CClinicalTrials.gg
Status unknownNCT05391412EFISSUpdated Mar 28, 2023

Effect of Prophylactic Fibrinogen Concentrate In Scoliosis Surgery

A Phase 4 interventional study of Fibrinogen Concentrate Human in Fibrinogen, Spine Deformity and Coagulopathy, Consumption, sponsored by Brno University Hospital. Status unknown at 1 site in Czechia. Open to participants aged Up to 18 Years. Per ClinicalTrials.gov, last updated 2023-03-28.

Sponsored by Brno University Hospital · Phase 4, Interventional, and Prevention

The sponsor has not verified this record recently (last verified Mar 2023), so the status shown — last known as Recruiting — may be out of date.
Phase
Phase 4
Study type
Interventional
Enrollment
32
Allocation
Randomized
Ages
Up to 18 Years
Sex
All
01

Study summary

EFISS is a prospective, randomized, placebo-controlled trial testing the feasibility, safety and efficacy of prophylactic administration of fibrinogen in paediatric spinal surgery. The study is monocentric and will be conducted in University Hospital Brno, Czech Republic. This is a pilot study in which the primary objective will be to evaluate the feasibility of a clinical trial in 32 selected patients undergoing scoliosis surgery. Participants will be randomized into study groups in a 1:1 allocation ratio and followed up for 28 days after surgery. The expected duration of this clinical trial is 8 months.

Read the detailed description

Scoliosis is an abnormal lateral curvature of the spine. It is most commonly diagnosed in childhood and early adolescence. Surgical treatment is indicated for severe scoliosis to reduce back pain, neurological symptoms and prevent deterioration of respiratory and cardiovascular function. Scoliosis surgery is often accompanied by a large blood loss and blood transfusion is necessary in 30% to 60% of operated patients. The limited availability, high cost and risk of complications associated with the administration of transfusion products has led to efforts to introduce procedures that aim to reduce the magnitude of blood loss during surgery. Fibrinogen plays an important role in coagulum formation and bleeding arrest. Insufficient fibrinogen levels lead to impaired blood clotting and increased bleeding during major surgery. It has also been shown that patients with higher preoperative fibrinogen levels have less perioperative blood loss. Prophylactic administration of fibrinogen leads to a reduction in blood loss and the number of transfusions administered in some types of procedures. Prophylactic administration of fibrinogen at a dose of 30 mg/kg has been shown to be safe even in paediatric patients. Whether prophylactic fibrinogen administration before scoliosis surgery has an effect on the magnitude of blood loss is unclear. To plan a sufficiently large randomized trial to clarify the effect of prophylactic fibrinogen administration before elective scoliosis surgery on the magnitude of blood loss, and the need for transfusion administration, our team of investigators decided to organize this pilot study.

Prophylactic administration of fibrinogen has been widely described in various indications in recent decades. Among others, it is mainly cardiovascular surgery, where some authors refer the absence of the effect of fibrinogen administration on postoperative bleeding and some even the association with increased allogeneic blood product transfusion. On the contrary, one-hundred sixteen patients undergoing heart surgery with an expected cardiopulmonary bypass were part of the placebo-controlled double-blind study in which fibrinogen concentrate significantly reduced postoperative bleeding with a significant reduction in allogeneic blood products transfusions. Reduction of bleeding after coronary artery bypass graft without signs of postoperative hypercoagulability associated with preoperative infusion of fibrinogen concentrate is descibed. Fibrinogen administration has also been tested in double-blind placebo-controlled clinical trials associated with urologic surgery and gynaecological surgery procedures. Regarding skeletal surgery, the effect of prophylactically administered fibrinogen on postoperative bleeding has also been studied. Intraoperative administration of fibrinogen was successfully used to significantly decrease bleeding and transfusions in 30 children aged 6 months to 17 years undergoing craniosynostosis surgery.

