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Updated: Feb 17, 2026

Testing the In Vitro and In Vivo Efficiency of mRNA-Lipid Nanoparticles Formulated by Microfluidic Mixing
Published on: January 20, 2023
Safety Evaluation of Lipid Nanoparticle-Formulated Modified mRNA in the Sprague-Dawley Rat and Cynomolgus Monkey
Maja Sedic1, Joseph J Senn1, Andy Lynn1
11 Moderna Therapeutics, Cambridge, MA.
Abstract:
The pharmacology, pharmacokinetics, and safety of modified mRNA formulated in lipid nanoparticles (LNPs) were evaluated after repeat intravenous infusion to rats and monkeys. In both species, modified mRNA encoding the protein for human erythropoietin (hEPO) had predictable and consistent pharmacologic and toxicologic effects. Pharmacokinetic analysis conducted following the first dose showed that measured hEPO levels were maximal at 6 hours after the end of intravenous infusion and in excess of 100-fold the anticipated efficacious exposure (17.6 ng/ml) at the highest dose tested.24 hEPO was pharmacologically active in both the rat and the monkey, as indicated by a significant increase in red blood cell mass parameters. The primary safety-related findings were caused by the exaggerated pharmacology of hEPO and included increased hematopoiesis in the liver, spleen, and bone marrow (rats) and minimal hemorrhage in the heart (monkeys). Additional primary safety-related findings in the rat included mildly increased white blood cell counts, changes in the coagulation parameters at all doses, as well as liver injury and release of interferon γ-inducible protein 10 in high-dose groups only. In the monkey, as seen with the parenteral administration of cationic LNPs, splenic necrosis and lymphocyte depletion were observed, accompanied with mild and reversible complement activation. These findings defined a well-tolerated dose level above the anticipated efficacious dose. Overall, these combined studies indicate that LNP-formulated modified mRNA can be administered by intravenous infusion in 2 toxicologically relevant test species and generate supratherapeutic levels of protein (hEPO) in vivo.
Insights
Modified mRNA in lipid nanoparticles (LNPs) showed predictable effects in rats and monkeys, producing high levels of human erythropoietin (hEPO) protein. Safety findings were linked to exaggerated hEPO pharmacology, defining a well-tolerated dose.
Area of Science:
- Biotechnology
- Pharmacology
- Toxicology
Background:
- Modified messenger RNA (mRNA) formulated in lipid nanoparticles (LNPs) is a novel therapeutic modality.
- Understanding the in vivo behavior of LNP-formulated mRNA is crucial for clinical translation.
Purpose of the Study:
- To evaluate the pharmacology, pharmacokinetics, and safety of modified mRNA encoding human erythropoietin (hEPO) after repeat intravenous infusion in rats and monkeys.
- To determine a well-tolerated dose level for LNP-formulated modified mRNA.
Main Methods:
- Repeat intravenous infusions of modified mRNA encoding hEPO formulated in LNPs were administered to rats and monkeys.
- Pharmacology, pharmacokinetics, and toxicology were assessed.
- Pharmacokinetic analysis measured hEPO levels and protein activity.
Main Results:
- hEPO levels were maximal at 6 hours post-infusion, exceeding efficacious exposure by over 100-fold.
- hEPO was pharmacologically active, increasing red blood cell mass parameters in both species.
- Safety findings were primarily due to exaggerated hEPO pharmacology, including increased hematopoiesis and mild hemorrhage.
- Additional findings in rats included altered white blood cell counts and coagulation parameters, liver injury, and interferon-gamma release.
- Monkeys showed splenic necrosis, lymphocyte depletion, and complement activation.
Conclusions:
- LNP-formulated modified mRNA can be safely administered via intravenous infusion in rats and monkeys.
- Supratherapeutic levels of hEPO protein were generated in vivo.
- A well-tolerated dose level was identified above the anticipated efficacious dose.

