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Interventional Diagnostic Procedure: A Practical Guide for the Assessment of Coronary Vascular Function
Published on: March 15, 2022
Impact of Access Site on Periprocedural Bleeding and Cerebral and Coronary Events in High-Bleeding-Risk Percutaneous
Martin Borlich1, Uwe Zeymer2,3, Harm Wienbergen4
1Herz- und Gefäßzentrum, Segeberger Kliniken GmbH, Am Kurpark 1, Bad Segeberg, Schleswig-Holstein, 23795, Bad Segeberg, Germany. martin.borlich@segebergerkliniken.de.
Insights
Transradial access (TRA) may reduce bleeding complications in high-bleeding-risk patients with atrial fibrillation (AF) undergoing percutaneous coronary intervention (PCI). This approach did not increase risks of stroke or heart events compared to transfemoral access (TFA).
Area of Science:
- Interventional Cardiology
- Vascular Access Strategies
- Atrial Fibrillation Management
Background:
- Transradial access (TRA) is preferred for percutaneous coronary intervention (PCI) due to lower bleeding and vascular complications.
- Limited data exists comparing TRA and transfemoral access (TFA) in high-bleeding-risk (HBR) atrial fibrillation (AF) patients undergoing PCI.
- AF patients have increased bleeding and thromboembolic risks, necessitating careful consideration of access site selection.
Purpose of the Study:
- To compare in-hospital bleeding, cerebral events, and coronary events between TRA and TFA in HBR patients with AF undergoing PCI.
- To evaluate the safety and efficacy of TRA versus TFA in a vulnerable patient population.
- To inform clinical decision-making regarding vascular access in AF patients undergoing PCI.
Main Methods:
- Analysis of the RIVA-PCI registry data for HBR patients with AF undergoing PCI.
- Comparison of outcomes between patients who underwent TFA (n=854) and TRA (n=782).
- In-hospital bleeding (BARC 2-5), cerebral events (TIA, stroke), and coronary events (stent thrombosis, MI) were primary endpoints.
Main Results:
- The transfemoral access (TFA) group had a higher incidence of bleeding (BARC 2-5) compared to the transradial access (TRA) group (4.2% vs. 1.5%, p<0.01).
- Cerebral events and coronary events showed no significant differences between TFA and TRA groups.
- TRA was more frequently used for non-ST-segment elevation myocardial infarction and unstable angina, while TFA was more common for elective PCI.
Conclusions:
- Transradial access (TRA) may be associated with reduced in-hospital bleeding in high-bleeding-risk atrial fibrillation patients undergoing PCI.
- TRA did not increase the risk of embolic or ischemic events compared to transfemoral access (TFA).
- Further research is warranted to validate these findings in larger cohorts.
Introduction:
The preference for using transradial access (TRA) over transfemoral access (TFA) in patients requiring percutaneous coronary intervention (PCI) is based on evidence suggesting that TRA is associated with less bleeding and fewer vascular complications, shorter hospital stays, improved quality of life, and a potential beneficial effect on mortality. We have limited study data comparing the two access routes in a patient population with atrial fibrillation (AF) undergoing PCI, who have a particular increased risk of bleeding, while AF itself is associated with an increased risk of thromboembolism.
Methods:
Using data from the RIVA-PCI registry, which includes patients with AF undergoing PCI, we analyzed a high-bleeding-risk (HBR) cohort. These patients were predominantly on oral anticoagulants (OAC) for AF, and the PCI was performed via radial or femoral access. Endpoints examined were in-hospital bleeding (BARC 2-5), cerebral events (TIA, hemorrhagic or ischemic stroke) and coronary events (stent thrombosis and myocardial infarction).
Results:
Out of 1636 patients, 854 (52.2%) underwent TFA, while 782 (47.8%) underwent the procedure via TRA, including nine patients with brachial artery puncture. The mean age was 75.5 years. Groups were similar in terms of age, sex distribution, AF type, cardiovascular history, risk factors, and comorbidities, except for a higher incidence of previous bypass surgeries, heart failure, hyperlipidemia, and chronic kidney disease (CKD) with a glomerular filtration rate (GFR) < 60 ml/min in the TFA group. No clinically relevant differences in antithrombotic therapy and combinations were present at the time of PCI. However, upon discharge, transradial PCI patients had a higher rate of triple therapy, while dual therapy was preferred after transfemoral procedures. Radial access was more frequently chosen for non-ST-segment elevation myocardial infarction (NSTEMI) and unstable angina pectoris (UAP) cases (NSTEMI 26.6% vs. 17.0%, p < 0.0001; UAP 21.5% vs. 14.5%, p < 0.001), while femoral access was more common for elective PCI (60.3% vs. 44.1%, p < 0.0001). No differences were observed for ST-segment elevation myocardial infarction (STEMI). Both groups had similar rates of cerebral events (TFA 0.2% vs. TRA 0.3%, p = 0.93), but the TFA group had a higher incidence of bleeding (BARC 2-5) (4.2% vs. 1.5%, p < 0.01), mainly driven by BARC 3 bleeding (1.5% vs. 0.4%, p < 0.05). No significant differences were found for stent thrombosis and myocardial infarction (TFA 0.2% vs. TRA 0.3%, p = 0.93; TFA 0.4% vs. TRA 0.1%, p = 0.36).
Conclusions:
In HBR patients with AF undergoing PCI for acute or chronic coronary syndrome, the use of TRA might be associated with a decrease in in-hospital bleeding, while not increasing the risk of embolic or ischemic events compared to femoral access. Further studies are required to confirm these preliminary findings.
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