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EGFR-Targeted Nanobody Functionalized Polymeric Micelles Loaded with mTHPC for Selective Photodynamic Therapy

[Image: see text] meta-Tetra(hydroxyphenyl)chlorin (mTHPC) is one of the most potent second-generation photosensitizers, clinically used for photodynamic therapy (PDT) of head and neck squamous cell carcinomas. However, improvements are still required concerning its present formulation (i.e., Foscan...

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Autores principales: Liu, Yanna, Scrivano, Luca, Peterson, Julia Denise, Fens, Marcel H. A. M., Hernández, Irati Beltrán, Mesquita, Bárbara, Toraño, Javier Sastre, Hennink, Wim E., van Nostrum, Cornelus F., Oliveira, Sabrina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2020
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7140040/
https://www.ncbi.nlm.nih.gov/pubmed/32142290
http://dx.doi.org/10.1021/acs.molpharmaceut.9b01280
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author Liu, Yanna
Scrivano, Luca
Peterson, Julia Denise
Fens, Marcel H. A. M.
Hernández, Irati Beltrán
Mesquita, Bárbara
Toraño, Javier Sastre
Hennink, Wim E.
van Nostrum, Cornelus F.
Oliveira, Sabrina
author_facet Liu, Yanna
Scrivano, Luca
Peterson, Julia Denise
Fens, Marcel H. A. M.
Hernández, Irati Beltrán
Mesquita, Bárbara
Toraño, Javier Sastre
Hennink, Wim E.
van Nostrum, Cornelus F.
Oliveira, Sabrina
author_sort Liu, Yanna
collection PubMed
description [Image: see text] meta-Tetra(hydroxyphenyl)chlorin (mTHPC) is one of the most potent second-generation photosensitizers, clinically used for photodynamic therapy (PDT) of head and neck squamous cell carcinomas. However, improvements are still required concerning its present formulation (i.e., Foscan, a solution of mTHPC in ethanol/propylene glycol (40:60 w/w)), as mTHPC has the tendency to aggregate in aqueous media, e.g., biological fluids, and it has limited tumor specificity. In the present study, polymeric micelles with three different diameters (17, 24, and 45 nm) based on benzyl-poly(ε-caprolactone)-b-poly(ethylene glycol) (PCL(n)-PEG; n = 9, 15, or 23) were prepared with mTHPC loadings ranging from 0.5 to 10 wt % using a film-hydration method as advanced nanoformulations for this photosensitizer. To favor the uptake of the micelles by cancer cells that overexpress the epidermal growth factor receptor (EGFR), the micelles were decorated with an EGFR-targeted nanobody (named EGa1) through maleimide-thiol chemistry. The enhanced binding of the EGFR-targeted micelles at 4 °C to EGFR-overexpressing A431 cells, compared to low-EGFR-expressing HeLa cells, confirmed the specificity of the micelles. In addition, an enhanced uptake of mTHPC-loaded micelles by A431 cells was observed when these were decorated with the EGa1 nanobody, compared to nontargeted micelles. Both binding and uptake of targeted micelles were blocked by an excess of free EGa1 nanobody, demonstrating that these processes occur through EGFR. In line with this, mTHPC loaded in EGa1-conjugated PCL(23)-PEG (EGa1-P(23)) micelles demonstrated 4 times higher photocytotoxicity on A431 cells, compared to micelles lacking the nanobody. Importantly, EGa1-P(23) micelles also showed selective PDT against A431 cells compared to the low-EGFR-expressing HeLa cells. Finally, an in vivo pharmacokinetic study shows that after intravenous injection, mTHPC incorporated in the P(23) micelles displayed prolonged blood circulation kinetics, compared to free mTHPC, independently of the presence of EGa1. Thus, these results make these micelles a promising nanomedicine formulation for selective therapy.
