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Breaking Barriers: Bioinspired Strategies for Targeted Neuronal Delivery to the Central Nervous System

Central nervous system (CNS) disorders encompass a vast spectrum of pathological conditions and represent a growing concern worldwide. Despite the high social and clinical interest in trying to solve these pathologies, there are many challenges to bridge in order to achieve an effective therapy. One...

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Autores principales: Spencer, Ana P., Torrado, Marília, Custódio, Beatriz, Silva-Reis, Sara C., Santos, Sofia D., Leiro, Victoria, Pêgo, Ana P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7076453/
https://www.ncbi.nlm.nih.gov/pubmed/32102252
http://dx.doi.org/10.3390/pharmaceutics12020192
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author Spencer, Ana P.
Torrado, Marília
Custódio, Beatriz
Silva-Reis, Sara C.
Santos, Sofia D.
Leiro, Victoria
Pêgo, Ana P.
author_facet Spencer, Ana P.
Torrado, Marília
Custódio, Beatriz
Silva-Reis, Sara C.
Santos, Sofia D.
Leiro, Victoria
Pêgo, Ana P.
author_sort Spencer, Ana P.
collection PubMed
description Central nervous system (CNS) disorders encompass a vast spectrum of pathological conditions and represent a growing concern worldwide. Despite the high social and clinical interest in trying to solve these pathologies, there are many challenges to bridge in order to achieve an effective therapy. One of the main obstacles to advancements in this field that has hampered many of the therapeutic strategies proposed to date is the presence of the CNS barriers that restrict the access to the brain. However, adequate brain biodistribution and neuronal cells specific accumulation in the targeted site also represent major hurdles to the attainment of a successful CNS treatment. Over the last few years, nanotechnology has taken a step forward towards the development of therapeutics in neurologic diseases and different approaches have been developed to surpass these obstacles. The versatility of the designed nanocarriers in terms of physical and chemical properties, and the possibility to functionalize them with specific moieties, have resulted in improved neurotargeted delivery profiles. With the concomitant progress in biology research, many of these strategies have been inspired by nature and have taken advantage of physiological processes to achieve brain delivery. Here, the different nanosystems and targeting moieties used to achieve a neuronal delivery reported in the open literature are comprehensively reviewed and critically discussed, with emphasis on the most recent bioinspired advances in the field. Finally, we express our view on the paramount challenges in targeted neuronal delivery that need to be overcome for these promising therapeutics to move from the bench to the bedside.
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spelling pubmed-70764532020-03-20 Breaking Barriers: Bioinspired Strategies for Targeted Neuronal Delivery to the Central Nervous System Spencer, Ana P. Torrado, Marília Custódio, Beatriz Silva-Reis, Sara C. Santos, Sofia D. Leiro, Victoria Pêgo, Ana P. Pharmaceutics Review Central nervous system (CNS) disorders encompass a vast spectrum of pathological conditions and represent a growing concern worldwide. Despite the high social and clinical interest in trying to solve these pathologies, there are many challenges to bridge in order to achieve an effective therapy. One of the main obstacles to advancements in this field that has hampered many of the therapeutic strategies proposed to date is the presence of the CNS barriers that restrict the access to the brain. However, adequate brain biodistribution and neuronal cells specific accumulation in the targeted site also represent major hurdles to the attainment of a successful CNS treatment. Over the last few years, nanotechnology has taken a step forward towards the development of therapeutics in neurologic diseases and different approaches have been developed to surpass these obstacles. The versatility of the designed nanocarriers in terms of physical and chemical properties, and the possibility to functionalize them with specific moieties, have resulted in improved neurotargeted delivery profiles. With the concomitant progress in biology research, many of these strategies have been inspired by nature and have taken advantage of physiological processes to achieve brain delivery. Here, the different nanosystems and targeting moieties used to achieve a neuronal delivery reported in the open literature are comprehensively reviewed and critically discussed, with emphasis on the most recent bioinspired advances in the field. Finally, we express our view on the paramount challenges in targeted neuronal delivery that need to be overcome for these promising therapeutics to move from the bench to the bedside. MDPI 2020-02-23 /pmc/articles/PMC7076453/ /pubmed/32102252 http://dx.doi.org/10.3390/pharmaceutics12020192 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 Review
Spencer, Ana P.
Torrado, Marília
Custódio, Beatriz
Silva-Reis, Sara C.
Santos, Sofia D.
Leiro, Victoria
Pêgo, Ana P.
Breaking Barriers: Bioinspired Strategies for Targeted Neuronal Delivery to the Central Nervous System
title Breaking Barriers: Bioinspired Strategies for Targeted Neuronal Delivery to the Central Nervous System
title_full Breaking Barriers: Bioinspired Strategies for Targeted Neuronal Delivery to the Central Nervous System
title_fullStr Breaking Barriers: Bioinspired Strategies for Targeted Neuronal Delivery to the Central Nervous System
title_full_unstemmed Breaking Barriers: Bioinspired Strategies for Targeted Neuronal Delivery to the Central Nervous System
title_short Breaking Barriers: Bioinspired Strategies for Targeted Neuronal Delivery to the Central Nervous System
title_sort breaking barriers: bioinspired strategies for targeted neuronal delivery to the central nervous system
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7076453/
https://www.ncbi.nlm.nih.gov/pubmed/32102252
http://dx.doi.org/10.3390/pharmaceutics12020192
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