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Lipid Nanoparticle Delivery of Small Proteins for Potent In VivoRAS Inhibition

Authors :
Haley, Rebecca M.
Chan, Alexander
Billingsley, Margaret M.
Gong, Ningqiang
Padilla, Marshall S.
Kim, Emily H.
Wang, Hejia
Yin, Dingzi
Wangensteen, Kirk J.
Tsourkas, Andrew
Mitchell, Michael J.
Source :
ACS Applied Materials & Interfaces; May 2023, Vol. 15 Issue: 18 p21877-21892, 16p
Publication Year :
2023

Abstract

Mutated RAS proteins are potent oncogenic drivers and have long been considered “undruggable”. While RAS-targeting therapies have recently shown promise, there remains a clinical need for RAS inhibitors with more diverse targets. Small proteins represent a potential new therapeutic option, including K27, a designed ankyrin repeat protein (DARPin) engineered to inhibit RAS. However, K27 functions intracellularly and is incapable of entering the cytosol on its own, currently limiting its utility. To overcome this barrier, we have engineered a lipid nanoparticle (LNP) platform for potent delivery of functional K27-D30─a charge-modified version of the protein─intracellularly in vitroand in vivo. This system efficiently encapsulates charge-modified proteins, facilitates delivery in up to 90% of cells in vitro, and maintains potency after at least 45 days of storage. In vivo, these LNPs deliver K27-D30 to the cytosol of cancerous cells in the liver, inhibiting RAS-driven growth and ultimately reducing tumor load in an HTVI-induced mouse model of hepatocellular carcinoma. This work shows that K27 holds promise as a new cancer therapeutic when delivered using this LNP platform. Furthermore, this technology has the potential to broaden the use of LNPs to include new cargo types─beyond RNA─for diverse therapeutic applications.

Details

Language :
English
ISSN :
19448244
Volume :
15
Issue :
18
Database :
Supplemental Index
Journal :
ACS Applied Materials & Interfaces
Publication Type :
Periodical
Accession number :
ejs62920695
Full Text :
https://doi.org/10.1021/acsami.3c01501