Compared to these results, no differences in blood loss and transfusion requirements were found between treated and placebo groups in younger paediatric patients up to 25 months during craniofacial surgery. Clinical trials directly related to spinal surgery have also been described. This clinical study was performed in 30 adult patients undergoing lumbar surgery, in which 1g of fibrinogen dissolved in distilled water was injected near the surgical incision in the intervention group (n=15). Bleeding during and after surgery in the control group was significantly higher than in the intervention group (P\<0.05), and therefore the efficacy of fibrinogen was demonstrated in this indication. Efficacy and safety of preoperatively administrated fibrinogen concentrate (30 mg / kg to 2 g maximum) have also been confirmed in the paediatric population. A total of 102 children (12 - 18 years) with idiopathic scoliosis undergoing surgery were randomized to test and control groups (n=51), where fibrinogen infusion reduced median perioperative bleeding by approximately 155 ml compared to placebo. Fibrinogen administrated in the test group in this case did not reduce the amount of allogeneic blood product transfusion.

The clinical outcome of an individual participant in the prophylactic administration of fibrinogen prior to scoliosis surgery may or may not be improved. If effective, this administration will reduce blood loss during surgery and reduce the need for blood transfusions. In any case, participation in this study will improve knowledge about the prophylactic use of fibrinogen during scoliosis surgery, and all participants in this study will contribute to this socially beneficial knowledge. The same surgical procedure will be used in both study groups as is standard in the surgical treatment of spinal scoliosis. The method is generally well tolerated by patients and does not pose significant risks. The potential risks of participating in the EFISS study may include the rare development of adverse reactions, including fever, allergic and anaphylactic reactions, or thromboembolic events associated with the administration of investigational medicinal product.

02

Conditions studied

  • Fibrinogen
  • Spine Deformity
  • Coagulopathy, Consumption
  • Bleeding

Keywords

  • fibrinogen
  • scoliosis
  • coagulopathy
03

In context

Scoliosis

594 studies on the registry are indexed under Scoliosis; 139 are open to participants now.

This study's planned enrollment of 32 is below the median of 44 across 344 interventional studies indexed under Scoliosis.

Browse Scoliosis studies →

Lead sponsor

Brno University Hospital is the lead sponsor of 91 studies on the registry; 22 are open to participants now.

Counted across the registry records on this site, refreshed daily.

04

Who can participate

Ages eligible
Up to 18 Years
Sexes eligible
All
Accepts healthy volunteers
No

Inclusion criteria

Subjects will be eligible for the trial if they meet all of the following criteria:

  1. Age \< 18 years of age at the time of enrolment
  2. Elective scoliosis surgery
  3. Signed the relevant informed consent form (more in Chapter 10.1)
  4. Sexually active participants (≥ 15 years old) must agree to the use of following methods of contraception for the duration of this clinical trial:

    1. Women - proper use of a highly reliable method of contraception, i.e. combined hormonal contraception (oral, vaginal or transdermal form), gestagen hormonal contraceptives associated with ovulation inhibition (oral or injectable form) or sexual abstinence.
    2. Men - sexual abstinence or the use of an adequate contraceptive method (i.e. condom) in case of sexual intercourse.

Exclusion criteria

Exclusion Criteria:

Subjects will not be eligible for the trial if they meet any of the following criteria:

  1. Diagnosed congenital or acquired coagulopathy
  2. Use of anticoagulants with the exception of perioperative prophylactic administration of Low molecular weight heparin (LMWH) to prevent venous thromboembolism (VTE)
  3. Known hypersensitivity to the active substance or to any of the excipients of Investigational Medicinal Product (IMP)
  4. History of deep vein thrombosis or pulmonary embolism
  5. Pregnancy and lactation
05

Study design

Phase
Phase 4
Primary purpose
Prevention
Allocation
Randomized
Intervention model
Parallel assignment
Masking
Quadruple (Participant, Care provider, Investigator, Outcomes assessor)
Enrollment
32 participants (estimated)

Study arms

  • Experimental
    Fibrinogen group

    The fibrinogen concentrate (20-30mg/kg, max 2g) will be administered in 100ml (Aqua pro injection) intravenously to the patient.

    Drug: Fibrinogen Concentrate Human

  • No intervention
    Control group

    Patients in the control group will not receive any additional medication than standard of care.

