Targeting specific brain districts for advanced nanotherapies: A review from the perspective of precision nanomedicine

Author:

Sierri Giulia1ORCID,Patrucco Michela12ORCID,Ferrario Davide1ORCID,Renda Antonio1ORCID,Comi Susanna1ORCID,Ciprandi Matilde3,Fontanini Veronica4ORCID,Sica Francesco Saverio1ORCID,Sesana Silvia1ORCID,Costa Verdugo Marta5,Kravicz Marcelo1ORCID,Salassa Luca567ORCID,Busnelli Marta8ORCID,Re Francesca1ORCID

Affiliation:

1. School of Medicine and Surgery University of Milano‐Bicocca Monza Italy

2. PhD program in Neuroscience, School of Medicine and Surgery, University of Milano‐Bicocca, Italy

3. Department of Biotechnology and Biosciences University of Milano‐Bicocca Milan Italy

4. Department of Life Sciences University of Trieste Trieste Italy

5. Donostia International Physics Center (DIPC) Donostia Euskadi Spain

6. Polimero eta Material Aurreratuak: Fisika, Kimika eta Teknologia, Kimika Fakultatea Euskal Herriko Unibertsitatea UPV/EHU Donostia Spain

7. Basque Foundation for Science Ikerbasque Bilbao Spain

8. Institute of Neuroscience, National Research Council Italy

Abstract

AbstractNumerous studies are focused on nanoparticle penetration into the brain functionalizing them with ligands useful to cross the blood–brain barrier. However, cell targeting is also crucial, given that cerebral pathologies frequently affect specific brain cells or areas. Functionalize nanoparticles with the most appropriate targeting elements, tailor their physical parameters, and consider the brain's complex anatomy are essential aspects for precise therapy and diagnosis. In this review, we addressed the state of the art on targeted nanoparticles for drug delivery in diseased brain regions, outlining progress, limitations, and ongoing challenges. We also provide a summary and overview of general design principles that can be applied to nanotherapies, considering the areas and cell types affected by the most common brain disorders. We then emphasize lingering uncertainties that hinder the translational possibilities of nanotherapies for clinical use. Finally, we offer suggestions for continuing preclinical investigations to enhance the overall effectiveness of precision nanomedicine in addressing neurological conditions.This article is categorized under: Therapeutic Approaches and Drug Discovery > Nanomedicine for Neurological Disease Therapeutic Approaches and Drug Discovery > Emerging Technologies

Funder

European Commission

Agencia Estatal de Investigación

Publisher

Wiley

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