Annually over 7000 Australians are treated for severe trauma. Haemorrhage secondary to severe trauma is a major cause of potentially preventable death and poor outcomes in Australian adults. Severe trauma may trigger changes in blood clotting mechanisms and factor levels leading to inhibition of clot formation and reduced clot strength. This results in the inability of the severely injured trauma patient to form adequate clots to help stop bleeding. There is good evidence to suggest the loss of clotting factors during haemorrhage is associated with worse outcomes and it is thought the early replacement of these factors may reduce bleeding and improve patient outcomes. Fibrinogen is a key clotting factor that helps bind clots together and early fibrinogen replacement may improve outcomes. Currently fibrinogen is replaced using cryoprecipitate, a blood product made from blood donated by healthy donors which is a precious resource. It can take a significant amount of time to administer as it is frozen and stored in the blood bank. Timely administration of cryoprecipitate is difficult as it requires thawing prior to transfusion. The large doses of cryoprecipitate used in traumatic haemorrhage can put strain on local blood banks in supplying requested units in a timely manner. Additionally, the widely dispersed population of Australia introduces logistic challenges to the maintenance of adequate cryoprecipitate stocks to individual hospital blood banks, especially in remote regions. However, cryoprecipitate contains a number of other coagulation factors (not just fibrinogen) that may be instrumental in clot formation and resistance to fibrinolysis. Fibrinogen concentrate is an alternative product used to assist in blood clotting. It is a dry powder form of fibrinogen and can be reconstituted at the bedside and given quickly. The use of a fibrinogen factor concentrate with a long shelf life that is easy to use has significant implications for both large urban metropolitan areas and remote isolated communities. The timing and mode of fibrinogen replacement in traumatic haemorrhage has implications for patient outcomes, blood product availability, costs and the national blood supply. Despite the importance of fibrinogen replacement in traumatic haemorrhage, there have been no clinical trials powered for clinical outcomes directly comparing fibrinogen concentrate and cryoprecipitate. FEISTY II will evaluate the efficacy, safety and cost-effectiveness of Fibrinogen Concentrate vs Cryoprecipitate in trauma patients with major haemorrhage. FEISTY II is a phase III randomised trial which will enrol 850 patients from Australian and New Zealand major trauma centres, with a primary patient outcome of days alive out of hospital at day 90 after injury. Severely injured trauma patients who require blood transfusion and have evidence of low fibrinogen levels will be randomised to receive either fibrinogen concentrate or standard care with cryoprecipitate
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
TRIPLE
Enrollment
900
3g Fibrinogen Concentrate
10U WB or 4U Apheresis Cryoprecipitate
John Hunter Hospital
Newcastle, New South Wales, Australia
St Vincent's Hospital
Sydney, New South Wales, Australia
Royal Prince Alfred Hospital
Sydney, New South Wales, Australia
Royal North Shore Hospital
Sydney, New South Wales, Australia
Westmead Hospital
Sydney, New South Wales, Australia
Liverpool Hospital
Sydney, New South Wales, Australia
Royal Darwin Hospital
Darwin, Northern Territory, Australia
Royal Brisbane and Women's Hospital
Brisbane, Queensland, Australia
Princess Alexandra Hospital
Brisbane, Queensland, Australia
Cairns Hospital
Cairns, Queensland, Australia
...and 14 more locations
Days Alive and Out of Hospital at 90 Days
DAOH 90
Time frame: 90 Days
Number RBC Units at 24 hours
Red Blood Cells
Time frame: 24 hours
All cause mortality at 90 days
Mortality at Day 90
Time frame: 90 days
All cause mortality at 6 and 24 hours
Mortality at 6 and 24 hours
Time frame: 24 hours
Death from haemorrhage at 6 and 24 hours
Haemorrhage as cause of death at 6 and 24 hours
Time frame: 24 hours
Ventilator free days up to day 28
VFD 28 days
Time frame: 28 days
Symptomatic thromboembolic events to 28 days
Venous and Arterial Thrombotic events
Time frame: 28 days
Quality of life at 3, 6 and 12 months
EQ5D-5L European Quality of Life 5 Dimensions 5 Levels Scored 0-100, where 0 = Worst QOL and 100 = Best QOL
Time frame: 12 Months
Health and disability at 3, 6 and 12 months
WHODAS 2.0 World Health Organisation Disability and Assessment Schedule 2.0 Scored 0-100, where 0 = No Disability and 100 = Full Disbility
Time frame: 12 months
Functional outcome (Patients with TBI) at 12 months
GOSE Glasgow Outcome Scale Extended Scored 1-8, where 1 = Death and 8 = Upper Good Recovery
Time frame: 12 months
Organ failure assessment
Denver MOF Score Denver Multiple Organ Failure Score Scored 0-12, where 0 = No Organ Failure and 12 = Severe MOF
Time frame: 28 days
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