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May 19, 2021Nature Biotechnology389 citationsOpen Access

In vivo adenine base editing of PCSK9 in macaques reduces LDL cholesterol levels

TRTanja RothganglMDMelissa K. DennisPLPaulo J.C. Lin

Structured PICO

Does lipid nanoparticle-based delivery of adenine base editors targeting PCSK9 reduce LDL cholesterol levels in mice and macaques?

P
Population
Mice and cynomolgus macaques
I
Intervention
Lipid nanoparticle-based delivery of mRNA encoding an adenine base editor (ABE) and a single-guide RNA targeting PCSK9
O
Outcome
Reduction of blood low-density lipoprotein (LDL) levels and PCSK9 editing efficacy in the liversurrogate

In vivo adenine base editing of PCSK9 successfully reduces LDL cholesterol levels in mice and macaques, though humoral immunity may limit the efficacy of re-dosing.

Limitations

  • Re-dosing in macaques did not increase editing, possibly owing to the detected humoral immune response to ABE upon treatment

Abstract

Most known pathogenic point mutations in humans are C•G to T•A substitutions, which can be directly repaired by adenine base editors (ABEs). In this study, we investigated the efficacy and safety of ABEs in the livers of mice and cynomolgus macaques for the reduction of blood low-density lipoprotein (LDL) levels. Lipid nanoparticle-based delivery of mRNA encoding an ABE and a single-guide RNA targeting PCSK9, a negative regulator of LDL, induced up to 67% editing (on average, 61%) in mice and up to 34% editing (on average, 26%) in macaques. Plasma PCSK9 and LDL levels were stably reduced by 95% and 58% in mice and by 32% and 14% in macaques, respectively. ABE mRNA was cleared rapidly, and no off-target mutations in genomic DNA were found. Re-dosing in macaques did not increase editing, possibly owing to the detected humoral immune response to ABE upon treatment. These findings support further investigation of ABEs to treat patients with monogenic liver diseases.

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Cite This Study

Rothgangl et al. (2021) studied this question.

synapsesocial.com/papers/69dcc6af5f9113867535915fhttps://doi.org/10.1038/s41587-021-00933-4
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