Interventions

  • DrugFibrinogen Concentrate Human

    Patients in the intervention group will receive single administration of fibrinogen concentrate intravenously at a dose of 20-30 mg/kg (depending on body weight and clinical condition, according to SmPC). The medicinal product will be diluted in a 100 ml infusion bag and administered after induction of anaesthesia prior beginning of surgery. The infusion rate should not exceed approximately 5 ml per minute.

    Also known as: HAEMOCOMPLETTAN P

06

What researchers measure

Primary outcomes

  1. Adverse event

    The following primary endpoint will be monitored to evaluate the primary objective: Adverse event - Any untoward medical occurrence in a patient or clinical trial subject administered a medicinal product and which does not necessarily have a causal relationship with this treatment.

    Time frame: through study completion, an average of 6 months

  2. Adverse drug reaction

    The following primary endpoint will be monitored to evaluate the primary objective: Adverse drug reaction - All untoward and unintended responses to an investigational medicinal product related to any dose administered

    Time frame: through study completion, an average of 6 months

  3. Serious adverse event and reaction

    The following primary endpoint will be monitored to evaluate the primary objective: Serious adverse event and reaction - A serious adverse event/reaction is any untoward medical occurrence or effect that at any dose: * Results in death; * Is life-threatening; * Requires hospitalization or extension of existing hospitalization; * Results in persistent or significant disability or incapacity; * Is a congenital anomaly or birth defect

    Time frame: through study completion, an average of 6 months

  4. Unexpected adverse reaction

    The following primary endpoint will be monitored to evaluate the primary objective: Unexpected adverse reaction - Adverse reaction, the nature, severity, or outcome of which

    Time frame: through study completion, an average of 6 months

  5. Suspected unexpected serious adverse reaction

    The following primary endpoint will be monitored to evaluate the primary objective: Suspected unexpected serious adverse reaction - Any suspected adverse reaction related to the study treatment that is both serious and unexpected.

    Time frame: through study completion, an average of 6 months

Secondary outcomes

  1. Deep-vein thrombosis

    Incidence of adverse events and reactions according to following Adverse Events of Special Interest (AESI) ▪ Deep-vein thrombosis verified on duplex ultrasound imaging (YES/NO)

    Time frame: through study completion, an average of 6 months

  2. Pulmonary embolism

    Incidence of adverse events and reactions according to following Adverse Events of Special Interest (AESI) ▪ Pulmonary embolism confirmed on CT (YES/NO)

    Time frame: through study completion, an average of 6 months

  3. Infection or healing disorder

    Incidence of adverse events and reactions according to following Adverse Events of Special Interest (AESI) ▪ Infection or healing disorder requiring re-surgery and / or initiation of antibiotic therapy (YES/NO)

    Time frame: through study completion, an average of 6 months

  4. Length of stay

    ▪ Length of stay (LOS) - day of admission - day of discharge will be counted as 1 day

    Time frame: through study completion, an average of 6 months

  5. ICU length of stay

    ▪ ICU length of stay (ICU LOS) - day of admission - day of discharge will be counted as 1 day

    Time frame: through study completion, an average of 6 months

  6. 28-day mortality

    ▪ 28-day mortality (number of patients who are not alive 28 days after randomization)

    Time frame: at day 28 of study

  7. Age

    Comparison of demographic characteristics between study groups ▪ Age (years)

    Time frame: at the start of the study

  8. Sex

    Comparison of demographic characteristics between study groups ▪ Sex (male, female)

    Time frame: at the start of study

  9. Weight

    Comparison of demographic characteristics between study groups ▪ Weight (kilograms)

    Time frame: at the start of study

  10. Haemoglobin

    Comparison of laboratory values of selected haematological parameters between study groups ▪ Haemoglobin (g/l; before, at the end of surgery and 24 hours after surgery)

    Time frame: before surgery, immediately after surgery and 24 hours after surgery

  11. Haematocrit groups

    Comparison of laboratory values of selected haematological parameters between study ▪ Haematocrit (%; before, at the end of surgery and 24 hours after surgery)

    Time frame: before surgery, immediately after surgery and 24 hours after surgery

  12. Platelet count

    Comparison of laboratory values of selected haematological parameters between study groups ▪ Platelet count (n/l; before, at the end of surgery and 24 hours after surgery)

