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inDividual, Targeted thrombosIS Prophylaxis Versus the Standard 'One Size Fits All' Approach in Patients Undergoing Total hIp or Total kNee replaCemenT

The DISTINCT Trial: inDividual, Targeted thrombosIS Prophylaxis Versus the Standard 'One Size Fits All' Approach in Patients Undergoing Total hIp or Total kNee replaCemenT: a National, Multicenter, Randomized, Multi-arm, Open-label Trial.

Status
Recruiting
Phases
Phase 4
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT06581965
Acronym
DISTINCT
Enrollment
10078
Registered
2024-09-03
Start date
2024-11-11
Completion date
2031-02-01
Last updated
2026-09-08

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Deep Vein Thrombosis, Pulmonary Embolism, Venous Thromboembolism, Venous Thromboses

Keywords

Venous thromboembolism, Prophylaxis, Individualized Medicine, Total hip arthroplasty, Total knee arthroplasty, Randomized controlled trial

Brief summary

After hip or knee replacement all patients receive a standardized treatment with blood thinners, this medication is called thrombosis prophylaxis. However, despite this standard treatment some individuals still develop venous thrombosis (VTE), while others experience bleeding. This indicates that not all patients have the same VTE risk following surgery. Individualizing the amount of thrombosis prophylaxis following surgery might lead to less thrombotic and bleeding events. In this study the investigators individualize the treatment with thrombosis prophylaxis based on the medical history of a patient. The main questions this study aims to answer are: Can thrombosis prophylaxis be shortened in patients with a low VTE risk to decrease the risk of bleeding without increasing the risk of VTE? Does an increase in the dose and duration of thrombosis prophylaxis in patients with a high VTE risk reduce the risk of VTE without inducing an unacceptable risk of bleeds? Researchers will compare both the shortened treatment in low VTE risk patients and the intensified and extended treatment in high VTE risk patients with the standard treatment to assess the risk of VTE and bleeding in comparison to the standard treatment. Participants will receive 4 questionnaires to evaluate whether they have experienced a VTE or bleed. For this study no additional hospital visits are necessary.

Detailed description

Background Total hip arthroplasty (THA) and total knee arthroplasty (TKA) are associated with an overall symptomatic venous thromboembolism (VTE) risk of about 1.3% despite the use of prophylactic anticoagulants in all patients. While not preventing all VTEs, the uniform application of anticoagulant prophylaxis is at the same time associated with a major bleeding risk of at least 0.5%. Considering that a large proportion of all patients actually have a low VTE risk, this group is unnecessarily exposed to the burden and risks of thrombosis prophylaxis. On the contrary, some patients with a high VTE risk experience a VTE despite the use of the same prophylactic anticoagulants. These VTE cases could have possibly been prevented by intensified prophylaxis. Objectives Overall objective: To study whether the application of a targeted anticoagulation strategy leads to less thrombotic and bleeding complications in this large patient group. Primary objective DISTINCT study arm 1 : To determine whether in-hospital thrombosis prophylaxis only is as effective compared with the standard thrombosis prophylaxis approach to prevent symptomatic VTE after total knee and hip arthroplasty in patients with a low VTE risk. Primary objective DISTINCT study arm 2: To determine the incidence of symptomatic VTE after total knee and hip arthroplasty in patients with an intermediate VTE risk. Primary objective DISTINCT study arm 3: To determine whether intensified thrombosis prophylaxis is more effective and equally safe compared with standard thrombosis prophylaxis to prevent symptomatic VTE in patients with a high VTE risk by comparing symptomatic VTE and bleeding complications. Methods The investigators hypothesize that: 1. In patients with a low VTE risk the thromboprophylaxis can be safely shortened to in-hospital duration only, without increasing the VTE risk (in comparison with the standard duration). In addition, this will lead to less bleeds. 2. In patients with a high VTE risk (individual predicted risk \>1.5%), a therapeutic dose of thrombosis prophylaxis for 6 weeks is more effective to prevent symptomatic VTE, in comparison with the standard thromboprophylaxis. In addition, the investigators expect that the benefits of this approach (less symptomatic VTEs) outweigh the induced bleeds. In the trial participants are allocated to one of three study arms based on the postoperative venous thromboembolism (VTE) risk predicted with the TRiP(plasty) score. (Nemeth, 2024) * DISTINCT 1 (low VTE risk, \<1.0%) will be a randomized study arm. * DISTINCT 2 (intermediate VTE risk, 1.0%-1.5%) will be an observational study arm. * DISTINCT 3 (high VTE risk, \>1.5%) will be a randomized study arm. Participants will receive a questionnaire before surgery and 2 weeks, 6 weeks and 3 months after surgery. To assess the outcome measures. Furthermore an additional questionnaire is send 1 year after surgery if the participant experienced a VTE, major bleed or prosthesis infection. This questionnaire is focused on quality of life and joint function. Participants without such an event can be invited to complete this questionnaire as well. No extra hospital visits are needed and the surgery does not change. Sample size calculations In DISTINCT study arm 1, the expected 3-month cumulative incidence of symptomatic VTE in the control arm is 0.75%. No risk reduction or increase is anticipated, so the expected risk in the short-duration prophylaxis group is also 0.75%. With a non-inferiority limit set at 1%, a sample size of 3,130 patients is needed to achieve a power of 90%, leading to an aim to include 1,739 patients in each group, totaling 3,478 patients after accounting for a maximum dropout rate of 10%. For DISTINCT study arm 2, in the intermediate-risk group, the expected cumulative incidence of VTE within 3 months is 1.3%. With a sample size of 2,500, a 95% confidence interval width of 0.9% - 1.7% is expected, ensuring a probability of less than 15% that the upper bound of a two-sided 95% confidence interval will exceed the 2% margin. In DISTINCT study arm 3, a 3-month cumulative incidence of symptomatic VTE of 2.5% is expected in the control group. With an anticipated relative risk reduction of 50% in the intervention group, a sample size of 3,694 patients is necessary to achieve 80% power. Considering an interim analysis and a slightly stricter statistical significance level at the final analysis, a total of 3,748 patients is required, with 2,050 patients in each arm after accounting for a maximum dropout rate of approximately 9%, totalling 4,100 patients. Ethics: The study has been approved by the Medical Ethics Committee Leiden Den Haag Delft. All participants will provide informed consent.

