Cargando…

Make It Simple: (SR-A1+TLR7) Macrophage Targeted NANOarchaeosomes

Hyperhalophilic archaebacteria exclusively produce sn2,3 diphytanylglycerol diether archaeolipids, unique structures absent in bacteria and eukaryotes. Nanovesicles made of archaeolipids known as nanoarchaeosomes (nanoARC), possess highly stable bilayers, some of them displaying specific targeting a...

Descripción completa

Detalles Bibliográficos
Autores principales: Parra, Federico Leonel, Caimi, Ayelen Tatiana, Altube, Maria Julia, Cargnelutti, Diego Esteban, Vermeulen, Mónica Elba, de Farias, Marcelo Alexandre, Portugal, Rodrigo Villares, Morilla, Maria Jose, Romero, Eder Lilia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6232313/
https://www.ncbi.nlm.nih.gov/pubmed/30460231
http://dx.doi.org/10.3389/fbioe.2018.00163
_version_ 1783370385184522240
author Parra, Federico Leonel
Caimi, Ayelen Tatiana
Altube, Maria Julia
Cargnelutti, Diego Esteban
Vermeulen, Mónica Elba
de Farias, Marcelo Alexandre
Portugal, Rodrigo Villares
Morilla, Maria Jose
Romero, Eder Lilia
author_facet Parra, Federico Leonel
Caimi, Ayelen Tatiana
Altube, Maria Julia
Cargnelutti, Diego Esteban
Vermeulen, Mónica Elba
de Farias, Marcelo Alexandre
Portugal, Rodrigo Villares
Morilla, Maria Jose
Romero, Eder Lilia
author_sort Parra, Federico Leonel
collection PubMed
description Hyperhalophilic archaebacteria exclusively produce sn2,3 diphytanylglycerol diether archaeolipids, unique structures absent in bacteria and eukaryotes. Nanovesicles made of archaeolipids known as nanoarchaeosomes (nanoARC), possess highly stable bilayers, some of them displaying specific targeting ability. Here we hypothesize that nanoARC made from Halorubrum tebenquichense archaebacteria, may constitute efficient carriers for the TLR7 agonist imiquimod (IMQ). NanoARC-IMQ takes advantage of the intense interaction between IMQ and the highly disordered, poorly fluid branched archaeolipid bilayers, rich in archaeol analog of methyl ester of phosphatidylglycerophosphate (PGP-Me), a natural ligand of scavenger receptor A1 (SR-A1). This approach lacks complex manufacture steps required for bilayers labeling, enabling future analytical characterization, batch reproducibility, and adaptation to higher scale production. SR-A1 mediated internalization of particulate material is mostly targeted to macrophages and is extensive because it is not submitted to a negative feedback. A massive and selective intracellular delivery of IMQ may concentrate its effect specifically into the endosomes, where the TLR7 is expressed, magnifying its immunogenicity, at the same time reducing its systemic bioavailability, and therefore it's in vivo adverse effects. NanoARC-IMQ (600–900 nm diameter oligolamellar vesicles of ~−43 mV Z potential) were heavily loaded with IMQ at ~44 μg IMQ/mg phospholipids [~20 folds higher than the non-SR-A1 ligand soyPC liposomes loaded with IMQ (LIPO-IMQ)]. In vitro, nanoARC-IMQ induced higher TNF-α and IL-6 secretion by J774A1 macrophages compared to same dose of IMQ and same lipid dose of LIPO-IMQ. In vivo, 3 subcutaneous doses of nanoARC-IMQ+ 10 μg total leishmania antigens (TLA) at 50 μg IMQ per Balb/C mice, induced more pronounced DTH response, accompanied by a nearly 2 orders higher antigen-specific systemic IgG titers than IMQ+TLA and LIPO-IMQ. The isotype ratio of nanoARC-IMQ+TLA remained ~0.5 indicating, the same as IMQ+TLA, a Th2 biased response distinguished by a pronounced increase in antibody titers, without negative effects on splenocytes lymphoproliferation, with a potential CD8+LT induction 10 days after the last dose. Overall, this first approach showed that highly SR-A1 mediated internalization of heavily loaded nanoARC-IMQ, magnified the effect of IMQ on TLR7 expressing macrophages, leading to a more intense in vivo immune response.
format Online
Article
Text
id pubmed-6232313
