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Published on: March 23, 2018
Pharmacokinetics and safety of TP10, soluble complement receptor 1, in infants undergoing cardiopulmonary bypass
Jennifer S Li1, Stephen P Sanders, April E Perry
1Department of Pediatrics, Division of Cardiology, Duke University Medical Center, Durham, NC 27710, USA. li000001@mc.duke.edu
Insights
TP10, a complement inhibitor, was found safe in infants undergoing cardiopulmonary bypass (CPB). This study established an optimal dosing strategy to reduce CPB-induced complement activation and protect vascular function during cardiac surgery.
Area of Science:
- Cardiovascular Surgery
- Immunology
- Pharmacology
Background:
- Infant cardiopulmonary bypass (CPB) increases vascular permeability and multiorgan dysfunction, hindering successful cardiac surgery.
- Complement inhibition using TP10, a C3/C5 convertase inhibitor, has shown promise in mitigating post-CPB organ dysfunction in neonatal pigs.
Purpose of the Study:
- To evaluate the pharmacokinetics and safety of TP10 in infants undergoing CPB.
- To establish an optimal dosing strategy for TP10 to maintain therapeutic levels post-CPB.
Main Methods:
- A phase I/II open-label prospective trial involving 15 infants (age <1 year) undergoing CPB.
- TP10 was administered intravenously before CPB and added to the CPB circuit.
- Plasma levels of TP10 and C3a were monitored, along with clinical outcomes.
Main Results:
- All infants survived without adverse events attributed to TP10.
- TP10 plasma concentrations correlated with C3a levels and clinical course.
- An optimal dosing regimen was determined to maintain TP10 concentrations between 100-160 microg/mL for 24 hours post-CPB.
- TP10 administration was associated with lower C3a levels and reduced fluid/blood product administration post-CPB.
Conclusions:
- TP10 administration appears safe in infants undergoing CPB.
- Pharmacokinetic analysis provides an effective dosing strategy for TP10.
- TP10 may decrease CPB-induced complement activation and protect vascular function in infants.
- Results support advancing TP10 to a phase III trial for infants requiring CPB.
Background:
Increase in vascular permeability and multiorgan dysfunction after cardiopulmonary bypass (CPB) are barriers to successful cardiac surgery in infants. Complement inhibition with TP10, a C3/C5 convertase inhibitor (AVANT Immunotherapeutics, Needham, Mass), blunts post-CPB organ dysfunction in the neonatal pig. Methods and results The pharmacokinetics and safety of TP10 in infants (age <1 year, n = 15) undergoing CPB were examined in a phase I/II open-label prospective trial. TP10 (10 mg/kg) was given intravenously before CPB and also added (10 mg/100 mL prime volume) to the CPB circuit. TP10 plasma levels correlated with C3a levels and measures of clinical course. All infants survived. No adverse events were attributed to TP10. TP10 plasma concentration fell to < or =60 microg/mL 12 hours after CPB. A 2-compartment model was fit to the TP10 blood levels as a function of time. Based on this model, an initial dose of 10 mg/kg over 0.5 hours followed by 10 mg/kg over 23.5 hours is the most appropriate for maintaining TP10 concentration between 100 microg/mL and 160 microg/mL for 24 hours after CPB. C3a was lower 12 hours after CPB than before CPB and still lower 24 hours after CPB. TP10 concentration was inversely correlated with the 12-hour post-CPB to pre-CPB ratio of C3a (Spearman rho -0.76, P = -.016), and with total (rho -0.56, P =.047) and net (rho -0.85, P =.0016) fluid and blood product administration/kg >24 hours after CPB.
Conclusions:
TP10 administration to infants appears safe. Pharmacokinetic analysis generated an optimal dosing strategy to achieve effective TP10 levels for 24 hours after CPB. In the infant, TP10 appears to decrease CPB-induced complement activation and protect vascular function. These results support a phase III trial of TP10 in infants requiring CPB.
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