enhancements in Healthy Adults.

Authors:  Kendra M Cherry-Allen; Jeff M Gidday; Jin-Moo Lee; Tamara Hershey; Catherine E Lang
Journal:  J Mot Behav       Date:  2016-10-12       Impact factor: 1.328

6.  Remote ischaemic preconditioning does not alter perioperative cytokine production in high-risk cardiac surgery.

Authors:  Jenni M Williams; Paul Young; Janine Pilcher; Mark Weatherall; John Holmes Miller; Richard Beasley; Anne Camille La Flamme
Journal:  Heart Asia       Date:  2012-08-13

7.  Remote ischaemic preconditioning of the lung: from bench to bedside-are we there yet?

Authors:  Nina C Weber; Coert J Zuurbier; Markus W Hollmann
Journal:  J Thorac Dis       Date:  2018-01       Impact factor: 2.895

8.  Extracorporeal membrane oxygenation induced cardiac dysfunction in newborn lambs.

Authors:  Lee A Pyles; Robert A Gustafson; James Fortney; Stanley Einzig
Journal:  J Cardiovasc Transl Res       Date:  2010-09-17       Impact factor: 4.132

Review 9.  The therapeutic potential of ischemic conditioning: an update.

Authors:  Derek J Hausenloy; Derek M Yellon
Journal:  Nat Rev Cardiol       Date:  2011-06-21       Impact factor: 32.419

Review 10.  A systematic review and meta-analysis of the cardioprotective effects of remote ischaemic preconditioning in open cardiac surgery.

Authors:  Janine M Pilcher; Paul Young; Mark Weatherall; Ishtiaq Rahman; Robert S Bonser; Richard W Beasley
Journal:  J R Soc Med       Date:  2012-10       Impact factor: 5.344

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