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Radial artery access site complications during cardiac procedures,clinical implications and potential solutions: The role of nitric oxide

Radial artery access site complications during cardiac procedures,clinical implications and potential solutions: The role of nitric oxide

作     者:Emma M Coghill Timothy Johnson Russell E Morris Ian L Megson Stephen J Leslie 

作者机构:Free Radical Research FacilityDivision of Biomedical SciencesUniversity of the Highlands and IslandsInverness IV23JHUnited Kingdom Johnson Matthey Technology CentreBlount’s CourtSonning CommonReading RG49NHUnited Kingdom School of ChemistryUniversity of St.AndrewsSt Andrews KY169STUnited Kingdom Department of CardiologyNHS HighlandInverness IV23UJUnited Kingdom 

出 版 物:《World Journal of Cardiology》 (世界心脏病学杂志(英文版)(电子版))

年 卷 期:2020年第12卷第1期

页      面:26-34页

学科分类:1002[医学-临床医学] 07[理学] 0701[理学-数学] 

基  金:Supported by the European Social Fund and Scottish Funding Council as part of Developing Scotland’s Workforce in the Scotland 2014-2020 European Structural and Investment Fund Programme 

主  题:Radial artery Cannulation Spasm Nitric oxide Vasodilation Nanoporous material 

摘      要:Percutaneous coronary intervention for the treatment of coronary artery disease is most commonly performed in the UK through the radial artery,as this is considered to be safer than the femoral approach.However,despite improvements in technology and techniques,complications can occur.The most common complication,arterial spasm,can cause intense pain and,in some cases,procedural failure.The incidence of spasm is dependent on several variables,including operator experience,artery size,and equipment used.An antispasmolytic cocktail can be applied to reduce spasm,which usually includes an exogenous nitric oxide(NO)donor(glyceryl trinitrate).NO is an endogenous local vasodilator and therefore is a potential target for anti-spasm intervention.However,systemic administration can result in unwanted side-effects,such as hypotension.A method that adopts local delivery of NO might be advantageous.This review article describes the mechanisms involved in radial artery spasm,discusses the advantages and disadvantages of current strategies to reduce spasm,and highlight the potential of NO-loaded nanoporous materials for use in this setting.

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