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Optimization-by-design of hepatotropic lipid nanoparticles targeting the sodium-taurocholate cotransporting polypeptide

Active targeting and specific drug delivery to parenchymal liver cells is a promising strategy to treat various liver disorders. Here, we modified synthetic lipid-based nanoparticles with targeting peptides derived from the hepatitis B virus large envelope protein (HBVpreS) to specifically target th...

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Autores principales: Witzigmann, Dominik, Uhl, Philipp, Sieber, Sandro, Kaufman, Christina, Einfalt, Tomaz, Schöneweis, Katrin, Grossen, Philip, Buck, Jonas, Ni, Yi, Schenk, Susanne H, Hussner, Janine, Meyer zu Schwabedissen, Henriette E, Québatte, Gabriela, Mier, Walter, Urban, Stephan, Huwyler, Jörg
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6682401/
https://www.ncbi.nlm.nih.gov/pubmed/31333191
http://dx.doi.org/10.7554/eLife.42276
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author Witzigmann, Dominik
Uhl, Philipp
Sieber, Sandro
Kaufman, Christina
Einfalt, Tomaz
Schöneweis, Katrin
Grossen, Philip
Buck, Jonas
Ni, Yi
Schenk, Susanne H
Hussner, Janine
Meyer zu Schwabedissen, Henriette E
Québatte, Gabriela
Mier, Walter
Urban, Stephan
Huwyler, Jörg
author_facet Witzigmann, Dominik
Uhl, Philipp
Sieber, Sandro
Kaufman, Christina
Einfalt, Tomaz
Schöneweis, Katrin
Grossen, Philip
Buck, Jonas
Ni, Yi
Schenk, Susanne H
Hussner, Janine
Meyer zu Schwabedissen, Henriette E
Québatte, Gabriela
Mier, Walter
Urban, Stephan
Huwyler, Jörg
author_sort Witzigmann, Dominik
collection PubMed
description Active targeting and specific drug delivery to parenchymal liver cells is a promising strategy to treat various liver disorders. Here, we modified synthetic lipid-based nanoparticles with targeting peptides derived from the hepatitis B virus large envelope protein (HBVpreS) to specifically target the sodium-taurocholate cotransporting polypeptide (NTCP; SLC10A1) on the sinusoidal membrane of hepatocytes. Physicochemical properties of targeted nanoparticles were optimized and NTCP-specific, ligand-dependent binding and internalization was confirmed in vitro. The pharmacokinetics and targeting capacity of selected lead formulations was investigated in vivo using the emerging zebrafish screening model. Liposomal nanoparticles modified with 0.25 mol% of a short myristoylated HBV derived peptide, that is Myr-HBVpreS2-31, showed an optimal balance between systemic circulation, avoidance of blood clearance, and targeting capacity. Pronounced liver enrichment, active NTCP-mediated targeting of hepatocytes and efficient cellular internalization were confirmed in mice by (111)In gamma scintigraphy and fluorescence microscopy demonstrating the potential use of our hepatotropic, ligand-modified nanoparticles.
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spelling pubmed-66824012019-08-07 Optimization-by-design of hepatotropic lipid nanoparticles targeting the sodium-taurocholate cotransporting polypeptide Witzigmann, Dominik Uhl, Philipp Sieber, Sandro Kaufman, Christina Einfalt, Tomaz Schöneweis, Katrin Grossen, Philip Buck, Jonas Ni, Yi Schenk, Susanne H Hussner, Janine Meyer zu Schwabedissen, Henriette E Québatte, Gabriela Mier, Walter Urban, Stephan Huwyler, Jörg eLife Biochemistry and Chemical Biology Active targeting and specific drug delivery to parenchymal liver cells is a promising strategy to treat various liver disorders. Here, we modified synthetic lipid-based nanoparticles with targeting peptides derived from the hepatitis B virus large envelope protein (HBVpreS) to specifically target the sodium-taurocholate cotransporting polypeptide (NTCP; SLC10A1) on the sinusoidal membrane of hepatocytes. Physicochemical properties of targeted nanoparticles were optimized and NTCP-specific, ligand-dependent binding and internalization was confirmed in vitro. The pharmacokinetics and targeting capacity of selected lead formulations was investigated in vivo using the emerging zebrafish screening model. Liposomal nanoparticles modified with 0.25 mol% of a short myristoylated HBV derived peptide, that is Myr-HBVpreS2-31, showed an optimal balance between systemic circulation, avoidance of blood clearance, and targeting capacity. Pronounced liver enrichment, active NTCP-mediated targeting of hepatocytes and efficient cellular internalization were confirmed in mice by (111)In gamma scintigraphy and fluorescence microscopy demonstrating the potential use of our hepatotropic, ligand-modified nanoparticles. eLife Sciences Publications, Ltd 2019-07-23 /pmc/articles/PMC6682401/ /pubmed/31333191 http://dx.doi.org/10.7554/eLife.42276 Text en © 2019, Witzigmann et al http://creativecommons.org/licenses/by/4.0/ http://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Biochemistry and Chemical Biology
Witzigmann, Dominik
Uhl, Philipp
Sieber, Sandro
Kaufman, Christina
Einfalt, Tomaz
Schöneweis, Katrin
Grossen, Philip
Buck, Jonas
Ni, Yi
Schenk, Susanne H
Hussner, Janine
Meyer zu Schwabedissen, Henriette E
Québatte, Gabriela
Mier, Walter
Urban, Stephan
Huwyler, Jörg
Optimization-by-design of hepatotropic lipid nanoparticles targeting the sodium-taurocholate cotransporting polypeptide
title Optimization-by-design of hepatotropic lipid nanoparticles targeting the sodium-taurocholate cotransporting polypeptide
title_full Optimization-by-design of hepatotropic lipid nanoparticles targeting the sodium-taurocholate cotransporting polypeptide
title_fullStr Optimization-by-design of hepatotropic lipid nanoparticles targeting the sodium-taurocholate cotransporting polypeptide
title_full_unstemmed Optimization-by-design of hepatotropic lipid nanoparticles targeting the sodium-taurocholate cotransporting polypeptide
title_short Optimization-by-design of hepatotropic lipid nanoparticles targeting the sodium-taurocholate cotransporting polypeptide
title_sort optimization-by-design of hepatotropic lipid nanoparticles targeting the sodium-taurocholate cotransporting polypeptide
topic Biochemistry and Chemical Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6682401/
https://www.ncbi.nlm.nih.gov/pubmed/31333191
http://dx.doi.org/10.7554/eLife.42276
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