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Identification and characterization of highly versatile peptide-vectors that bind non-competitively to the low-density lipoprotein receptor for in vivo targeting and delivery of small molecules and protein cargos

Insufficient membrane penetration of drugs, in particular biotherapeutics and/or low target specificity remain a major drawback in their efficacy. We propose here the rational characterization and optimization of peptides to be developed as vectors that target cells expressing specific receptors inv...

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Autores principales: David, Marion, Lécorché, Pascaline, Masse, Maxime, Faucon, Aude, Abouzid, Karima, Gaudin, Nicolas, Varini, Karine, Gassiot, Fanny, Ferracci, Géraldine, Jacquot, Guillaume, Vlieghe, Patrick, Khrestchatisky, Michel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5828360/
https://www.ncbi.nlm.nih.gov/pubmed/29485998
http://dx.doi.org/10.1371/journal.pone.0191052
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author David, Marion
Lécorché, Pascaline
Masse, Maxime
Faucon, Aude
Abouzid, Karima
Gaudin, Nicolas
Varini, Karine
Gassiot, Fanny
Ferracci, Géraldine
Jacquot, Guillaume
Vlieghe, Patrick
Khrestchatisky, Michel
author_facet David, Marion
Lécorché, Pascaline
Masse, Maxime
Faucon, Aude
Abouzid, Karima
Gaudin, Nicolas
Varini, Karine
Gassiot, Fanny
Ferracci, Géraldine
Jacquot, Guillaume
Vlieghe, Patrick
Khrestchatisky, Michel
author_sort David, Marion
collection PubMed
description Insufficient membrane penetration of drugs, in particular biotherapeutics and/or low target specificity remain a major drawback in their efficacy. We propose here the rational characterization and optimization of peptides to be developed as vectors that target cells expressing specific receptors involved in endocytosis or transcytosis. Among receptors involved in receptor-mediated transport is the LDL receptor. Screening complex phage-displayed peptide libraries on the human LDLR (hLDLR) stably expressed in cell lines led to the characterization of a family of cyclic and linear peptides that specifically bind the hLDLR. The VH411 lead cyclic peptide allowed endocytosis of payloads such as the S-Tag peptide or antibodies into cells expressing the hLDLR. Size reduction and chemical optimization of this lead peptide-vector led to improved receptor affinity. The optimized peptide-vectors were successfully conjugated to cargos of different nature and size including small organic molecules, siRNAs, peptides or a protein moiety such as an Fc fragment. We show that in all cases, the peptide-vectors retain their binding affinity to the hLDLR and potential for endocytosis. Following i.v. administration in wild type or ldlr-/- mice, an Fc fragment chemically conjugated or fused in C-terminal to peptide-vectors showed significant biodistribution in LDLR-enriched organs. We have thus developed highly versatile peptide-vectors endowed with good affinity for the LDLR as a target receptor. These peptide-vectors have the potential to be further developed for efficient transport of therapeutic or imaging agents into cells -including pathological cells—or organs that express the LDLR.
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spelling pubmed-58283602018-03-19 Identification and characterization of highly versatile peptide-vectors that bind non-competitively to the low-density lipoprotein receptor for in vivo targeting and delivery of small molecules and protein cargos David, Marion Lécorché, Pascaline Masse, Maxime Faucon, Aude Abouzid, Karima Gaudin, Nicolas Varini, Karine Gassiot, Fanny Ferracci, Géraldine Jacquot, Guillaume Vlieghe, Patrick Khrestchatisky, Michel PLoS One Research Article Insufficient membrane penetration of drugs, in particular biotherapeutics and/or low target specificity remain a major drawback in their efficacy. We propose here the rational characterization and optimization of peptides to be developed as vectors that target cells expressing specific receptors involved in endocytosis or transcytosis. Among receptors involved in receptor-mediated transport is the LDL receptor. Screening complex phage-displayed peptide libraries on the human LDLR (hLDLR) stably expressed in cell lines led to the characterization of a family of cyclic and linear peptides that specifically bind the hLDLR. The VH411 lead cyclic peptide allowed endocytosis of payloads such as the S-Tag peptide or antibodies into cells expressing the hLDLR. Size reduction and chemical optimization of this lead peptide-vector led to improved receptor affinity. The optimized peptide-vectors were successfully conjugated to cargos of different nature and size including small organic molecules, siRNAs, peptides or a protein moiety such as an Fc fragment. We show that in all cases, the peptide-vectors retain their binding affinity to the hLDLR and potential for endocytosis. Following i.v. administration in wild type or ldlr-/- mice, an Fc fragment chemically conjugated or fused in C-terminal to peptide-vectors showed significant biodistribution in LDLR-enriched organs. We have thus developed highly versatile peptide-vectors endowed with good affinity for the LDLR as a target receptor. These peptide-vectors have the potential to be further developed for efficient transport of therapeutic or imaging agents into cells -including pathological cells—or organs that express the LDLR. Public Library of Science 2018-02-27 /pmc/articles/PMC5828360/ /pubmed/29485998 http://dx.doi.org/10.1371/journal.pone.0191052 Text en © 2018 David et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
David, Marion
Lécorché, Pascaline
Masse, Maxime
Faucon, Aude
Abouzid, Karima
Gaudin, Nicolas
Varini, Karine
Gassiot, Fanny
Ferracci, Géraldine
Jacquot, Guillaume
Vlieghe, Patrick
Khrestchatisky, Michel
Identification and characterization of highly versatile peptide-vectors that bind non-competitively to the low-density lipoprotein receptor for in vivo targeting and delivery of small molecules and protein cargos
title Identification and characterization of highly versatile peptide-vectors that bind non-competitively to the low-density lipoprotein receptor for in vivo targeting and delivery of small molecules and protein cargos
title_full Identification and characterization of highly versatile peptide-vectors that bind non-competitively to the low-density lipoprotein receptor for in vivo targeting and delivery of small molecules and protein cargos
title_fullStr Identification and characterization of highly versatile peptide-vectors that bind non-competitively to the low-density lipoprotein receptor for in vivo targeting and delivery of small molecules and protein cargos
title_full_unstemmed Identification and characterization of highly versatile peptide-vectors that bind non-competitively to the low-density lipoprotein receptor for in vivo targeting and delivery of small molecules and protein cargos
title_short Identification and characterization of highly versatile peptide-vectors that bind non-competitively to the low-density lipoprotein receptor for in vivo targeting and delivery of small molecules and protein cargos
title_sort identification and characterization of highly versatile peptide-vectors that bind non-competitively to the low-density lipoprotein receptor for in vivo targeting and delivery of small molecules and protein cargos
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5828360/
https://www.ncbi.nlm.nih.gov/pubmed/29485998
http://dx.doi.org/10.1371/journal.pone.0191052
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