Patients with cancer are prone to have blood clots, which are usually treated with blood thinners. The main complication of blood thinners is bleeding. This is especially a concern when the number of platelets in the blood is lower than 50,000 per microliter. The role of platelets is to stop bleeding, so when the number of platelets is low, patients are at a higher risk of bleeding. Cancer patients are prone to have lower platelet numbers due to cancer therapies and/or cancer itself. It is not clear what the best treatment is for cancer patients who need blood thinners for a blood clot but have low platelet counts. The investigators plan to do a small study called a pilot study to help plan for a larger study in such patients. In the pilot study, investigators will include 50 patients with cancer, low platelet counts, and a blood clot diagnosed within 2 weeks. Patients will be randomly assigned to one of the two treatment strategies: the full dose of blood thinners along with platelet transfusion or a reduced dose of blood thinners without platelet transfusion. The investigators will follow all patients for 30 days. If this pilot study is successful, it will help lead to a much larger trial, which will provide important information on the best treatment strategy for these patients.
The current proposal is for the pilot trial to assess feasibility of a full-scale RCT. To determine feasibility, the pilot and the full-scale trials will use the same recruitment strategy, inclusion/exclusion criteria, interventions, follow up duration, and measurement/adjudication of clinical outcomes. If the pilot trial finds that the full-scale trial is feasible, and no changes to the study design are indicated, the data from the pilot trial will be included in the full-scale trial, which will be efficient and reduce the recruitment time and costs of the full-scale trial. The START trial is a multi-centre RCT with prospective, open-label, blind-evaluator (PROBE) design. Adult patients with acute cancer-associated thrombosis (diagnosed within 14 days) and thrombocytopenia (platelet count \< 50,000/µL) secondary to cancer therapy or cancer itself will be randomized 1:1 to modified dose LMWH or higher dose LMWH with platelet transfusion support, to evaluate the superiority of a modified dose LMWH strategy in reducing clinically relevant bleeding events compared to full dose LMWH with platelet transfusion. The PROBE design is an efficient use of research funds while maintaining the benefits of randomization and blinded evaluation of endpoints.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
NONE
Enrollment
50
I. Platelet count 25-50,000/µL: 0.5mg/kg subcutaneously twice daily II. Platelet count \< 25,000/µL: hold anticoagulation
I. Platelet count 25-50,000/µL: 100 IU/kg subcutaneously daily for the first month of an acute VTE then 75 U/kg II. Platelet count \< 25,000/µL: hold anticoagulation
I. Platelet count 25-50,000/µL: 87.5 units/kg subcutaneously daily II. Platelet count \< 25,000/µL: hold anticoagulation
University of Alberta
Edmonton, Alberta, Canada
WITHDRAWNThe Ottawa Hospital
Ottawa, Ontario, Canada
RECRUITINGNiagara Health - St. Catharines Site
Saint Catharines, Ontario, Canada
RECRUITINGWindsor Regional Hospital
Windsor, Ontario, Canada
RECRUITINGFeasibility - The average number of patients recruited per month
The average number of patients recruited per month
Time frame: 18 months
Feasibility - Proportion of eligible patients who provide consent
Number of consenting participants from the number of eligible patients
Time frame: 18 months
Feasibility - Reasons for non-participation in eligible patients
Reasons for non-participation in eligible patients
Time frame: 18 months
Feasibility - Number of patients who complete study procedures by adhering to protocol
Number of participants adhering to the protocol (such as anticoagulation, transfusion, platelet count monitoring according to the protocol)
Time frame: 18 months
Feasibility - Rates of withdrawal
Number of participants withdrawing from study
Time frame: 18 months
Feasibility - Loss to follow-up
Number of participants lost to follow-up
Time frame: 18 months
Feasibility - Crossover between treatment arms
Number of participants crossing over between treatment arms
Time frame: 18 months
Clinical Outcome - Rate of clinically relevant bleeding (composite of major bleeding and clinically relevant non-major bleeding events)
Rate of clinically relevant bleeding (composite of major bleeding and clinically relevant non-major bleeding events)
Time frame: 18 months
Clinical Outcome - Rate of symptomatic or incidentally detected recurrent or new major VTE
Rate of symptomatic or incidentally detected recurrent or new major VTE
Time frame: 18 months
Clinical Outcome - PE-related death
PE-related death
Time frame: 18 months
Clinical Outcome - Composite of recurrent VTE and major bleeding events
Composite of recurrent VTE and major bleeding events
Time frame: 18 months
Clinical Outcome - Non-major VTE (distal upper or lower extremity DVT, superficial upper or lower extremity vein thrombosis)
Number of non-major VTE (distal upper or lower extremity DVT, superficial upper or lower extremity vein thrombosis)
Time frame: 18 months
Clinical Outcome - Duration of thrombocytopenia (days of platelet count < 50,000/uL) per patient
Duration of thrombocytopenia (days of platelet count \< 50,000/uL) per patient
Time frame: 18 months
Clinical Outcome - Number of transfused units and adverse platelet transfusion reactions
Number of transfused units and adverse platelet transfusion reactions
Time frame: 18 months
Clinical Outcome - Overall mortality
Overall mortality
Time frame: 18 months
Clinical Outcome - Health-related quality of life using EuroQoL-EQ-5D-5L questionnaire
Health-related quality of life using EuroQoL-EQ-5D-5L questionnaire
Time frame: 18 months
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