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Inhibition of EGF Uptake by Nephrotoxic Antisense Drugs In Vitro and Implications for Preclinical Safety Profiling

Authors :
Annie Moisan
Marcel Gubler
Jitao David Zhang
Yann Tessier
Kamille Dumong Erichsen
Sabine Sewing
Régine Gérard
Blandine Avignon
Sylwia Huber
Fethallah Benmansour
Xing Chen
Roberto Villaseñor
Annamaria Braendli-Baiocco
Matthias Festag
Andreas Maunz
Thomas Singer
Franz Schuler
Adrian B. Roth
Source :
Molecular Therapy: Nucleic Acids, Vol 6, Iss , Pp 89-105 (2017)
Publication Year :
2017
Publisher :
Elsevier, 2017.

Abstract

Antisense oligonucleotide (AON) therapeutics offer new avenues to pursue clinically relevant targets inaccessible with other technologies. Advances in improving AON affinity and stability by incorporation of high affinity nucleotides, such as locked nucleic acids (LNA), have sometimes been stifled by safety liabilities related to their accumulation in the kidney tubule. In an attempt to predict and understand the mechanisms of LNA-AON-induced renal tubular toxicity, we established human cell models that recapitulate in vivo behavior of pre-clinically and clinically unfavorable LNA-AON drug candidates. We identified elevation of extracellular epidermal growth factor (EGF) as a robust and sensitive in vitro biomarker of LNA-AON-induced cytotoxicity in human kidney tubule epithelial cells. We report the time-dependent negative regulation of EGF uptake and EGF receptor (EGFR) signaling by toxic but not innocuous LNA-AONs and revealed the importance of EGFR signaling in LNA-AON-mediated decrease in cellular activity. The robust EGF-based in vitro safety profiling of LNA-AON drug candidates presented here, together with a better understanding of the underlying molecular mechanisms, constitutes a significant step toward developing safer antisense therapeutics. Keywords: kidney, nephrotoxicity, EGF, EGFR, PTEC, antisense, oligonucleotide, safety, preclinical

Subjects

Subjects :
Therapeutics. Pharmacology
RM1-950

Details

Language :
English
ISSN :
21622531 and 02041685
Volume :
6
Issue :
89-105
Database :
Directory of Open Access Journals
Journal :
Molecular Therapy: Nucleic Acids
Publication Type :
Academic Journal
Accession number :
edsdoj.6a19a17eb817471d91d25a02041685db
Document Type :
article
Full Text :
https://doi.org/10.1016/j.omtn.2016.11.006