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Interventional Diagnostic Procedure: A Practical Guide for the Assessment of Coronary Vascular Function
Published on: March 15, 2022
Impact of Pre-Procedural Blood Pressure on Long-Term Outcomes Following Percutaneous Coronary Intervention
Josephine Warren1, Shane Nanayakkara2, Nick Andrianopoulos3
1Alfred Hospital, Melbourne, Victoria, Australia.
Insights
High systolic and low diastolic blood pressure (HSLD), or wide pulse pressure, is linked to worse long-term outcomes after percutaneous coronary intervention (PCI). Narrow pulse pressure is associated with significantly lower long-term mortality following PCI.
Area of Science:
- Cardiology
- Vascular Medicine
- Interventional Cardiology
Background:
- High systolic blood pressure (SBP) increases cardiac afterload.
- Low diastolic blood pressure (DBP) can impair coronary perfusion.
- Wide pulse pressure (high SBP, low DBP) may predict adverse cardiovascular events and myocardial ischemia.
Purpose of the Study:
- To determine the relationship between pre-procedural blood pressure and long-term outcomes after percutaneous coronary intervention (PCI).
Main Methods:
- 10,876 patients undergoing PCI were analyzed from the Melbourne Interventional Group registry.
- Patients were categorized into four groups based on SBP and DBP levels.
- Exclusion criteria included ST-segment elevation myocardial infarction, cardiogenic shock, and out-of-hospital cardiac arrest.
Main Results:
- Patients with wide pulse pressure (high SBP, low DBP) were older and had more comorbidities.
- While 30-day adverse cardiac events showed no difference, 12-month follow-up revealed increased myocardial infarction and stroke in the wide pulse pressure group.
- Long-term mortality was highest in the wide pulse pressure group (7.9%) and lowest in the narrow pulse pressure group (2.1%).
Conclusions:
- Pre-procedural pulse pressure is associated with long-term outcomes after PCI.
- Wide pulse pressure may serve as a surrogate marker for risk following PCI.
- Pulse pressure could be a potential therapeutic target for future interventions.
Background:
High systolic blood pressure (SBP) increases cardiac afterload, whereas low diastolic blood pressure (DBP) may lead to impaired coronary perfusion. Thus, wide pulse pressure (high systolic, low diastolic [HSLD]) may contribute to myocardial ischemia and also be a predictor of adverse cardiovascular events.
Objectives:
The purpose of this study was to determine the relationship between pre-procedural blood pressure and long-term outcome following percutaneous coronary intervention (PCI).
Methods:
The study included 10,876 consecutive patients between August 2009 and December 2016 from the Melbourne Interventional Group registry undergoing PCI with pre-procedural blood pressure recorded. Patients with ST-segment elevation myocardial infarction, cardiogenic shock, and out-of-hospital cardiac arrest were excluded. Patients were divided into 4 groups according to SBP (high ≥120 mm Hg, low <120 mm Hg) and DBP (high >70 mm Hg, low ≤70 mm Hg).
Results:
Mean pulse pressure was 60 ± 21 mm Hg. Patients with HSLD were older and more frequently women, with higher rates of hypercholesterolemia, renal impairment, diabetes, and multivessel and left main disease (all p ≤ 0.0001). There was no difference in 30-day major adverse cardiac events, but at 12 months the HSLD group had a greater incidence of myocardial infarction (p = 0.018) and stroke (p = 0.013). Long-term mortality was highest for HSLD (7.9%) and lowest for low systolic, high diastolic (narrow pulse pressure) at 2.1% (p = 0.0002). Cox regression analysis demonstrated significantly lower long-term mortality in the low systolic, high diastolic cohort (hazard ratio: 0.50; 99% confidence interval: 0.25 to 0.98; p = 0.04).
Conclusions:
Pulse pressure at the time of index PCI is associated with long-term outcomes following PCI. A wide pulse pressure may serve as a surrogate marker for risk following PCI and represents a potential target for future therapies.
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