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Distal Versus Conventional Radial Access for Coronary Angiography and Intervention: The DISCO RADIAL Trial
Adel Aminian1, Gregory A Sgueglia2, Marcus Wiemer3
1Department of Cardiology, Centre Hospitalier Universitaire de Charleroi, Charleroi, Belgium.
Insights
Distal radial access (DRA) and transradial access (TRA) show similar low rates of radial artery occlusion (RAO) when using best practices. DRA resulted in more crossovers but quicker hemostasis.
Area of Science:
- Cardiology
- Vascular Surgery
- Interventional Radiology
Background:
- Transradial access (TRA) is standard for coronary procedures, but radial artery occlusion (RAO) is a frequent complication, especially for patients needing multiple interventions.
- Distal radial access (DRA) is an emerging alternative to mitigate RAO risk.
- A large-scale international trial comparing RAO rates between TRA and DRA was lacking.
Purpose of the Study:
- To evaluate if distal radial access (DRA) is superior to conventional transradial access (TRA) in reducing forearm radial artery occlusion (RAO).
Main Methods:
- The DISCO RADIAL trial was an international, multicenter, randomized controlled trial comparing DRA and TRA in patients undergoing percutaneous coronary procedures.
- Patients received either DRA or TRA using a 6-F Slender sheath, with strict adherence to best practices for RAO reduction.
- The primary endpoint was forearm RAO incidence assessed by vascular ultrasound post-procedure. Secondary endpoints included crossover rates, hemostasis duration, and access site complications.
Main Results:
- No significant difference in forearm RAO was observed between DRA (0.31%) and TRA (0.91%) (P=0.29).
- Crossover rates were higher in the DRA group (7.4%) compared to TRA (3.5%) (P=0.002).
- Median hemostasis time was shorter with DRA (153 minutes) versus TRA (180 minutes) (P < 0.001), while radial artery spasm was more frequent with DRA (5.4% vs 2.7%).
Conclusions:
- Implementing a rigorous hemostasis protocol results in equally low radial artery occlusion rates for both DRA and TRA.
- Distal radial access (DRA) is associated with a higher crossover rate but offers a shorter hemostasis time compared to transradial access (TRA).
Background:
Currently, transradial access (TRA) is the recommended access for coronary procedures because of increased safety, with radial artery occlusion (RAO) being its most frequent complication, which will increasingly affect patients undergoing multiple procedures during their lifetimes. Recently, distal radial access (DRA) has emerged as a promising alternative access to minimize RAO risk. A large-scale, international, randomized trial comparing RAO with TRA and DRA is lacking.
Objectives:
The aim of this study was to assess the superiority of DRA compared with conventional TRA with respect to forearm RAO.
Methods:
DISCO RADIAL (Distal vs Conventional Radial Access) was an international, multicenter, randomized controlled trial in which patients with indications for percutaneous coronary procedure using a 6-F Slender sheath were randomized to DRA or TRA with systematic implementation of best practices to reduce RAO. The primary endpoint was the incidence of forearm RAO assessed by vascular ultrasound at discharge. Secondary endpoints include crossover, hemostasis time, and access site-related complications.
Results:
Overall, 657 patients underwent TRA, and 650 patients underwent DRA. Forearm RAO did not differ between groups (0.91% vs 0.31%; P = 0.29). Patent hemostasis was achieved in 94.4% of TRA patients. Crossover rates were higher with DRA (3.5% vs 7.4%; P = 0.002), and median hemostasis time was shorter (180 vs 153 minutes; P < 0.001). Radial artery spasm occurred more with DRA (2.7% vs 5.4%; P = 0.015). Overall bleeding events and vascular complications did not differ between groups.
Conclusions:
With the implementation of a rigorous hemostasis protocol, DRA and TRA have equally low RAO rates. DRA is associated with a higher crossover rate but a shorter hemostasis time.
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