Bioactivated Glucoraphanin Exerts a Potential Protective Effect in an In Vitro Model of Parkinson’s Disease: A Transcriptomic Study

Parkinson’s disease (PD) is a progressive neurodegenerative disorder characterized by both motor and non-motor symptoms. Oxidative stress is involved in disease pathogenesis, with the consequent damage to DNA. Nowadays, phytocompounds attract much interest for their capacity to modulate some of the pathogenic mechanisms of PD. Glucosinolates (GLs) and their derivatives, isothiocyanate (ITC), obtained by GLs hydrolysis by myrosinase (MYR), showed neuroprotective properties. In this study, we evaluated the protective effects of pre- and post-treatment with the GL glucoraphanin (GRA) bioactivated with MYR in an in vitro model of PD, namely differentiated SH-SY5Y cells treated with the toxin MPP+. With this aim, we performed transcriptomic analysis using next-generation sequencing (NGS). We observed that GRA + MYR pre-treatment modulated Biological Process (BP) of Gene Ontology (GO) and Reactome pathways associated with oxidative stress response and DNA repair mechanisms. In the post-treatment group, BP and pathways associated with DNA processes were also overrepresented in association with those correlated to oxidative stress. Indeed, some differentially expressed genes associated with oxidative stress response were upregulated, such as SOD1, whose protein levels also increased. The results of this exploratory study suggested that GRA + MYR may induce protective effects and, in particular, pre-treatment may modulate genes involved in DNA repair, while the post-treatment may exert a protective action against oxidative stress.

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Journal
International Journal of Molecular Sciences
Published
2026-09-16
DOI
https://doi.org/10.3390/ijms27188232
Primary Topic
Genomics, phytochemicals, and oxidative stress
Type
article
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article

Bioactivated Glucoraphanin Exerts a Potential Protective Effect in an In Vitro Model of Parkinson’s Disease: A Transcriptomic Study

Luigi Chiricosta, Agnese Gugliandolo, Fulvio Mattivi, Claudia Muscarà et al.
International Journal of Molecular Sciences
Genomics, phytochemicals, and oxidative stress
article

Bioactivated Glucoraphanin Exerts a Potential Protective Effect in an In Vitro Model of Parkinson’s Disease: A Transcriptomic Study

Luigi Chiricosta, Agnese Gugliandolo, Fulvio Mattivi, Claudia Muscarà, Emanuela Mazzon, Luca Tagliavento, Daniele Perenzoni, Francesco Meneguzzo, Veronica Argento, Alessia Floramo
article en

Abstract

Parkinson’s disease (PD) is a progressive neurodegenerative disorder characterized by both motor and non-motor symptoms. Oxidative stress is involved in disease pathogenesis, with the consequent damage to DNA. Nowadays, phytocompounds attract much interest for their capacity to modulate some of the pathogenic mechanisms of PD. Glucosinolates (GLs) and their derivatives, isothiocyanate (ITC), obtained by GLs hydrolysis by myrosinase (MYR), showed neuroprotective properties. In this study, we evaluated the protective effects of pre- and post-treatment with the GL glucoraphanin (GRA) bioactivated with MYR in an in vitro model of PD, namely differentiated SH-SY5Y cells treated with the toxin MPP+. With this aim, we performed transcriptomic analysis using next-generation sequencing (NGS). We observed that GRA + MYR pre-treatment modulated Biological Process (BP) of Gene Ontology (GO) and Reactome pathways associated with oxidative stress response and DNA repair mechanisms. In the post-treatment group, BP and pathways associated with DNA processes were also overrepresented in association with those correlated to oxidative stress. Indeed, some differentially expressed genes associated with oxidative stress response were upregulated, such as SOD1, whose protein levels also increased. The results of this exploratory study suggested that GRA + MYR may induce protective effects and, in particular, pre-treatment may modulate genes involved in DNA repair, while the post-treatment may exert a protective action against oxidative stress.

International Journal of Molecular SciencesVol. 27(18)
Fondazione Edmund Mach (IT), Local Initiatives Support Corporation (US), University of Chieti-Pescara (IT), Centro Neurolesi Bonino Pulejo (IT)
Openalex Percentile: Top 18%
Genomics, phytochemicals, and oxidative stress
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