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Updated: Aug 6, 2026

Osmotic Drug Delivery to Ischemic Hindlimbs and Perfusion of Vasculature with Microfil for Micro-Computed Tomography Imaging
Published on: June 29, 2013
The current status of drug-coated devices in lower extremity peripheral artery disease interventions
Vishal Amlani1, Mårten Falkenberg2, Joakim Nordanstig1
1Department of Vascular Surgery, Sahlgrenska University Hospital, Gothenburg, Sweden; Institute of Medicine, Department of Molecular and Clinical Medicine, Sahlgrenska Academy, University of Gothenburg, Gothenburg, Sweden.
Insights
Paclitaxel-coated devices may reduce restenosis in peripheral artery disease, but long-term safety and patient benefits remain uncertain. Ongoing trials aim to clarify risks and benefits for this cardiovascular treatment.
Area of Science:
- Vascular Medicine
- Interventional Cardiology
- Biomaterials Science
Background:
- Peripheral artery disease (PAD) significantly contributes to cardiovascular morbidity and mortality.
- Endovascular revascularization improves limb function and prevents limb loss in PAD patients.
- Restenosis post-intervention limits the effectiveness of PAD treatments, with drug-coated devices being a key strategy.
Purpose of the Study:
- To provide an updated analysis of the efficacy and safety of paclitaxel-coated devices for lower limb PAD treatment.
- To address concerns regarding potential late mortality associated with paclitaxel-coated devices.
- To evaluate the translation of surrogate marker improvements to direct patient benefits.
Main Methods:
- Systematic review and meta-analysis of existing data.
- Focus on randomized clinical trial data, acknowledging heterogeneity and limitations.
- Review of ongoing trials and potential future research directions.
Main Results:
- Paclitaxel-coated devices show potential in reducing restenosis rates in lower limb PAD.
- Uncertainty persists regarding the direct clinical benefits and long-term mortality risks.
- Existing randomized data is limited by heterogeneity, insufficient power, and potential biases.
Conclusions:
- While paclitaxel-coated devices may improve surrogate endpoints like restenosis, their impact on long-term patient outcomes and mortality requires further investigation.
- Ongoing large-scale trials are crucial to resolve clinical dilemmas surrounding these devices.
- Future research should explore alternative anti-proliferative agents and advanced imaging for patient risk stratification.
Abstract:
Lower limb peripheral artery disease is a leading cause of cardiovascular disease morbidity and mortality. Endovascular revascularization is often indicated to improve walking function and to prevent limb loss but restenosis in the treated vessel segment remains a concern that limits the overall effectiveness of the treatment. The most promising technique to prevent restenosis is the use of drug-coated devices, and the most common drug used to coat lower limb balloon angioplasty balloons and stents is paclitaxel. A systematic review and meta-analysis in 2018 reported a possible increase in late mortality attributable to paclitaxel-coated devices. Since then, their use has been brought into question. Here, we present an update of data focusing on the efficacy and safety of paclitaxel-coated devices in lower limb treatment applications. While paclitaxel-coated devices appear to reduce restenosis rates it is still unclear how these surrogate marker improvements translate to direct patient benefits and uncertainty remains as to whether paclitaxel-coated devices confer an increased risk of long-term mortality. Available randomized clinical data is hampered by trial heterogeneity, insufficient power, potential attrition bias and the lack of a plausible mechanistic explanation. An important step forward is that the ongoing trials that were temporarily halted due to the Katsanos et al. report have now both commenced recruitment and may ultimately resolve this clinical dilemma by virtue of their larger sample sizes. Other possible ways forward are the ongoing investigation of alternative anti-proliferative coating agents and use of new sophisticated vascular imaging techniques to more clearly identify patients at risk of restenosis already in the preoperative setting.
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