Interventions

OTHERShort duration prophylaxis

Only during hospitalization: any type of LMWH or DOAC in a prophylactic dose as approved by the Dutch guideline "Antitrombotisch beleid". First dose of LMWH within 6-24h following surgery. First dose of apixaban within 12-24h following surgery. First dose of rivaroxaban 6-10h following surgery. First dose of dabigatran within 1-4h following surgery. The applied type of anticoagulant is according to the local standard use (same type as used for control group).

OTHERHigher intensity and longer duration prophylaxis

The use of any thrombocyte aggregation inhibitors should be discontinued 5 days prior to surgery. Day 0-2: any type of LMWH or DOAC in a prophylactic dose as approved by the Dutch guidelines. First dose of LMWH within 6-24h following surgery. First dose of apixaban within 12-24h following surgery. First dose of rivaroxaban 6-10h following surgery. First dose of dabigatran within 1-4h following surgery. The applied type of anticoagulant is according to the local standard use. Day 3: Apixaban 5mg b.i.d., continued until 6 weeks after surgery, conditional on the fact that no active bleeding of the surgical wound can be observed. In case of active bleeding, the prophylactic dose of thrombosis prophylaxis is continued. Thereafter, in case no active bleeding has been observed for 24 hours, the 5mg b.i.d. apixaban treatment will be started. The 5mg b.i.d. apixaban dose will be adjusted to 2.5mg b.i.d. in case of an impaired kidney function (defined as eGFR 10-30ml/min).

OTHERControl

4 weeks: any type of LMWH or DOAC in a prophylactic dose as approved by the Dutch guidelines. First dose of LMWH within 6-24h following surgery. First dose of apixaban within 12-24h following surgery. First dose of rivaroxaban 6-10h following surgery. First dose of dabigatran within 1-4h following surgery. The applied type of anticoagulant is according to the local standard use.

Sponsors

Leiden University Medical Center
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
PREVENTION
Masking
NONE

Masking description

Blinded endpoint adjudication

Intervention model description

This trial consists of 3 study arms. DISTINCT 1 (low VTE risk \<1.0%): randomized (2 arms) DISTINCT 2 (intermediate VTE risk 1.0%-1.5%): observational DISTINCT 3 (high VTE risk \>1.5%): randomized (2 arms) Participants will be allocated to a study arm based on their predicted VTE risk which is determined by the TRiP(plasty) score.

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Scheduled to undergo an elective total hip arthroplasty or total knee arthroplasty * Aged 18 years or older

Exclusion criteria

* Primary arthroplasty for fractures * Revision surgery * Hemiarthroplasty * Pregnancy * Current use of therapeutic anticoagulant therapy of any type (e.g., LMWH, DOAC, vitamin K antagonist) * A contraindication for either study drug * Insufficient knowledge of the Dutch language * Insufficient mental or physical ability to fulfil trial requirements * Active malignancy (i.e. cancer diagnosis within six months before surgery (excluding basal-cell or squamous-cell carcinoma of the skin), recently recurrent or progressive cancer or any cancer that required anti-cancer treatment within six months before surgery) * Patients using thrombocyte aggregation inhibitors that cannot be temporarily discontinued at the discretion of their treating physician

Design outcomes

Primary

MeasureTime frameDescription
Venous thromboembolic events90 days postoperativeNumber of VTEs in the first 3 months postoperative.
Major bleeding90 days postoperativeNumber of major bleeds in the first 3 months postoperative.

Secondary

MeasureTime frameDescription
Clinically relevant non major bleeding90 days postoperativeIncidence of clinically relevant non-major bleeding
Impact of events on QALY's90 days and 1 year postoperativeEstimated using the EQ-5D-5L
Healthcare costs90 days and 1 year postoperativeHealthcare costs will be estimated from patient questionnaires at 0, 2, 6, 13 and 52 weeks.
Prosthetic joint infections90 days postoperativeDefined according to the European Bone and Joint Infection Society (EBJIS) definition of periprosthetic joint infection described in Bone Joint J 2021;103-B(1):18-25.
Patient reported quality of life90 days and 1 year postoperativeMeasured using the EQ-5D-5L (scored as described in: Value in Health 2016, 19(4), 343-352.)
Patient reported outcome measures1 year postoperativeMeasured using Oxford Hip score or Ofxord Knee Score depending on the performed surgery. (score 0-100 with a higher score indicating a better outcome)
Myocardial infarction90 days postoperativeIncidence of myocardial infarction
Ischemic stroke90 days postoperativeIncidence of ischemic stroke
Death90 days postoperativeIncidence of death

Countries

Netherlands

Contacts

CONTACTBanne Nemeth, dr
B.Nemeth@lumc.nl+31715264037
CONTACTRuben Y Kok, drs
R.Y.Kok@lumc.nl+31715265633
PRINCIPAL_INVESTIGATORBanne Nemeth, dr

Leiden University Medical Center

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Sep 9, 2026