Cargando…

Biodistribution and Molecular Studies on Orally Administered Nanoparticle-AON Complexes Encapsulated with Alginate Aiming at Inducing Dystrophin Rescue in mdx Mice

We have previously demonstrated that intraperitoneal injections of 2′-O-methyl-phosphorothioate (2′OMePS) antisense oligoribonucleotides adsorbed onto a cationic core-shell nanoparticles (NPs), termed ZM2, provoke dystrophin restoration in the muscles of mdx mice. The aim of the present work was to...

Descripción completa

Detalles Bibliográficos
Autores principales: Falzarano, Maria Sofia, Passarelli, Chiara, Bassi, Elena, Fabris, Marina, Perrone, Daniela, Sabatelli, Patrizia, Maraldi, Nadir M., Donà, Silvia, Selvatici, Rita, Bonaldo, Paolo, Sparnacci, Katia, Laus, Michele, Braghetta, Paola, Rimessi, Paola, Ferlini, Alessandra
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3874323/
https://www.ncbi.nlm.nih.gov/pubmed/24392452
http://dx.doi.org/10.1155/2013/527418
_version_ 1782297217474756608
author Falzarano, Maria Sofia
Passarelli, Chiara
Bassi, Elena
Fabris, Marina
Perrone, Daniela
Sabatelli, Patrizia
Maraldi, Nadir M.
Donà, Silvia
Selvatici, Rita
Bonaldo, Paolo
Sparnacci, Katia
Laus, Michele
Braghetta, Paola
Rimessi, Paola
Ferlini, Alessandra
author_facet Falzarano, Maria Sofia
Passarelli, Chiara
Bassi, Elena
Fabris, Marina
Perrone, Daniela
Sabatelli, Patrizia
Maraldi, Nadir M.
Donà, Silvia
Selvatici, Rita
Bonaldo, Paolo
Sparnacci, Katia
Laus, Michele
Braghetta, Paola
Rimessi, Paola
Ferlini, Alessandra
author_sort Falzarano, Maria Sofia
collection PubMed
description We have previously demonstrated that intraperitoneal injections of 2′-O-methyl-phosphorothioate (2′OMePS) antisense oligoribonucleotides adsorbed onto a cationic core-shell nanoparticles (NPs), termed ZM2, provoke dystrophin restoration in the muscles of mdx mice. The aim of the present work was to evaluate the oral route as an alternative way of administration for ZM2-antisense oligoribonucleotides complexes. The biodistribution and elimination of nanoparticles were evaluated after single and multiple oral doses of IR-dye conjugated nanoparticles. Labeled nanoparticles were tracked in vivo as well as in tissue cryosections, urines and feces by Odyssey infrared imaging system, and revealed a permanence in the intestine and abdominal lymph nodes for 72 hours to 7 days before being eliminated. We subsequently tested alginate-free and alginate-encapsulated ZM2-antisense oligoribonucleotides (AON) complexes orally administered 2 and 3 times per week, respectively, in mdx mice for a total of 12 weeks. Treatment with alginate ZM2-AON induced a slight dystrophin rescue in diaphragm and intestine smooth muscles, while no dystrophin was detected in alginate-free ZM2-AON treated mice. These data encourage further experiments on oral administration testing of NP and AON complexes, possibly translatable in oligoribonucleotides-mediated molecular therapies.
format Online
Article
Text
id pubmed-3874323
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Hindawi Publishing Corporation
record_format MEDLINE/PubMed
spelling pubmed-38743232014-01-05 Biodistribution and Molecular Studies on Orally Administered Nanoparticle-AON Complexes Encapsulated with Alginate Aiming at Inducing Dystrophin Rescue in mdx Mice Falzarano, Maria Sofia Passarelli, Chiara Bassi, Elena Fabris, Marina Perrone, Daniela Sabatelli, Patrizia Maraldi, Nadir M. Donà, Silvia Selvatici, Rita Bonaldo, Paolo Sparnacci, Katia Laus, Michele Braghetta, Paola Rimessi, Paola Ferlini, Alessandra Biomed Res Int Research Article We have previously demonstrated that intraperitoneal injections of 2′-O-methyl-phosphorothioate (2′OMePS) antisense oligoribonucleotides adsorbed onto a cationic core-shell nanoparticles (NPs), termed ZM2, provoke dystrophin restoration in the muscles of mdx mice. The aim of the present work was to evaluate the oral route as an alternative way of administration for ZM2-antisense oligoribonucleotides complexes. The biodistribution and elimination of nanoparticles were evaluated after single and multiple oral doses of IR-dye conjugated nanoparticles. Labeled nanoparticles were tracked in vivo as well as in tissue cryosections, urines and feces by Odyssey infrared imaging system, and revealed a permanence in the intestine and abdominal lymph nodes for 72 hours to 7 days before being eliminated. We subsequently tested alginate-free and alginate-encapsulated ZM2-antisense oligoribonucleotides (AON) complexes orally administered 2 and 3 times per week, respectively, in mdx mice for a total of 12 weeks. Treatment with alginate ZM2-AON induced a slight dystrophin rescue in diaphragm and intestine smooth muscles, while no dystrophin was detected in alginate-free ZM2-AON treated mice. These data encourage further experiments on oral administration testing of NP and AON complexes, possibly translatable in oligoribonucleotides-mediated molecular therapies. Hindawi Publishing Corporation 2013 2013-12-12 /pmc/articles/PMC3874323/ /pubmed/24392452 http://dx.doi.org/10.1155/2013/527418 Text en Copyright © 2013 Maria Sofia Falzarano et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Falzarano, Maria Sofia
