mRNA-Encoded Antibodies: An Emerging Paradigm in Antiviral Protection
Антитела, кодируемые мРНК: возникающая парадигма в противовирусной защите
2026-02-13
SCID: 54.1/efkep4aj
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Moderna mRNA-1944lipid nanoparticlesmRNA construct designmRNA-encoded antibodiespassive immunizationpharmacokineticspreclinical antiviral studies
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Abstract (AI)
Antibodies are a cornerstone of antiviral immunity, yet conventional recombinant antibody production remains costly and time-consuming. mRNA technology, based on synthetic mRNA encapsulated in lipid nanoparticles, offers an alternative strategy by enabling direct in vivo expression of therapeutic antibodies. This review examines recent advances in the development of mRNA-encoded antibodies for antiviral applications. We outline key technological principles, including mRNA construct design, delivery platforms, and pharmacokinetic properties, and compare this approach with established protein-based antibody therapies. We then summarize preclinical studies targeting a broad spectrum of viral pathogens, which collectively demonstrate rapid antibody expression, high serum concentrations, and strong prophylactic and therapeutic efficacy in animal models. Finally, we discuss the translation of this platform toward clinical application, highlighted by the completion of Phase I evaluation of <i>Moderna</i> mRNA-1944 against chikungunya virus. Together, these studies position mRNA-encoded antibodies as a flexible and rapidly deployable platform for passive immunization against emerging viral threats.
Key Findings
1
Key technological considerations include mRNA construct design, delivery platforms, and pharmacokinetic properties that differentiate mRNA-encoded antibodies from protein-based therapies
2
Preclinical studies show strong prophylactic and therapeutic efficacy of mRNA-encoded antibodies against a broad spectrum of viral pathogens
3
Translation toward clinical application is underway, exemplified by completion of a Phase I evaluation of Moderna mRNA-1944 against chikungunya virus
4
mRNA technology (synthetic mRNA in lipid nanoparticles) enables direct in vivo expression of therapeutic antibodies as an alternative to recombinant antibody production
5
mRNA-encoded antibodies achieve rapid in vivo expression and high serum concentrations in preclinical animal models
6
mRNA-encoded antibodies present a flexible and rapidly deployable platform for passive immunization against emerging viral threats
Research Object
mRNA-encoded antibodies delivered via lipid nanoparticle-based mRNA platforms for in vivo expression
Research Subject
Developmental and translational properties including mRNA construct design, delivery platforms, pharmacokinetics, rapid in vivo expression, serum concentrations, and prophylactic/therapeutic efficacy of mRNA-encoded antibodies against viral pathogens
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2026-02-13
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