Nutraceuticals represent complementary or alternative beneficial products to the expensive and high-tech therapeutic tools in modern medicine. Nowadays, their medical or health benefits in preventing or treating different types of diseases is widely accepted, due to fewer side effects than synthetic drugs, improved bioavailability and long half-life. Among herbal and natural compounds, curcumin is a very attractive herbal supplement considering its multipurpose properties. The potential effects of curcumin on glia cells and its therapeutic and protective properties in central nervous system (CNS)-related disorders is relevant. However, curcumin is unstable and easily degraded or metabolized into other forms posing limits to its clinical development. This is particularly important in brain pathologies determined blood brain barrier (BBB) obstacle. To enhance the stability and bioavailability of curcumin, many studies focused on the design and development of curcumin nanodelivery systems (nanoparticles, micelles, dendrimers, and diverse nanocarriers). These nanoconstructs can increase curcumin stability, solubility, in vivo uptake, bioactivity and safety. Recently, several studies have reported on a curcumin exosome-based delivery system, showing great therapeutical potential. The present work aims to review the current available data in improving bioactivity of curcumin in treatment or prevention of neurological disorders.

Novel therapeutic delivery of Nanocurcumin in central nervous system related disorders / Panzarini, Elisa; Mariano, Stefania; Tacconi, Stefano; Carata, Elisabetta; Tata, Ada Maria; Dini, Luciana. - In: NANOMATERIALS. - ISSN 2079-4991. - 11:1(2020). [10.3390/nano11010002]

Novel therapeutic delivery of Nanocurcumin in central nervous system related disorders

Tacconi, Stefano;Tata, Ada Maria
Penultimo
Writing – Review & Editing
;
Dini, Luciana
Ultimo
2020

Abstract

Nutraceuticals represent complementary or alternative beneficial products to the expensive and high-tech therapeutic tools in modern medicine. Nowadays, their medical or health benefits in preventing or treating different types of diseases is widely accepted, due to fewer side effects than synthetic drugs, improved bioavailability and long half-life. Among herbal and natural compounds, curcumin is a very attractive herbal supplement considering its multipurpose properties. The potential effects of curcumin on glia cells and its therapeutic and protective properties in central nervous system (CNS)-related disorders is relevant. However, curcumin is unstable and easily degraded or metabolized into other forms posing limits to its clinical development. This is particularly important in brain pathologies determined blood brain barrier (BBB) obstacle. To enhance the stability and bioavailability of curcumin, many studies focused on the design and development of curcumin nanodelivery systems (nanoparticles, micelles, dendrimers, and diverse nanocarriers). These nanoconstructs can increase curcumin stability, solubility, in vivo uptake, bioactivity and safety. Recently, several studies have reported on a curcumin exosome-based delivery system, showing great therapeutical potential. The present work aims to review the current available data in improving bioactivity of curcumin in treatment or prevention of neurological disorders.
2020
blood brain barrier; curcumin; drug delivery; glioblastoma; nanomaterials; neurological disorders
01 Pubblicazione su rivista::01g Articolo di rassegna (Review)
Novel therapeutic delivery of Nanocurcumin in central nervous system related disorders / Panzarini, Elisa; Mariano, Stefania; Tacconi, Stefano; Carata, Elisabetta; Tata, Ada Maria; Dini, Luciana. - In: NANOMATERIALS. - ISSN 2079-4991. - 11:1(2020). [10.3390/nano11010002]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1471287
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