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Effect of iontophoresis on the in vitro trans-scleral transport of three single stranded oligonucleotides

  • Silvia Pescina
  • , Maxim Antopolsky
  • , Patrizia Santi
  • , Sara Nicoli
  • , Lasse Murtomäki

Research output: Contribution to journalArticleScientificpeer-review

Abstract

Oligonucleotides represent a subject of clinical interest due to their potential ability to treat several diseases, including those affecting the posterior segment of the eye. Unfortunately, therapeutic oligonucleotides are currently administered by means of highly invasive approaches, such as intravitreal injections. The aim of the present work was to study in vitro, across isolated bovine sclera, the effect of iontophoresis on the transport of three single stranded oligonucleotides (ssDNA), 12-, 24- and 36-mer, selected as reference compounds in view of a non-invasive drug delivery to the back of the eye. All the three sequences were able to cross bovine sclera in vitro without iontophoresis. When anodal iontophoresis was applied, no change in flux was observed, while in the presence of cathodal iontophoresis the permeability coefficients increased four-fold compared to passive conditions. This behavior can be ascribed to the electrorepulsive mechanism, due to the negative charge of the nucleic acid backbone. It was also observed that the molecular weights of the three sequences did not affect trans-scleral transport, neither in passive, nor in current assisted permeation. Furthermore, increasing the current intensity
from 1.75 mA to 3 mA, no effect on the trans-scleral transport of the 24-mer was noticed. Although preliminary, the results demonstrate that cathodal iontophoresis enhances trans-scleral transport of single stranded oligonucleotides and suggest its use as a novel non-invasive approach for
the treatment of diseases affecting the posterior segment of the eye.
Original languageEnglish
JournalEuropean Journal of Pharmaceutical Sciences
Volume49
Issue number2
Pages (from-to)142-147
Number of pages6
ISSN0928-0987
DOIs
Publication statusPublished - 28 Feb 2013
MoE publication typeA1 Journal article-refereed

Fields of Science

  • 317 Pharmacy
  • ocular delivery
  • oligonucleotides
  • bovine sclera
  • 116 Chemical sciences
  • iontophoresis

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