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Photodisruption of the Inner Limiting Membrane: Exploring ICG Loaded Nanoparticles as Photosensitizers

The inner limiting membrane (ILM) represents a major bottleneck hampering efficient drug delivery to the retina after intravitreal injection. To overcome this barrier, we intend to perforate the ILM by use of a light-based approach which relies on the creation of vapor nanobubbles (VNBs) when irradi...

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Autores principales: De Clerck, Kaat, Accou, Geraldine, Sauvage, Félix, Braeckmans, Kevin, De Smedt, Stefaan C., Remaut, Katrien, Peynshaert, Karen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9416162/
https://www.ncbi.nlm.nih.gov/pubmed/36015342
http://dx.doi.org/10.3390/pharmaceutics14081716
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author De Clerck, Kaat
Accou, Geraldine
Sauvage, Félix
Braeckmans, Kevin
De Smedt, Stefaan C.
Remaut, Katrien
Peynshaert, Karen
author_facet De Clerck, Kaat
Accou, Geraldine
Sauvage, Félix
Braeckmans, Kevin
De Smedt, Stefaan C.
Remaut, Katrien
Peynshaert, Karen
author_sort De Clerck, Kaat
collection PubMed
description The inner limiting membrane (ILM) represents a major bottleneck hampering efficient drug delivery to the retina after intravitreal injection. To overcome this barrier, we intend to perforate the ILM by use of a light-based approach which relies on the creation of vapor nanobubbles (VNBs) when irradiating photosensitizers with high intensity laser pulses. Upon collapse of these VNBs, mechanical effects can disrupt biological structures. As a photosensitizer, we explore indocyanine green (ICG) loaded nanoparticles (NPs) specifically designed for our application. In light of this, ICG liposomes and PLGA ICG NPs were characterized in terms of physicochemical properties, ICG incorporation and VNB formation. ICG liposomes were found to encapsulate significantly higher amounts of ICG compared to PLGA ICG NPs which is reflected in their VNB creating capacity. Since only ICG liposomes were able to induce VNB generation, this class of NPs was further investigated on retinal explants. Here, application of ICG liposomes followed by laser treatment resulted in subtle disruption effects at the ILM where zones of fully ablated ILM were alternated by intact regions. As the interaction between the ICG liposomes and ILM might be insufficient, active targeting strategies or other NP designs might improve the concept to a further extent.
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spelling pubmed-94161622022-08-27 Photodisruption of the Inner Limiting Membrane: Exploring ICG Loaded Nanoparticles as Photosensitizers De Clerck, Kaat Accou, Geraldine Sauvage, Félix Braeckmans, Kevin De Smedt, Stefaan C. Remaut, Katrien Peynshaert, Karen Pharmaceutics Article The inner limiting membrane (ILM) represents a major bottleneck hampering efficient drug delivery to the retina after intravitreal injection. To overcome this barrier, we intend to perforate the ILM by use of a light-based approach which relies on the creation of vapor nanobubbles (VNBs) when irradiating photosensitizers with high intensity laser pulses. Upon collapse of these VNBs, mechanical effects can disrupt biological structures. As a photosensitizer, we explore indocyanine green (ICG) loaded nanoparticles (NPs) specifically designed for our application. In light of this, ICG liposomes and PLGA ICG NPs were characterized in terms of physicochemical properties, ICG incorporation and VNB formation. ICG liposomes were found to encapsulate significantly higher amounts of ICG compared to PLGA ICG NPs which is reflected in their VNB creating capacity. Since only ICG liposomes were able to induce VNB generation, this class of NPs was further investigated on retinal explants. Here, application of ICG liposomes followed by laser treatment resulted in subtle disruption effects at the ILM where zones of fully ablated ILM were alternated by intact regions. As the interaction between the ICG liposomes and ILM might be insufficient, active targeting strategies or other NP designs might improve the concept to a further extent. MDPI 2022-08-17 /pmc/articles/PMC9416162/ /pubmed/36015342 http://dx.doi.org/10.3390/pharmaceutics14081716 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
De Clerck, Kaat
Accou, Geraldine
Sauvage, Félix
Braeckmans, Kevin
De Smedt, Stefaan C.
Remaut, Katrien
Peynshaert, Karen
Photodisruption of the Inner Limiting Membrane: Exploring ICG Loaded Nanoparticles as Photosensitizers
title Photodisruption of the Inner Limiting Membrane: Exploring ICG Loaded Nanoparticles as Photosensitizers
title_full Photodisruption of the Inner Limiting Membrane: Exploring ICG Loaded Nanoparticles as Photosensitizers
title_fullStr Photodisruption of the Inner Limiting Membrane: Exploring ICG Loaded Nanoparticles as Photosensitizers
title_full_unstemmed Photodisruption of the Inner Limiting Membrane: Exploring ICG Loaded Nanoparticles as Photosensitizers
title_short Photodisruption of the Inner Limiting Membrane: Exploring ICG Loaded Nanoparticles as Photosensitizers
title_sort photodisruption of the inner limiting membrane: exploring icg loaded nanoparticles as photosensitizers
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9416162/
https://www.ncbi.nlm.nih.gov/pubmed/36015342
http://dx.doi.org/10.3390/pharmaceutics14081716
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