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Synthesis and Intracellular Uptake of Rhodamine–Nucleolipid Conjugates into a Nanoemulsion Vehicle

[Image: see text] Neurodegenerative diseases represent some of the greatest challenges for both basic science and clinical medicine. Due to their prevalence and the lack of known biochemical-based treatments, these complex pathologies result in an increasing societal cost. Increasing genetic and neu...

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Autores principales: Cunha, Anthony, Prévot, Geoffrey, Mousli, Yannick, Barthélémy, Philippe, Crauste-Manciet, Sylvie, Dehay, Benjamin, Desvergnes, Valérie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2020
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7097973/
https://www.ncbi.nlm.nih.gov/pubmed/32226861
http://dx.doi.org/10.1021/acsomega.9b03992
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author Cunha, Anthony
Prévot, Geoffrey
Mousli, Yannick
Barthélémy, Philippe
Crauste-Manciet, Sylvie
Dehay, Benjamin
Desvergnes, Valérie
author_facet Cunha, Anthony
Prévot, Geoffrey
Mousli, Yannick
Barthélémy, Philippe
Crauste-Manciet, Sylvie
Dehay, Benjamin
Desvergnes, Valérie
author_sort Cunha, Anthony
collection PubMed
description [Image: see text] Neurodegenerative diseases represent some of the greatest challenges for both basic science and clinical medicine. Due to their prevalence and the lack of known biochemical-based treatments, these complex pathologies result in an increasing societal cost. Increasing genetic and neuropathological evidence indicates that lysosomal impairment may be a common factor linking these diseases, demanding the development of therapeutic strategies aimed at restoring the lysosomal function. Here, we propose the design and synthesis of a nucleolipid conjugate as a nonviral chemical nanovector to specifically target neuronal cells and intracellular organelles. Herein, thymidine, appropriately substituted to increase its lipophilicity, was used as a model nucleoside and a fluorophore moiety, covalently bound to the nucleoside, allowed the monitoring of nucleolipid internalization in vitro. To improve nucleolipid protection and cellular uptake, these conjugates were formulated in nanoemulsions. In vitro biological assays demonstrated cell uptake- and internalization-associated colocalization with lysosomal markers. Overall, this nucleolipid–nanoemulsion-based formulation represents a promising drug-delivery tool to target the central nervous system, able to deliver drugs to restore the impaired lysosomal function.
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spelling pubmed-70979732020-03-27 Synthesis and Intracellular Uptake of Rhodamine–Nucleolipid Conjugates into a Nanoemulsion Vehicle Cunha, Anthony Prévot, Geoffrey Mousli, Yannick Barthélémy, Philippe Crauste-Manciet, Sylvie Dehay, Benjamin Desvergnes, Valérie ACS Omega [Image: see text] Neurodegenerative diseases represent some of the greatest challenges for both basic science and clinical medicine. Due to their prevalence and the lack of known biochemical-based treatments, these complex pathologies result in an increasing societal cost. Increasing genetic and neuropathological evidence indicates that lysosomal impairment may be a common factor linking these diseases, demanding the development of therapeutic strategies aimed at restoring the lysosomal function. Here, we propose the design and synthesis of a nucleolipid conjugate as a nonviral chemical nanovector to specifically target neuronal cells and intracellular organelles. Herein, thymidine, appropriately substituted to increase its lipophilicity, was used as a model nucleoside and a fluorophore moiety, covalently bound to the nucleoside, allowed the monitoring of nucleolipid internalization in vitro. To improve nucleolipid protection and cellular uptake, these conjugates were formulated in nanoemulsions. In vitro biological assays demonstrated cell uptake- and internalization-associated colocalization with lysosomal markers. Overall, this nucleolipid–nanoemulsion-based formulation represents a promising drug-delivery tool to target the central nervous system, able to deliver drugs to restore the impaired lysosomal function. American Chemical Society 2020-03-12 /pmc/articles/PMC7097973/ /pubmed/32226861 http://dx.doi.org/10.1021/acsomega.9b03992 Text en Copyright © 2020 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Cunha, Anthony
Prévot, Geoffrey
Mousli, Yannick
Barthélémy, Philippe
Crauste-Manciet, Sylvie
Dehay, Benjamin
Desvergnes, Valérie
Synthesis and Intracellular Uptake of Rhodamine–Nucleolipid Conjugates into a Nanoemulsion Vehicle
title Synthesis and Intracellular Uptake of Rhodamine–Nucleolipid Conjugates into a Nanoemulsion Vehicle
title_full Synthesis and Intracellular Uptake of Rhodamine–Nucleolipid Conjugates into a Nanoemulsion Vehicle
title_fullStr Synthesis and Intracellular Uptake of Rhodamine–Nucleolipid Conjugates into a Nanoemulsion Vehicle
title_full_unstemmed Synthesis and Intracellular Uptake of Rhodamine–Nucleolipid Conjugates into a Nanoemulsion Vehicle
title_short Synthesis and Intracellular Uptake of Rhodamine–Nucleolipid Conjugates into a Nanoemulsion Vehicle
title_sort synthesis and intracellular uptake of rhodamine–nucleolipid conjugates into a nanoemulsion vehicle
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7097973/
https://www.ncbi.nlm.nih.gov/pubmed/32226861
http://dx.doi.org/10.1021/acsomega.9b03992
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