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Graphene Oxide Nanosheets Reduce Astrocyte Reactivity to Inflammation and Ameliorate Experimental Autoimmune Encephalomyelitis

Authors :
European Commission
Generalitat de Catalunya
Ministerio de Ciencia, Innovación y Universidades (España)
Agencia Estatal de Investigación (España)
Lozano, Neus [0000-0002-9026-1743]
Cellot, Giada [0000-0001-9198-8402]
Kostarelos, Kostas [0000-0002-2224-6672]
Ballerini, Laura [0000-0001-8420-0787]
Di Mauro, Giuseppe
Amoriello, Roberta
Lozano, Neus
Carnasciali, Alberto
Guasti, Daniele
Becucci, Maurizio
Cellot, Giada
Kostarelos, Kostas
Ballerini, Clara
Ballerini, Laura
European Commission
Generalitat de Catalunya
Ministerio de Ciencia, Innovación y Universidades (España)
Agencia Estatal de Investigación (España)
Lozano, Neus [0000-0002-9026-1743]
Cellot, Giada [0000-0001-9198-8402]
Kostarelos, Kostas [0000-0002-2224-6672]
Ballerini, Laura [0000-0001-8420-0787]
Di Mauro, Giuseppe
Amoriello, Roberta
Lozano, Neus
Carnasciali, Alberto
Guasti, Daniele
Becucci, Maurizio
Cellot, Giada
Kostarelos, Kostas
Ballerini, Clara
Ballerini, Laura
Publication Year :
2023

Abstract

In neuroinflammation, astrocytes play multifaceted roles that regulate the neuronal environment. Astrocytes sense and respond to pro-inflammatory cytokines (CKs) and, by a repertoire of intracellular Ca2+ signaling, contribute to disease progression. Therapeutic approaches wish to reduce the overactivation in Ca2+ signaling in inflammatory-reactive astrocytes to restore dysregulated cellular changes. Cell-targeting therapeutics might take advantage by the use of nanomaterial-multifunctional platforms such as graphene oxide (GO). GO biomedical applications in the nervous system involve therapeutic delivery and sensing, and GO flakes were shown to enable interfacing of neuronal and glial membrane dynamics. We exploit organotypic spinal cord cultures and optical imaging to explore Ca2+ changes in astrocytes, and we report, when spinal tissue is exposed to CKs, neuroinflammatory-associated modulation of resident glia. We show the efficacy of GO to revert these dynamic changes in astrocytic reactivity to CKs, and we translate this potential in an animal model of immune-mediated neuroinflammatory disease.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1406080622
Document Type :
Electronic Resource