Monitoring Translation Activity of mRNA-Loaded Nanoparticles in Mice

  • Mol Pharm. 2018 Sep 4;15(9):3909-3919. doi: 10.1021/acs.molpharmaceut.8b00370.
Sebastian Rosigkeit Martin Meng  1 Christian Grunwitz  1 Patricia Gomes  1 Andreas Kreft Nina Hayduk Rosario Heck Geethanjali Pickert Kira Ziegler Yasmin Abassi Jasmin Röder Leonard Kaps Fulvia Vascotto  2 Tim Beissert  2 Sonja Witzel  2 Andreas Kuhn  1 Mustafa Diken  1  2 Detlef Schuppan  3 Ugur Sahin  1  2 Heinrich Haas  1 Ernesto Bockamp
Affiliations
  • 1. BioNTech RNA Pharmaceuticals GmbH , 55131 Mainz , Germany.
  • 2. TRON gGmbH , 55131 Mainz , Germany.
  • 3. Division of Gastroenterology, Beth Israel Deaconess Medical Center , Harvard Medical School , Boston , Massachusetts 02215 , United States.
Abstract

Targeting mRNA to eukaryotic cells is an emerging technology for basic research and provides broad applications in Cancer Immunotherapy, vaccine development, protein replacement, and in vivo genome editing. Although a plethora of nanoparticles for efficient mRNA delivery exists, in vivo mRNA targeting to specific organs, tissue compartments, and cells remains a major challenge. For this reason, methods for reporting the in vivo targeting specificity of different mRNA nanoparticle formats will be crucial. Here, we describe a straightforward method for monitoring the in vivo targeting efficiency of mRNA-loaded nanoparticles in mice. To achieve accurate mRNA delivery readouts, we loaded lipoplex nanoparticles with Cre-recombinase-encoding mRNA and injected these into commonly used Cre reporter mouse strains. Our results show that this approach provides readouts that accurately report the targeting efficacy of mRNA into organs, tissue structures, and single cells as a function of the used mRNA delivery system. The method described here establishes a versatile basis for determining in vivo mRNA targeting profiles and can be systematically applied for testing and improving mRNA packaging formats.

Keywords
detection method for mRNA nanoparticle delivery; in vivo mRNA delivery; mRNA nanoparticles; whole organ X-Gal staining.
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