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-62323132018-11-20 Make It Simple: (SR-A1+TLR7) Macrophage Targeted NANOarchaeosomes Parra, Federico Leonel Caimi, Ayelen Tatiana Altube, Maria Julia Cargnelutti, Diego Esteban Vermeulen, Mónica Elba de Farias, Marcelo Alexandre Portugal, Rodrigo Villares Morilla, Maria Jose Romero, Eder Lilia Front Bioeng Biotechnol Bioengineering and Biotechnology Hyperhalophilic archaebacteria exclusively produce sn2,3 diphytanylglycerol diether archaeolipids, unique structures absent in bacteria and eukaryotes. Nanovesicles made of archaeolipids known as nanoarchaeosomes (nanoARC), possess highly stable bilayers, some of them displaying specific targeting ability. Here we hypothesize that nanoARC made from Halorubrum tebenquichense archaebacteria, may constitute efficient carriers for the TLR7 agonist imiquimod (IMQ). NanoARC-IMQ takes advantage of the intense interaction between IMQ and the highly disordered, poorly fluid branched archaeolipid bilayers, rich in archaeol analog of methyl ester of phosphatidylglycerophosphate (PGP-Me), a natural ligand of scavenger receptor A1 (SR-A1). This approach lacks complex manufacture steps required for bilayers labeling, enabling future analytical characterization, batch reproducibility, and adaptation to higher scale production. SR-A1 mediated internalization of particulate material is mostly targeted to macrophages and is extensive because it is not submitted to a negative feedback. A massive and selective intracellular delivery of IMQ may concentrate its effect specifically into the endosomes, where the TLR7 is expressed, magnifying its immunogenicity, at the same time reducing its systemic bioavailability, and therefore it's in vivo adverse effects. NanoARC-IMQ (600–900 nm diameter oligolamellar vesicles of ~−43 mV Z potential) were heavily loaded with IMQ at ~44 μg IMQ/mg phospholipids [~20 folds higher than the non-SR-A1 ligand soyPC liposomes loaded with IMQ (LIPO-IMQ)]. In vitro, nanoARC-IMQ induced higher TNF-α and IL-6 secretion by J774A1 macrophages compared to same dose of IMQ and same lipid dose of LIPO-IMQ. In vivo, 3 subcutaneous doses of nanoARC-IMQ+ 10 μg total leishmania antigens (TLA) at 50 μg IMQ per Balb/C mice, induced more pronounced DTH response, accompanied by a nearly 2 orders higher antigen-specific systemic IgG titers than IMQ+TLA and LIPO-IMQ. The isotype ratio of nanoARC-IMQ+TLA remained ~0.5 indicating, the same as IMQ+TLA, a Th2 biased response distinguished by a pronounced increase in antibody titers, without negative effects on splenocytes lymphoproliferation, with a potential CD8+LT induction 10 days after the last dose. Overall, this first approach showed that highly SR-A1 mediated internalization of heavily loaded nanoARC-IMQ, magnified the effect of IMQ on TLR7 expressing macrophages, leading to a more intense in vivo immune response. Frontiers Media S.A. 2018-11-06 /pmc/articles/PMC6232313/ /pubmed/30460231 http://dx.doi.org/10.3389/fbioe.2018.00163 Text en Copyright © 2018 Parra, Caimi, Altube, Cargnelutti, Vermeulen, de Farias, Portugal, Morilla and Romero. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Bioengineering and Biotechnology
Parra, Federico Leonel
Caimi, Ayelen Tatiana
Altube, Maria Julia
Cargnelutti, Diego Esteban
Vermeulen, Mónica Elba
de Farias, Marcelo Alexandre
Portugal, Rodrigo Villares
Morilla, Maria Jose
Romero, Eder Lilia
Make It Simple: (SR-A1+TLR7) Macrophage Targeted NANOarchaeosomes
title Make It Simple: (SR-A1+TLR7) Macrophage Targeted NANOarchaeosomes
title_full Make It Simple: (SR-A1+TLR7) Macrophage Targeted NANOarchaeosomes
title_fullStr Make It Simple: (SR-A1+TLR7) Macrophage Targeted NANOarchaeosomes
title_full_unstemmed Make It Simple: (SR-A1+TLR7) Macrophage Targeted NANOarchaeosomes
title_short Make It Simple: (SR-A1+TLR7) Macrophage Targeted NANOarchaeosomes
title_sort make it simple: (sr-a1+tlr7) macrophage targeted nanoarchaeosomes
topic Bioengineering and Biotechnology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6232313/
https://www.ncbi.nlm.nih.gov/pubmed/30460231
http://dx.doi.org/10.3389/fbioe.2018.00163
work_keys_str_mv AT parrafedericoleonel makeitsimplesra1tlr7macrophagetargetednanoarchaeosomes
AT caimiayelentatiana makeitsimplesra1tlr7macrophagetargetednanoarchaeosomes
AT altubemariajulia makeitsimplesra1tlr7macrophagetargetednanoarchaeosomes
AT cargneluttidiegoesteban makeitsimplesra1tlr7macrophagetargetednanoarchaeosomes
AT vermeulenmonicaelba makeitsimplesra1tlr7macrophagetargetednanoarchaeosomes
AT defariasmarceloalexandre makeitsimplesra1tlr7macrophagetargetednanoarchaeosomes
AT portugalrodrigovillares makeitsimplesra1tlr7macrophagetargetednanoarchaeosomes
AT morillamariajose makeitsimplesra1tlr7macrophagetargetednanoarchaeosomes
AT romeroederlilia makeitsimplesra1tlr7macrophagetargetednanoarchaeosomes