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Impact of Glycosylation and Species Origin on the Uptake and Permeation of IgGs through the Nasal Airway Mucosa

Although we have recently reported the involvement of neonatal Fc receptor (FcRn) in intranasal transport, the transport mechanisms are far from being elucidated. Ex vivo porcine olfactory tissue, primary cells from porcine olfactory epithelium (OEPC) and the human cell line RPMI 2650 were used to e...

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Autores principales: Ladel, Simone, Maigler, Frank, Flamm, Johannes, Schlossbauer, Patrick, Handl, Alina, Hermann, Rebecca, Herzog, Helena, Hummel, Thomas, Mizaikoff, Boris, Schindowski, Katharina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7690786/
https://www.ncbi.nlm.nih.gov/pubmed/33114132
http://dx.doi.org/10.3390/pharmaceutics12111014
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author Ladel, Simone
Maigler, Frank
Flamm, Johannes
Schlossbauer, Patrick
Handl, Alina
Hermann, Rebecca
Herzog, Helena
Hummel, Thomas
Mizaikoff, Boris
Schindowski, Katharina
author_facet Ladel, Simone
Maigler, Frank
Flamm, Johannes
Schlossbauer, Patrick
Handl, Alina
Hermann, Rebecca
Herzog, Helena
Hummel, Thomas
Mizaikoff, Boris
Schindowski, Katharina
author_sort Ladel, Simone
collection PubMed
description Although we have recently reported the involvement of neonatal Fc receptor (FcRn) in intranasal transport, the transport mechanisms are far from being elucidated. Ex vivo porcine olfactory tissue, primary cells from porcine olfactory epithelium (OEPC) and the human cell line RPMI 2650 were used to evaluate the permeation of porcine and human IgG antibodies through the nasal mucosa. IgGs were used in their wild type and deglycosylated form to investigate the impact of glycosylation. Further, the expression of FcRn and Fc-gamma receptor (FCGR) and their interaction with IgG were analyzed. Comparable permeation rates for human and porcine IgG were observed in OEPC, which display the highest expression of FcRn. Only traces of porcine IgGs could be recovered at the basolateral compartment in ex vivo olfactory tissue, while human IgGs reached far higher levels. Deglycosylated human IgG showed significantly higher permeation in comparison to the wild type in RPMI 2650 and OEPC, but insignificantly elevated in the ex vivo model. An immunoprecipitation with porcine primary cells and tissue identified FCGR2 as a potential interaction partner in the nasal mucosa. Glycosylation sensitive receptors appear to be involved in the uptake, transport, but also degradation of therapeutic IgGs in the airway epithelial layer.
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spelling pubmed-76907862020-11-27 Impact of Glycosylation and Species Origin on the Uptake and Permeation of IgGs through the Nasal Airway Mucosa Ladel, Simone Maigler, Frank Flamm, Johannes Schlossbauer, Patrick Handl, Alina Hermann, Rebecca Herzog, Helena Hummel, Thomas Mizaikoff, Boris Schindowski, Katharina Pharmaceutics Article Although we have recently reported the involvement of neonatal Fc receptor (FcRn) in intranasal transport, the transport mechanisms are far from being elucidated. Ex vivo porcine olfactory tissue, primary cells from porcine olfactory epithelium (OEPC) and the human cell line RPMI 2650 were used to evaluate the permeation of porcine and human IgG antibodies through the nasal mucosa. IgGs were used in their wild type and deglycosylated form to investigate the impact of glycosylation. Further, the expression of FcRn and Fc-gamma receptor (FCGR) and their interaction with IgG were analyzed. Comparable permeation rates for human and porcine IgG were observed in OEPC, which display the highest expression of FcRn. Only traces of porcine IgGs could be recovered at the basolateral compartment in ex vivo olfactory tissue, while human IgGs reached far higher levels. Deglycosylated human IgG showed significantly higher permeation in comparison to the wild type in RPMI 2650 and OEPC, but insignificantly elevated in the ex vivo model. An immunoprecipitation with porcine primary cells and tissue identified FCGR2 as a potential interaction partner in the nasal mucosa. Glycosylation sensitive receptors appear to be involved in the uptake, transport, but also degradation of therapeutic IgGs in the airway epithelial layer. MDPI 2020-10-23 /pmc/articles/PMC7690786/ /pubmed/33114132 http://dx.doi.org/10.3390/pharmaceutics12111014 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ladel, Simone
Maigler, Frank
Flamm, Johannes
Schlossbauer, Patrick
Handl, Alina
Hermann, Rebecca
Herzog, Helena
Hummel, Thomas
Mizaikoff, Boris
Schindowski, Katharina
Impact of Glycosylation and Species Origin on the Uptake and Permeation of IgGs through the Nasal Airway Mucosa
title Impact of Glycosylation and Species Origin on the Uptake and Permeation of IgGs through the Nasal Airway Mucosa
title_full Impact of Glycosylation and Species Origin on the Uptake and Permeation of IgGs through the Nasal Airway Mucosa
title_fullStr Impact of Glycosylation and Species Origin on the Uptake and Permeation of IgGs through the Nasal Airway Mucosa
title_full_unstemmed Impact of Glycosylation and Species Origin on the Uptake and Permeation of IgGs through the Nasal Airway Mucosa
title_short Impact of Glycosylation and Species Origin on the Uptake and Permeation of IgGs through the Nasal Airway Mucosa
title_sort impact of glycosylation and species origin on the uptake and permeation of iggs through the nasal airway mucosa
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7690786/
https://www.ncbi.nlm.nih.gov/pubmed/33114132
http://dx.doi.org/10.3390/pharmaceutics12111014
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