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spelling pubmed-71400402020-04-08 EGFR-Targeted Nanobody Functionalized Polymeric Micelles Loaded with mTHPC for Selective Photodynamic Therapy Liu, Yanna Scrivano, Luca Peterson, Julia Denise Fens, Marcel H. A. M. Hernández, Irati Beltrán Mesquita, Bárbara Toraño, Javier Sastre Hennink, Wim E. van Nostrum, Cornelus F. Oliveira, Sabrina Mol Pharm [Image: see text] meta-Tetra(hydroxyphenyl)chlorin (mTHPC) is one of the most potent second-generation photosensitizers, clinically used for photodynamic therapy (PDT) of head and neck squamous cell carcinomas. However, improvements are still required concerning its present formulation (i.e., Foscan, a solution of mTHPC in ethanol/propylene glycol (40:60 w/w)), as mTHPC has the tendency to aggregate in aqueous media, e.g., biological fluids, and it has limited tumor specificity. In the present study, polymeric micelles with three different diameters (17, 24, and 45 nm) based on benzyl-poly(ε-caprolactone)-b-poly(ethylene glycol) (PCL(n)-PEG; n = 9, 15, or 23) were prepared with mTHPC loadings ranging from 0.5 to 10 wt % using a film-hydration method as advanced nanoformulations for this photosensitizer. To favor the uptake of the micelles by cancer cells that overexpress the epidermal growth factor receptor (EGFR), the micelles were decorated with an EGFR-targeted nanobody (named EGa1) through maleimide-thiol chemistry. The enhanced binding of the EGFR-targeted micelles at 4 °C to EGFR-overexpressing A431 cells, compared to low-EGFR-expressing HeLa cells, confirmed the specificity of the micelles. In addition, an enhanced uptake of mTHPC-loaded micelles by A431 cells was observed when these were decorated with the EGa1 nanobody, compared to nontargeted micelles. Both binding and uptake of targeted micelles were blocked by an excess of free EGa1 nanobody, demonstrating that these processes occur through EGFR. In line with this, mTHPC loaded in EGa1-conjugated PCL(23)-PEG (EGa1-P(23)) micelles demonstrated 4 times higher photocytotoxicity on A431 cells, compared to micelles lacking the nanobody. Importantly, EGa1-P(23) micelles also showed selective PDT against A431 cells compared to the low-EGFR-expressing HeLa cells. Finally, an in vivo pharmacokinetic study shows that after intravenous injection, mTHPC incorporated in the P(23) micelles displayed prolonged blood circulation kinetics, compared to free mTHPC, independently of the presence of EGa1. Thus, these results make these micelles a promising nanomedicine formulation for selective therapy. American Chemical Society 2020-03-06 2020-04-06 /pmc/articles/PMC7140040/ /pubmed/32142290 http://dx.doi.org/10.1021/acs.molpharmaceut.9b01280 Text en Copyright © 2020 American Chemical Society This is an open access article published under a Creative Commons Non-Commercial No Derivative Works (CC-BY-NC-ND) Attribution License (http://pubs.acs.org/page/policy/authorchoice_ccbyncnd_termsofuse.html) , which permits copying and redistribution of the article, and creation of adaptations, all for non-commercial purposes.
spellingShingle Liu, Yanna
Scrivano, Luca
Peterson, Julia Denise
Fens, Marcel H. A. M.
Hernández, Irati Beltrán
Mesquita, Bárbara
Toraño, Javier Sastre
Hennink, Wim E.
van Nostrum, Cornelus F.
Oliveira, Sabrina
EGFR-Targeted Nanobody Functionalized Polymeric Micelles Loaded with mTHPC for Selective Photodynamic Therapy
title EGFR-Targeted Nanobody Functionalized Polymeric Micelles Loaded with mTHPC for Selective Photodynamic Therapy
title_full EGFR-Targeted Nanobody Functionalized Polymeric Micelles Loaded with mTHPC for Selective Photodynamic Therapy
title_fullStr EGFR-Targeted Nanobody Functionalized Polymeric Micelles Loaded with mTHPC for Selective Photodynamic Therapy
title_full_unstemmed EGFR-Targeted Nanobody Functionalized Polymeric Micelles Loaded with mTHPC for Selective Photodynamic Therapy
title_short EGFR-Targeted Nanobody Functionalized Polymeric Micelles Loaded with mTHPC for Selective Photodynamic Therapy
title_sort egfr-targeted nanobody functionalized polymeric micelles loaded with mthpc for selective photodynamic therapy
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7140040/
https://www.ncbi.nlm.nih.gov/pubmed/32142290
http://dx.doi.org/10.1021/acs.molpharmaceut.9b01280
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