Physiology of Angina and its Alleviation with Nitroglycerine- Insights from Invasive Catheter Laboratory Measurements During Exercise

BACKGROUND—: The mechanisms governing exercise-induced angina and its alleviation by the most commonly used anti-anginal drug, nitroglycerine (GTN), are incompletely understood. The purpose of this study was to develop a method with which the effects of anti-anginal drugs could be evaluated invasive...

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Published in:Circulation
Main Authors: Asrress, Kaleab N., Williams, Rupert, Lockie, Timothy, Khawaja, Muhammed Z., de Silva, Kalpa, Lumley, Matthew, Patterson, Tiffany, Arri, Satpal, Ihsan, Sana, Ellis, Howard, Guilcher, Antoine, Clapp, Brian, Chowienczyk, Philip J., Plein, Sven, Perera, Divaka, Marber, Michael S., Redwood, Simon R.
Format: Article in Journal/Newspaper
Language:English
Published: 2017
Subjects:
Online Access:https://kclpure.kcl.ac.uk/portal/en/publications/physiology-of-angina-and-its-alleviation-with-nitroglycerine-insights-from-invasive-catheter-laboratory-measurements-during-exercise(ba12fb7b-d5ec-41f3-84c1-55e66a4309da).html
https://doi.org/10.1161/CIRCULATIONAHA.116.025856
https://kclpure.kcl.ac.uk/ws/files/141576752/Physiology_of_Angina_and_Its_Alleviation_PATTERSON_Publishedonline3May2017_GOLD_VoR.pdf
http://www.scopus.com/inward/record.url?scp=85019553263&partnerID=8YFLogxK
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spelling ftkingscollondon:oai:pure.atira.dk:publications/ba12fb7b-d5ec-41f3-84c1-55e66a4309da 2023-05-15T16:32:13+02:00 Physiology of Angina and its Alleviation with Nitroglycerine- Insights from Invasive Catheter Laboratory Measurements During Exercise Asrress, Kaleab N. Williams, Rupert Lockie, Timothy Khawaja, Muhammed Z. de Silva, Kalpa Lumley, Matthew Patterson, Tiffany Arri, Satpal Ihsan, Sana Ellis, Howard Guilcher, Antoine Clapp, Brian Chowienczyk, Philip J. Plein, Sven Perera, Divaka Marber, Michael S. Redwood, Simon R. 2017-07-04 application/pdf https://kclpure.kcl.ac.uk/portal/en/publications/physiology-of-angina-and-its-alleviation-with-nitroglycerine-insights-from-invasive-catheter-laboratory-measurements-during-exercise(ba12fb7b-d5ec-41f3-84c1-55e66a4309da).html https://doi.org/10.1161/CIRCULATIONAHA.116.025856 https://kclpure.kcl.ac.uk/ws/files/141576752/Physiology_of_Angina_and_Its_Alleviation_PATTERSON_Publishedonline3May2017_GOLD_VoR.pdf http://www.scopus.com/inward/record.url?scp=85019553263&partnerID=8YFLogxK eng eng info:eu-repo/semantics/openAccess Asrress , K N , Williams , R , Lockie , T , Khawaja , M Z , de Silva , K , Lumley , M , Patterson , T , Arri , S , Ihsan , S , Ellis , H , Guilcher , A , Clapp , B , Chowienczyk , P J , Plein , S , Perera , D , Marber , M S & Redwood , S R 2017 , ' Physiology of Angina and its Alleviation with Nitroglycerine- Insights from Invasive Catheter Laboratory Measurements During Exercise ' , Circulation (Baltimore) , vol. 136 , no. 1 , pp. 24-34 . https://doi.org/10.1161/CIRCULATIONAHA.116.025856 article 2017 ftkingscollondon https://doi.org/10.1161/CIRCULATIONAHA.116.025856 2022-10-14T10:35:31Z BACKGROUND—: The mechanisms governing exercise-induced angina and its alleviation by the most commonly used anti-anginal drug, nitroglycerine (GTN), are incompletely understood. The purpose of this study was to develop a method with which the effects of anti-anginal drugs could be evaluated invasively during physiological exercise to gain further understanding as to the clinical impact of angina and GTN. METHODS—: 40 Patients (mean 65.2±7.6 years) with exertional angina and coronary artery disease underwent cardiac catheterisation via radial access and performed incremental exercise using a supine cycle ergometer. As they developed limiting angina, sublingual GTN was administered to half the patients and all patients continued to exercise for two minutes at the same workload. Throughout exercise, distal coronary pressure and flow velocity, and central aortic pressure were recorded using sensor wires. RESULTS—: Patients continued to exercise post-GTN administration with less ST-segment depression (P=0.003), and therefore myocardial ischemia. Significant reductions in afterload (Aortic pressure P=0.030), and myocardial oxygen demand were seen (Tension Time Index P=0.024, Rate Pressure Product P=0.046), as well as increase in myocardial oxygen supply (Buckberg Index P= 0.017). Exercise reduced peripheral arterial wave reflection (P<0.05), which was not further augmented by the administration of GTN (P=0.648). The observed increases in coronary pressure gradient, stenosis resistance and flow velocity did not reach statistical significance, however the diastolic velocity - pressure gradient relation was consistent with significant increase in relative stenosis severity (k coefficient P<0.0001) in keeping with exercise induced vasoconstriction of stenosed epicardial segments and dilatation of normal segments, with trends towards reversal with GTN. CONCLUSIONS—: The catheter laboratory protocol provides a model to study myocardial ischemia and the actions of novel and established anti-anginal drugs. ... Article in Journal/Newspaper GTN-P King's College, London: Research Portal Circulation 136 1 24 34
institution Open Polar