    Time frame: before surgery, immediately after surgery and 24 hours after surgery

  13. Fibrinogen

    Comparison of laboratory values of selected haematological parameters between study groups ▪ Fibrinogen (g/l; before, at the end of surgery and 24 hours after surgery)

    Time frame: before surgery, immediately after surgery and 24 hours after surgery

  14. Activated parcial thromboplastin time (aPTT)

    Comparison of laboratory values of selected haematological parameters between study groups ▪ aPTT (s; before, at the end of surgery and 24 hours after surgery)

    Time frame: before surgery, immediately after surgery and 24 hours after surgery

  15. Prothrombin time (PT)

    Comparison of laboratory values of selected haematological parameters between study groups ▪ PT (s; before, at the end of surgery and 24 hours after surgery)

    Time frame: before surgery, immediately after surgery and 24 hours after surgery

  16. Thrombin time (TT)

    Comparison of laboratory values of selected haematological parameters between study groups ▪ TT (s; before, at the end of surgery and 24 hours after surgery)

    Time frame: before surgery, immediately after surgery and 24 hours after surgery

  17. Total volume of blood loss

    Comparison of blood loss level and its compensation between study groups ▪ Total volume of blood loss (ml; during surgery and in the 24-hour postoperative period)

    Time frame: during surgery and within the 24-hour postoperative period

  18. Number of the surgical segments of the spine

    Comparison of blood loss level and its compensation between study groups ▪ Number of the surgical segments of the spine (n; postoperatively)

    Time frame: immediately after surgery

  19. Volume of blood loss for the surgical segment of the spine

    Comparison of blood loss level and its compensation between study groups ▪ Volume of blood loss for the surgical segment of the spine (ml; during surgery and in the 24-hour postoperative period)

    Time frame: during surgery and within the 24-hour postoperative period

  20. Urinary output

    Comparison of blood loss level and its compensation between study groups ▪ Urinary output (ml; in the 24-hour postoperative period)

    Time frame: within the 24-hour postoperative period

  21. Red blood cells (RBC) consumption - transfusion unit

    Comparison of blood loss level and its compensation between study groups ▪ Red blood cells (RBC) consumption (transfusion units consumption during surgery and in the 24-hour postoperative period)

    Time frame: during surgery and within the 24-hour postoperative period

  22. Red blood cells (RBC) consumption - volume

    Comparison of blood loss level and its compensation between study groups ▪ Red blood cells (RBC) consumption (total volume of infusion during surgery and in the 24-hour postoperative period)

    Time frame: during surgery and within the 24-hour postoperative period

  23. Thrombocytes of apheresis (TAD) consumption - transfusion unit

    Comparison of blood loss level and its compensation between study groups ▪ Thrombocytes of apheresis (TAD) consumption (transfusion units consumption during surgery and in the 24-hour postoperative period)

    Time frame: during surgery and within the 24-hour postoperative period

  24. Thrombocytes of apheresis (TAD) consumption - volume

    Comparison of blood loss level and its compensation between study groups ▪ Thrombocytes of apheresis (TAD) consumption (total volume of infusion during surgery and in the 24-hour postoperative period)

    Time frame: during surgery and within the 24-hour postoperative period

  25. Fresh frozen plasma (FFP) consumption - transfusion unit

    Comparison of blood loss level and its compensation between study groups ▪ Fresh frozen plasma (FFP) consumption (transfusion units consumption during surgery and in the 24-hour postoperative period)

    Time frame: during surgery and within the 24-hour postoperative period

  26. Fresh frozen plasma (FFP) consumption - volume

    Comparison of blood loss level and its compensation between study groups ▪ TFresh frozen plasma (FFP) consumption (total volume of infusion during surgery and in the 24-hour postoperative period)

    Time frame: during surgery and within the 24-hour postoperative period

  27. Fibrinogen concentrate consumption

    Comparison of blood loss level and its compensation between study groups ▪ Fibrinogen concentrate consumption (consumption in grams during surgery and in the 24-hour postoperative period)