Passarelli, Chiara
Bassi, Elena
Fabris, Marina
Perrone, Daniela
Sabatelli, Patrizia
Maraldi, Nadir M.
Donà, Silvia
Selvatici, Rita
Bonaldo, Paolo
Sparnacci, Katia
Laus, Michele
Braghetta, Paola
Rimessi, Paola
Ferlini, Alessandra
Biodistribution and Molecular Studies on Orally Administered Nanoparticle-AON Complexes Encapsulated with Alginate Aiming at Inducing Dystrophin Rescue in mdx Mice
title Biodistribution and Molecular Studies on Orally Administered Nanoparticle-AON Complexes Encapsulated with Alginate Aiming at Inducing Dystrophin Rescue in mdx Mice
title_full Biodistribution and Molecular Studies on Orally Administered Nanoparticle-AON Complexes Encapsulated with Alginate Aiming at Inducing Dystrophin Rescue in mdx Mice
title_fullStr Biodistribution and Molecular Studies on Orally Administered Nanoparticle-AON Complexes Encapsulated with Alginate Aiming at Inducing Dystrophin Rescue in mdx Mice
title_full_unstemmed Biodistribution and Molecular Studies on Orally Administered Nanoparticle-AON Complexes Encapsulated with Alginate Aiming at Inducing Dystrophin Rescue in mdx Mice
title_short Biodistribution and Molecular Studies on Orally Administered Nanoparticle-AON Complexes Encapsulated with Alginate Aiming at Inducing Dystrophin Rescue in mdx Mice
title_sort biodistribution and molecular studies on orally administered nanoparticle-aon complexes encapsulated with alginate aiming at inducing dystrophin rescue in mdx mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3874323/
https://www.ncbi.nlm.nih.gov/pubmed/24392452
http://dx.doi.org/10.1155/2013/527418
work_keys_str_mv AT falzaranomariasofia biodistributionandmolecularstudiesonorallyadministerednanoparticleaoncomplexesencapsulatedwithalginateaimingatinducingdystrophinrescueinmdxmice
AT passarellichiara biodistributionandmolecularstudiesonorallyadministerednanoparticleaoncomplexesencapsulatedwithalginateaimingatinducingdystrophinrescueinmdxmice
AT bassielena biodistributionandmolecularstudiesonorallyadministerednanoparticleaoncomplexesencapsulatedwithalginateaimingatinducingdystrophinrescueinmdxmice
AT fabrismarina biodistributionandmolecularstudiesonorallyadministerednanoparticleaoncomplexesencapsulatedwithalginateaimingatinducingdystrophinrescueinmdxmice
AT perronedaniela biodistributionandmolecularstudiesonorallyadministerednanoparticleaoncomplexesencapsulatedwithalginateaimingatinducingdystrophinrescueinmdxmice
AT sabatellipatrizia biodistributionandmolecularstudiesonorallyadministerednanoparticleaoncomplexesencapsulatedwithalginateaimingatinducingdystrophinrescueinmdxmice
AT maraldinadirm biodistributionandmolecularstudiesonorallyadministerednanoparticleaoncomplexesencapsulatedwithalginateaimingatinducingdystrophinrescueinmdxmice
AT donasilvia biodistributionandmolecularstudiesonorallyadministerednanoparticleaoncomplexesencapsulatedwithalginateaimingatinducingdystrophinrescueinmdxmice
AT selvaticirita biodistributionandmolecularstudiesonorallyadministerednanoparticleaoncomplexesencapsulatedwithalginateaimingatinducingdystrophinrescueinmdxmice
AT bonaldopaolo biodistributionandmolecularstudiesonorallyadministerednanoparticleaoncomplexesencapsulatedwithalginateaimingatinducingdystrophinrescueinmdxmice
AT sparnaccikatia biodistributionandmolecularstudiesonorallyadministerednanoparticleaoncomplexesencapsulatedwithalginateaimingatinducingdystrophinrescueinmdxmice
AT lausmichele biodistributionandmolecularstudiesonorallyadministerednanoparticleaoncomplexesencapsulatedwithalginateaimingatinducingdystrophinrescueinmdxmice
AT braghettapaola biodistributionandmolecularstudiesonorallyadministerednanoparticleaoncomplexesencapsulatedwithalginateaimingatinducingdystrophinrescueinmdxmice
AT rimessipaola biodistributionandmolecularstudiesonorallyadministerednanoparticleaoncomplexesencapsulatedwithalginateaimingatinducingdystrophinrescueinmdxmice
AT ferlinialessandra biodistributionandmolecularstudiesonorallyadministerednanoparticleaoncomplexesencapsulatedwithalginateaimingatinducingdystrophinrescueinmdxmice