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Assessment of compatibility of rhIGF-1/rhIGFBP-3 with neonatal intravenous medications
Nazila Salamat-Miller1, Mark A Turner2, Amey Bandekar3
1Takeda, 200 Shire Way, Lexington, MA, 02421, USA. nazila.miller@takeda.com.
Insights
Recombinant human insulin-like growth factor-1/insulin-like growth factor-binding protein-3 (rhIGF-1/IGFBP-3) is compatible with 11 of 19 common neonatal medications. This compatibility assessment is crucial for safe intravenous administration in preterm infants, preventing potential complications.
Area of Science:
- Neonatal pharmacology
- Protein therapeutics
- Drug compatibility studies
Background:
- Recombinant human (rh)IGF-1/IGFBP-3 protein complex is under investigation for preventing prematurity complications.
- Continuous intravenous infusion is the proposed administration route for preterm infants.
Purpose of the Study:
- To evaluate the physical and chemical compatibility of rhIGF-1/IGFBP-3 with medications commonly used in preterm neonates.
- To assess the suitability of co-administering rhIGF-1/IGFBP-3 with other drugs through in vitro studies and risk analysis.
Main Methods:
- In vitro studies were performed to assess physical and chemical compatibility of rhIGF-1/IGFBP-3 with 19 test medications.
- Physical compatibility criteria included absence of color change, precipitation, turbidity, gas evolution, and significant pH/osmolality changes.
- Chemical compatibility was assessed using liquid chromatography, with a loss of ≥10% concentration defined as incompatibility.
Main Results:
- Physical compatibility was confirmed for 11 of 19 medications, including caffeine citrate, fentanyl, insulin, and vancomycin.
- Incompatibility was observed for 8 medications, primarily due to pH changes post-mixing.
- Small-molecule drug content remained unaffected, and risk analyses indicated a low probability of adverse events for compatible medications.
Conclusions:
- In vitro studies demonstrated that rhIGF-1/IGFBP-3 is physically compatible with a subset of commonly used neonatal medications.
- Case-by-case risk analyses are essential to determine the suitability of co-administration for each medication.
- These findings support the potential for safe co-administration of rhIGF-1/IGFBP-3 in clinical settings for preterm infants.
Background:
Recombinant human (rh)IGF-1/IGFBP-3 protein complex, administered as a continuous intravenous infusion in preterm infants, is being studied for the prevention of complications of prematurity.
Methods:
We conducted in vitro studies to evaluate the physical and chemical compatibility of rhIGF-1/IGFBP-3 with medications routinely administered to preterm neonates. In vitro mixing of rhIGF-1/IGFBP-3 drug product with small-molecule test medications plus corresponding controls was performed. Physical compatibility was defined as no color change, precipitation, turbidity, gas evolution, no clinically relevant change in pH/osmolality or loss in medication content. Chemical compatibility of small molecules was assessed using liquid chromatography (e.g., reverse-phase HPLC and ion chromatography), with incompatibility defined as loss of concentration of ≥ 10%. A risk evaluation was conducted for each medication based on in vitro compatibility data and potential for chemical modification.
Results:
In vitro physical compatibility was established for 11/19 medications: caffeine citrate, fentanyl, fluconazole, gentamicin, insulin, intravenous fat emulsion, midazolam, morphine sulfate, custom-mixed parenteral nutrition solution (with/without electrolytes), parenteral nutrition solution + intravenous fat emulsion, and vancomycin (dosed from a 5 mg/mL solution), but not for 8/19 medications: amikacin, ampicillin, dopamine, dobutamine, furosemide, meropenem, norepinephrine, and penicillin G, largely owing to changes in pH after mixing. Small-molecule compatibility was unaffected post-mixing, with no loss of small-molecule content. For physically compatible medications, risk analyses confirmed low probability and severity of a risk event.
Conclusion:
Co-administration of rhIGF-1/rhIGFBP-3 drug product with various medications was assessed by in vitro studies using case-by-case risk analyses to determine the suitability of the products for co-administration.
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