    Time frame: during surgery and within the 24-hour postoperative period

  28. Prothrombin complex concentrate (PCC) consumption

    Comparison of blood loss level and its compensation between study groups ▪ Prothrombin complex concentrate (PCC) consumption (consumption in units during surgery and in the 24-hour postoperative period)

    Time frame: during surgery and within the 24-hour postoperative period

  29. Blood derivative corresponding to Fresh frozen plasma (Octaplas) consumption

    Comparison of blood loss level and its compensation between study groups ▪ Blood derivative corresponding to Fresh frozen plasma (Octaplas) consumption (consumption in units during surgery and in the 24-hour postoperative period)

    Time frame: during surgery and within the 24-hour postoperative period

  30. Crystalloid solutions consumption

    Comparison of blood loss level and its compensation between study groups ▪ Crystalloid solutions consumption (total volume of infusion during surgery and in the 24-hour postoperative period)

    Time frame: during surgery and within the 24-hour postoperative period

  31. Colloid solutions consumption

    Comparison of blood loss level and its compensation between study groups ▪ Colloid solutions consumption (total volume of infusion during surgery and in the 24-hour postoperative period)

    Time frame: during surgery and within the 24-hour postoperative period

  32. Number of patients receiving transfusion products

    Comparison of blood loss level and its compensation between study groups ▪ Number of patients receiving transfusion products

    Time frame: at hospital discharge

  33. Number of patients receiving blood derivatives

    Comparison of blood loss level and its compensation between study groups ▪ Number of patients receiving blood derivatives

    Time frame: at hospital discharge

  34. Rate of recruitment of eligible patients who were approached for consent to participate

    Feasibility assessment ▪ Rate of recruitment of eligible patients who were approached for consent to participate (%; feasibility criterion \>75% enrolled participants)

    Time frame: through study completion, an average of 6 months

  35. Percentage of missing outcome and clinical data

    Feasibility assessment ▪ Percentage of missing outcome and clinical data (\< 10% missing outcome data including ICU and hospital length of stay (LOS) and survival; \< 10% missing clinical data obtained from clinical medical notes and electronic patient records)

    Time frame: through study completion, an average of 6 months

07

Study locations

1 of 1 sites recruiting
  • University Hospital Brno
    Brno, 625 00, Czechia
    • Roman Gal, M.D., Ph.D. · Contact · gal.roman@fnbrno.cz · 532233850
    • Ondrej Hrdy, M.D. · Contact · hrdy.ondrej@fnbrno.cz · 532232305
    • Roman Gal, M.D., Ph.D. · Principal investigator
    • Ondrej Hrdy, M.D. · Sub investigator
    Recruiting
08

References and documents

Individual participant data

Plan to share: No

No publications or documents are linked to this record.

09

Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on Mar 28, 2023, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
10

Registry details

Key details

Study ID
NCT05391412
Lead sponsor
Brno University Hospital
Responsible party
Ondrej Hrdy (Principal Investigator, Brno University Hospital) — Principal investigator
First posted
May 26, 2022
Start date
Jun 6, 2022
Primary completion
Jul 30, 2023 (estimated)
Completion
Sep 30, 2023 (estimated)
Last update
Mar 28, 2023

Study contacts

Roman Gal, prof.
Contact
gal.roman@fnbrno.cz
532233850 ext. 00420
Ondrej Hrdy, MD
Contact
hrdy.ondrej@fnbrno.cz
532232305 ext. 00420
Roman Gal, M.D., PhD.
principal investigator · Masaryk University Brno and University Hospital

Oversight

Data monitoring committee
Yes
FDA-regulated drug
No
FDA-regulated device
No
View the source record on ClinicalTrials.gov ↗

Not currently enrolling

This study is status unknown, as verified in Mar 2023. You cannot join it, but the record below documents what was studied.

Follow this study

Get an email when the registry record changes — status, dates, results — or when someone posts here.

Sign in to follow

Discussion

Questions and observations about this study, from anyone following it. Not medical advice, and not a channel to the study team — their contact details are on the registry record.

Sign in to join the discussion. Reading takes no account; posting does. You choose a display name, and a pseudonym is the default.

Nothing here yet. If you are running this trial, taking part in it, or weighing whether to, this is the place to say so.

Start the discussion