collection King's College, London: Research Portal
op_collection_id ftkingscollondon
language English
description BACKGROUND—: The mechanisms governing exercise-induced angina and its alleviation by the most commonly used anti-anginal drug, nitroglycerine (GTN), are incompletely understood. The purpose of this study was to develop a method with which the effects of anti-anginal drugs could be evaluated invasively during physiological exercise to gain further understanding as to the clinical impact of angina and GTN. METHODS—: 40 Patients (mean 65.2±7.6 years) with exertional angina and coronary artery disease underwent cardiac catheterisation via radial access and performed incremental exercise using a supine cycle ergometer. As they developed limiting angina, sublingual GTN was administered to half the patients and all patients continued to exercise for two minutes at the same workload. Throughout exercise, distal coronary pressure and flow velocity, and central aortic pressure were recorded using sensor wires. RESULTS—: Patients continued to exercise post-GTN administration with less ST-segment depression (P=0.003), and therefore myocardial ischemia. Significant reductions in afterload (Aortic pressure P=0.030), and myocardial oxygen demand were seen (Tension Time Index P=0.024, Rate Pressure Product P=0.046), as well as increase in myocardial oxygen supply (Buckberg Index P= 0.017). Exercise reduced peripheral arterial wave reflection (P<0.05), which was not further augmented by the administration of GTN (P=0.648). The observed increases in coronary pressure gradient, stenosis resistance and flow velocity did not reach statistical significance, however the diastolic velocity - pressure gradient relation was consistent with significant increase in relative stenosis severity (k coefficient P<0.0001) in keeping with exercise induced vasoconstriction of stenosed epicardial segments and dilatation of normal segments, with trends towards reversal with GTN. CONCLUSIONS—: The catheter laboratory protocol provides a model to study myocardial ischemia and the actions of novel and established anti-anginal drugs. ...
format Article in Journal/Newspaper
author Asrress, Kaleab N.
Williams, Rupert
Lockie, Timothy
Khawaja, Muhammed Z.
de Silva, Kalpa
Lumley, Matthew
Patterson, Tiffany
Arri, Satpal
Ihsan, Sana
Ellis, Howard
Guilcher, Antoine
Clapp, Brian
Chowienczyk, Philip J.
Plein, Sven
Perera, Divaka
Marber, Michael S.
Redwood, Simon R.
spellingShingle Asrress, Kaleab N.
Williams, Rupert
Lockie, Timothy
Khawaja, Muhammed Z.
de Silva, Kalpa
Lumley, Matthew
Patterson, Tiffany
Arri, Satpal
Ihsan, Sana
Ellis, Howard
Guilcher, Antoine
Clapp, Brian
Chowienczyk, Philip J.
Plein, Sven
Perera, Divaka
Marber, Michael S.
Redwood, Simon R.
Physiology of Angina and its Alleviation with Nitroglycerine- Insights from Invasive Catheter Laboratory Measurements During Exercise
author_facet Asrress, Kaleab N.
Williams, Rupert
Lockie, Timothy
Khawaja, Muhammed Z.
de Silva, Kalpa
Lumley, Matthew
Patterson, Tiffany
Arri, Satpal
Ihsan, Sana
Ellis, Howard
Guilcher, Antoine
Clapp, Brian
Chowienczyk, Philip J.
Plein, Sven
Perera, Divaka
Marber, Michael S.
Redwood, Simon R.
author_sort Asrress, Kaleab N.
title Physiology of Angina and its Alleviation with Nitroglycerine- Insights from Invasive Catheter Laboratory Measurements During Exercise
title_short Physiology of Angina and its Alleviation with Nitroglycerine- Insights from Invasive Catheter Laboratory Measurements During Exercise
title_full Physiology of Angina and its Alleviation with Nitroglycerine- Insights from Invasive Catheter Laboratory Measurements During Exercise
title_fullStr Physiology of Angina and its Alleviation with Nitroglycerine- Insights from Invasive Catheter Laboratory Measurements During Exercise
title_full_unstemmed Physiology of Angina and its Alleviation with Nitroglycerine- Insights from Invasive Catheter Laboratory Measurements During Exercise
title_sort physiology of angina and its alleviation with nitroglycerine- insights from invasive catheter laboratory measurements during exercise
publishDate 2017
url https://kclpure.kcl.ac.uk/portal/en/publications/physiology-of-angina-and-its-alleviation-with-nitroglycerine-insights-from-invasive-catheter-laboratory-measurements-during-exercise(ba12fb7b-d5ec-41f3-84c1-55e66a4309da).html
https://doi.org/10.1161/CIRCULATIONAHA.116.025856
https://kclpure.kcl.ac.uk/ws/files/141576752/Physiology_of_Angina_and_Its_Alleviation_PATTERSON_Publishedonline3May2017_GOLD_VoR.pdf
http://www.scopus.com/inward/record.url?scp=85019553263&partnerID=8YFLogxK
genre GTN-P
genre_facet GTN-P
op_source Asrress , K N , Williams , R , Lockie , T , Khawaja , M Z , de Silva , K , Lumley , M , Patterson , T , Arri , S , Ihsan , S , Ellis , H , Guilcher , A , Clapp , B , Chowienczyk , P J , Plein , S , Perera , D , Marber , M S & Redwood , S R 2017 , ' Physiology of Angina and its Alleviation with Nitroglycerine- Insights from Invasive Catheter Laboratory Measurements During Exercise ' , Circulation (Baltimore) , vol. 136 , no. 1 , pp. 24-34 . https://doi.org/10.1161/CIRCULATIONAHA.116.025856
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op_doi https://doi.org/10.1161/CIRCULATIONAHA.116.025856
container_title Circulation
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