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June 24, 2020Science Advances352 citationsOpen Access

Impact of mRNA chemistry and manufacturing process on innate immune activation

JNJennifer NelsonESElizabeth W. SorensenSMShrutika Mintri

Key Points

  • To determine the relative contributions of uridine chemical modification and manufacturing purity on cellular innate immune activation and protein expression.
  • Synthesized mRNA encoding human erythropoietin containing either canonical uridine or N1-methyl-pseudouridine (1mΨ).
  • Compared standard mRNA synthesis yielding double-stranded RNA (dsRNA) impurities against a modified process yielding highly purified mRNA across multiple cell cultures and in vivo models.
  • mRNA containing 1mΨ synthesized via the modified purification process elicited the lowest stimulation of innate immune endpoints.
  • mRNA containing canonical uridine triggered immune activation regardless of whether it was produced by the standard or modified manufacturing process.

Abstract

Messenger RNA (mRNA) represents an attractive therapeutic modality for potentially a wide range of clinical indications but requires uridine chemistry modification and/or tuning of the production process to prevent activation of cellular innate immune sensors and a concomitant reduction in protein expression. To decipher the relative contributions of these factors on immune activation, here, we compared, in multiple cell and in vivo models, mRNA that encodes human erythropoietin incorporating either canonical uridine or N1-methyl-pseudouridine (1mΨ), synthesized by either a standard process shown to have double-stranded RNA (dsRNA) impurities or a modified process that yields a highly purified mRNA preparation. Our data demonstrate that the lowest stimulation of immune endpoints was with 1mΨ made by the modified process, while mRNA containing canonical uridine was immunostimulatory regardless of process. These findings confirm that uridine modification and the reduction of dsRNA impurities are both necessary and sufficient at controlling the immune-activating profile of therapeutic mRNA.

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Cite This Study

Nelson et al. (2020) studied this question.

synapsesocial.com/papers/69d821895c3030ff03d19712https://doi.org/10.1126/sciadv.aaz6893
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