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Published on: June 4, 2021
Cost-effectiveness of additional catheter-directed thrombolysis for deep vein thrombosis
1Department of Hematology, Oslo University Hospital, Oslo, Norway. tone.enden@medisin.uio.no
Insights
Catheter-directed thrombolysis (CDT) offers a cost-effective addition to standard treatment for high proximal deep vein thrombosis (DVT), reducing post-thrombotic syndrome (PTS) and improving quality-adjusted life years (QALYs). This approach is likely to be a valuable alternative for eligible patients.
Area of Science:
- Vascular Medicine
- Health Economics
- Interventional Radiology
Background:
- Catheter-directed thrombolysis (CDT) is a treatment for deep vein thrombosis (DVT).
- Emerging evidence suggests CDT can reduce the incidence of post-thrombotic syndrome (PTS).
Purpose of the Study:
- To evaluate the cost-effectiveness of adding CDT to standard treatment for proximal DVT.
- To compare the economic and clinical outcomes of CDT plus standard care versus standard care alone.
Main Methods:
- A Markov decision model was employed to simulate patient outcomes over a lifetime horizon.
- The model incorporated data from the CaVenT study and literature for clinical inputs, costs, and quality-adjusted life years (QALYs).
- Sensitivity analyses were performed to assess the impact of uncertainties on the cost-effectiveness findings.
Main Results:
- Additional CDT resulted in higher QALYs (32.31) compared to standard treatment (31.68).
- The incremental cost-effectiveness ratio (ICER) was $20,429 per QALY gained.
- CDT was found to be cost-effective in 82% of simulations at a willingness-to-pay threshold of $50,000/QALY.
Conclusions:
- Additional CDT is a likely cost-effective strategy for patients with high proximal DVT and low bleeding risk.
- This treatment approach improves long-term outcomes by reducing PTS.
- The findings support the integration of CDT into standard care for selected DVT patients.
Background:
Additional treatment with catheter-directed thrombolysis (CDT) has recently been shown to reduce post-thrombotic syndrome (PTS).
Objectives:
To estimate the cost effectiveness of additional CDT compared with standard treatment alone.
Methods:
Using a Markov decision model, we compared the two treatment strategies in patients with a high proximal deep vein thrombosis (DVT) and a low risk of bleeding. The model captured the development of PTS, recurrent venous thromboembolism and treatment-related adverse events within a lifetime horizon and the perspective of a third-party payer. Uncertainty was assessed with one-way and probabilistic sensitivity analyzes. Model inputs from the CaVenT study included PTS development, major bleeding from CDT and utilities for post DVT states including PTS. The remaining clinical inputs were obtained from the literature. Costs obtained from the CaVenT study, hospital accounts and the literature are expressed in US dollars ($); effects in quality adjusted life years (QALY).
Results:
In base case analyzes, additional CDT accumulated 32.31 QALYs compared with 31.68 QALYs after standard treatment alone. Direct medical costs were $64,709 for additional CDT and $51,866 for standard treatment. The incremental cost-effectiveness ratio (ICER) was $20,429/QALY gained. One-way sensitivity analysis showed model sensitivity to the clinical efficacy of both strategies, but the ICER remained < $55,000/QALY over the full range of all parameters. The probability that CDT is cost effective was 82% at a willingness to pay threshold of $50,000/QALY gained.
Conclusions:
Additional CDT is likely to be a cost-effective alternative to the standard treatment for patients with a high proximal DVT and a low risk of bleeding.
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