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Article Dans Une Revue Nucleic Acids Research Année : 2022

Palmitic acid conjugation enhances potency of tricyclo-DNA splice switching oligonucleotides

Adrian Haeberli
  • Fonction : Auteur
Marek Komisarski
  • Fonction : Auteur
Cyrille Vaillend

Résumé

Abstract Tricyclo-DNA (tcDNA) is a conformationally constrained oligonucleotide analog that has demonstrated great therapeutic potential as antisense oligonucleotide (ASO) for several diseases. Like most ASOs in clinical development, tcDNA were modified with phosphorothioate (PS) backbone for therapeutic purposes in order to improve their biodistribution by enhancing association with plasma and cell protein. Despite the advantageous protein binding properties, systemic delivery of PS-ASO remains limited and PS modifications can result in dose limiting toxicities in the clinic. Improving extra-hepatic delivery of ASO is highly desirable for the treatment of a variety of diseases including neuromuscular disorders such as Duchenne muscular dystrophy. We hypothesized that conjugation of palmitic acid to tcDNA could facilitate the delivery of the ASO from the bloodstream to the interstitium of the muscle tissues. We demonstrate here that palmitic acid conjugation enhances the potency of tcDNA-ASO in skeletal and cardiac muscles, leading to functional improvement in dystrophic mice with significantly reduced dose of administered ASO. Interestingly, palmitic acid-conjugated tcDNA with a full phosphodiester backbone proved effective with a particularly encouraging safety profile, offering new perspectives for the clinical development of PS-free tcDNA-ASO for neuromuscular diseases.
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Dates et versions

hal-03476811 , version 1 (28-01-2022)

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Paternité - Pas d'utilisation commerciale

Identifiants

Citer

Karima Relizani, Lucía Echevarría, Faouzi Zarrouki, Cécile Gastaldi, Chloe Dambrune, et al.. Palmitic acid conjugation enhances potency of tricyclo-DNA splice switching oligonucleotides. Nucleic Acids Research, 2022, 50 (1), pp.:17-34. ⟨10.1093/nar/gkab1199⟩. ⟨hal-03476811⟩
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