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Effects of Ferinject® on Anemia and Transfusion Rates After Cardiac Surgery

Ferric Carboxymaltose (Ferinject®) Administered After Cardiac Surgery: (FCAACS) Effects On Correction Of Anemia And Transfusion Rates: A Prospective Randomized Controlled Trial

Status
Completed
Phases
Phase 4
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT03759964
Acronym
FCAACS
Enrollment
194
Registered
2018-11-30
Start date
2018-12-15
Completion date
2021-01-02
Last updated
2021-10-11

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

Conditions

Anemia, Iron Deficiency

Keywords

cardiac surgery, ferric carboxymaltose, anemia, transfusion

Brief summary

Several studies using new forms of intravenous iron showed that it is effective in treating perioperative anemia in orthopedic and digestive surgery. Effects of ferric carboxymaltose have not been assessed in the settings of cardiac surgery. This study will compare ferric carboxymaltose to placebo in a randomized trial design where ferric carboxymaltose / placebo will be administered in the postoperative period (Day 1) after cardiac surgery. A total sample size of 200 patients (100 per group) will be needed. The FCAACS trial will assess the impact of administering intravenous iron (Ferric carboxymaltose) after cardiac surgery with cardiopulmonary bypass (CPB) on the: * incidence of postoperative anemia * incidence of postoperative transfusion * incidence of complications related to intravenous iron All the surgeries will be performed by the same surgical team and follow-up will be ensured by the same Cardiac Surgery Unit (CSU) team according to department's standard protocols. Participants in the Ferric carboxymaltose group will receive 1g of Ferric carboxymaltose diluted in 100 mL of IV isotonic serum saline, whereas participants in the Placebo group will receive 100 mL of IV Placebo

Detailed description

Anemia is very common in the perioperative of major surgery affecting about 30% of patients preoperatively and more than 80% postoperatively. Anemia is an independent risk factor of morbi-mortality. Iron deficiency is the first cause of anemia. Physiological reserves of iron are not important, and the correction of anemia after hemorrhage is very slow. Hence, it takes 90 days to return to 80% of the basic Hb level after a blood donation of 500ml, and more than 150 days (almost 6 months), if one is deficient in iron. This is why iron is used to correct anemia that occurs after bleeding. There are two routes for iron administration: oral and intravenous. Gastrointestinal absorption of iron is limited to 10-15 mg/d even when ingested doses are increased. This absorption is decreased in the presence of an inflammatory state, which is very common in the postoperative period. The intravenous route allows the delivery of significantly higher doses of iron (up to 1000 mg in 1 infusion), without any limitation related to absorption. This is why it is interesting to administer it perioperatively where the expected delays are short. There are currently new intravenous iron formulations that have two advantages: a shorter intravenous injection time and a higher maximum injectable dose per infusion. These new forms are risk-free, with no serious allergy described so far in the literature. Several studies using new forms of intravenous iron showed that it is effective in treating perioperative anemia in orthopedic and digestive surgery. Effects of ferric carboxymaltose have not been assessed in the settings of cardiac surgery. To assess the impact of ferric carboxymaltose in cardiac surgery, it will be compared to placebo in a randomized trial design, where ferric carboxymaltose / placebo will be administered in the postoperative period. Ferric carboxymaltose / placebo will be an add-on to the current treatment of patients in the postoperative period of cardiac surgery, the group that will be receiving placebo reflects the current management of the patients in these settings. The FCAACS trial will assess the impact of administering intravenous iron (Ferric carboxymaltose) after cardiac surgery with cardiopulmonary bypass (CPB) on the: * incidence of postoperative anemia * incidence of postoperative transfusion * incidence of complications related to intravenous iron FCAACS will be a parallel group randomized trial, with a 2-group design and no crossover. Allocation ratio will be 1/1, in an equivalence framework. A total sample size of 200 patients (100 per group) will be needed.

Interventions

DRUGFerric carboxymaltose

1g of Ferric carboxymaltose diluted in 100 mL of IV isotonic serum saline at day 1 following surgery

DRUGPlacebo

100 mL of IV isotonic serum saline at day 1 following surgery

Sponsors

Vifor Pharma
CollaboratorINDUSTRY
Saint-Joseph University
CollaboratorOTHER
St Joseph University, Beirut, Lebanon
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
PREVENTION
Masking
TRIPLE (Subject, Caregiver, Outcomes Assessor)

Intervention model description

FCAACS will be a parallel group randomized trial, with a 2-group design and no crossover. Allocation ratio will be 1/1, in an equivalence framework.

Eligibility

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

Inclusion criteria

* Adult patients admitted for elective cardiac surgery under cardiopulmonary bypass, with no

Exclusion criteria

, and having signed an informed consent, will be enrolled in the study.

Design outcomes

Primary

MeasureTime frameDescription
Change in level of hemoglobin (g/dL) from preoperative until day 30 after surgeryPreoperative (Day -2), Day 0 [CSU admission], Day 2 [CSU discharge], Day 5 [hospital discharge], Day 30mean ± standard deviation, measured at 5 timepoints

Secondary

MeasureTime frameDescription
change in Hematocrit from preoperative until day 30 after surgery (final value)Preoperative (Day -2), Day 0 [CSU admission], Day 2 [CSU discharge], Day 5 [hospital discharge], Day 30mean ± standard deviation, measured at 5 timepoints
Change in Reticulocytes count from preoperative until day 30 after surgery (final value)Preoperative (Day -2), Day 2 [CSU discharge], Day 5 [hospital discharge], Day 30measured at 4 timepoints
Change in Percentage of transferrin from preoperative until day 30 after surgery (final value)Preoperative (Day -2), Day 1 [CSU, before study drug], Day 5 [hospital discharge], Day 30measured at 4 timepoints
Change in Ferritin from preoperative until day 30 after surgery (final value)Preoperative (Day -2), Day 1 [CSU, before study drug], Day 5 [hospital discharge], Day 30measured at 4 timepoints
Number of red cell packs transfused (final value)Day 1, Day 5,and Day 30mean ± standard deviation, measured at 3 timepoints

Other

MeasureTime frameDescription
Time to tracheal tube removal, measured in hours (final value)From Hour 0 until Hour 6 (on average, until tracheal tube removal)mean ± standard deviation
Length of stay in the CSU measured in DaysFrom Day 0 [CSU admission] until Day 2 [on overage, CSU discharge]median and interquartile range
Surgical exploration for bleeding (Boolean, proportion)From Day 0 [CSU admission] until Day 2 [on overage, CSU discharge]Proportion, with 95% confidence interval
Complications related to administration of Ferric carboxymaltose (proportion)From Day 0 until Day 30Proportion, with 95% confidence interval
Total bleeding (mL) until drain removal (final value)From Day 0 until Day 2mean ± standard deviation

Countries

Lebanon

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 12, 2026