Related Experiment Video
Updated: Aug 28, 2025

Predicting Amputation using Local Circulating Mononuclear Progenitor Cells in Angioplasty-treated Patients with Critical Limb Ischemia
Published on: September 22, 2020
Determinants of Drug-Coated Balloon Failure in Patients Undergoing Femoropopliteal Arterial Intervention
Prakash Krishnan1, Serdar Farhan1, Peter Schneider2
1Cardiovascular Institute, Mount Sinai Hospital, Icahn School of Medicine at Mount Sinai, New York, New York, USA.
Insights
Drug-coated balloons (DCB) for femoropopliteal artery disease can fail due to residual stenosis, smaller vessel diameter, and higher Rutherford Classification. These factors predict patency loss and restenosis post-treatment.
Area of Science:
- Vascular Surgery
- Interventional Cardiology
- Biomedical Engineering
Background:
- Drug-coated balloons (DCB) are a common treatment for femoropopliteal artery disease.
- However, significant rates of patency loss (≥10% within 12 months) occur, with unclear underlying mechanisms.
Purpose of the Study:
- To investigate the key determinants of DCB failure in patients with femoropopliteal artery disease.
- To identify clinical, anatomical, and procedural predictors of DCB failure.
Main Methods:
- Analysis of data from randomized clinical trials and imaging cohorts.
- Evaluation of procedural characteristics by an independent angiographic core laboratory.
- Multivariable analyses to determine predictors of DCB failure, binary restenosis, and target lesion revascularization.
Main Results:
- Residual stenosis >30% was the sole predictor of patency loss.
- Residual stenosis >30% and smaller preprocedure reference vessel diameter (RVD) increased binary restenosis risk.
- Higher Rutherford Classification Category (RCC) and residual stenosis >30% predicted increased 12-month clinically driven target lesion revascularization risk.
Conclusions:
- Procedural and clinical factors significantly influence patency loss after DCB treatment.
- Residual stenosis >30%, smaller preprocedure RVD, and higher RCC are predictors of DCB failure in femoropopliteal artery disease.
Background:
Drug-coated balloons (DCB) are frequently used to treat femoropopliteal artery disease. However, patency loss occurs in ≥10% of patients within 12 months posttreatment with poor understanding of the underlying mechanisms.
Objectives:
The authors sought to investigate the determinants of DCB failure in femoropopliteal disease.
Methods:
Data from randomized clinical trials (IN.PACT SFA, MDT-2113 SFA Japan) and 2 prespecified imaging cohorts of the IN.PACT Global Clinical Study were included. Influential procedural characteristics were evaluated by an independent angiographic core laboratory. The primary endpoint was DCB failure (patency loss during follow-up). Additional endpoints were binary restenosis and clinically driven target lesion revascularization. Multivariable analyses evaluated the clinical, anatomical, and procedural predictors of DCB failure.
Results:
Included were 557 participants with single lesions and 12-month core laboratory-adjudicated duplex ultrasonography. Key clinical characteristics were as follows: mean age 68.8 years, 67.5% male, 87.6% with hypertension, 76.9% with hyperlipidemia, 40.5% with diabetes mellitus, 90.5% in Rutherford Classification Category (RCC) 2 to 3, and 9.5% in RCC 4 to 5. Average length and reference vessel diameter (RVD) were 16.37 cm and 4.66 mm, respectively; 49.7% of lesions were totally occluded. In multivariable analysis, only residual stenosis >30% was associated with patency loss, whereas residual stenosis >30% and smaller preprocedure RVD were associated with increased binary restenosis risk. RCC >3 and residual stenosis >30% were associated with increased 12-month clinically driven target lesion revascularization risk.
Conclusions:
Patency loss after DCB treatment was influenced by procedural and clinical factors. Residual stenosis >30%, smaller preprocedure RVD, and higher RCC may be considered predictors of increased risk of DCB failure and its components in femoropopliteal artery disease. (Randomized Trial of IN.PACT Admiral® Drug Coated Balloon vs Standard PTA for the Treatment of SFA and Proximal Popliteal Arterial Disease [INPACT SFA I]; NCT01175850; IN.PACT Admiral Drug-Coated Balloon vs. Standard Balloon Angioplasty for the Treatment of Superficial Femoral Artery [SFA] and Proximal Popliteal Artery [PPA] [INPACT SFA II]; NCT01566461; MDT-2113 Drug-Eluting Balloon vs. Standard PTA for the Treatment of Atherosclerotic Lesions in the Superficial Femoral Artery and/or Proximal Popliteal Artery [MDT-2113 SFA]; NCT01947478; IN.PACT Global Clinical Study; NCT01609296).
More Related Videos
07:05Murine Model of Femoral Artery Wire Injury with Implantation of a Perivascular Drug Delivery Patch
Published on: February 10, 2015
13:48Reduction of Radiation Exposure during Endovascular Treatment of Peripheral Arterial Disease Combining Fiber Optic RealShape Technology and Intravascular Ultrasound
Published on: April 21, 2023
Related Concept Videos
Peripheral Artery Disease III: Interprofessional Care
Peripheral Artery Disease I: Introduction
Peripheral Artery Disease V: Postoperative Nursing Management