Alessio Di Fonzo

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Italy

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Recent Grants

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PREdictive biomarkers in DYsTonia: defining the paradigm of monogenic dystonia to implement the diagnosis and prognosis of undiagnosed forms

Open Date: 2023-01-01

Close Date: 2026-01-01

Grant: Close

Preclinical Screening of Compounds that Modulate the Pathological Interplay between Alpha-synuclein and Synapsin III for the Treatment of Parkinson’s Disease

Open Date: 2022-01-01

Close Date:

Grant: Close

Global Seed Investigator Grant

Open Date: 2020-01-01

Close Date:

Grant: Close

STUDIO LONGITUDINALE PROSPETTICO MULTICENTRICO SUI PREDITTORI DI SVILUPPO DI FLUTTUAZIONI MOTORIE/NON MOTORIE E DISCINESIE IN RELAZIONE AL GENERE NELLA MALATTIA DI PARKINSON

Open Date: 2019-01-01

Close Date:

Grant: Close

Investigation of antiglutamatergic strategies for the neuroprotective therapy of Juvenile Parkinson's disease

Open Date: 2018-09-01

Close Date: 2021-09-01

Articles (10)

Genetic Evidence for Endolysosomal Dysfunction in Parkinson’s Disease: A Critical Overview

Parkinson’s disease (PD) is the second most common neurodegenerative disorder in the aging population, and no disease-modifying therapy has been approved to date. The pathogenesis of PD has been related to many dysfunctional cellular mechanisms, however, most of its monogenic forms are caused by pathogenic variants in genes involved in endolysosomal function (LRRK2, VPS35, VPS13C, and ATP13A2) and synaptic vesicle trafficking (SNCA, RAB39B, SYNJ1, and DNAJC6). Moreover, an extensive search for PD risk variants revealed strong risk variants in several lysosomal genes (e.g., GBA1, SMPD1, TMEM175, and SCARB2) highlighting the key role of lysosomal dysfunction in PD pathogenesis. Furthermore, large genetic studies revealed that PD status is associated with the overall “lysosomal genetic burden”, namely the cumulative effect of strong and weak risk variants affecting lysosomal genes. In this context, understanding the complex mechanisms of impaired vesicular trafficking and dysfunctional endolysosomes in dopaminergic neurons of PD patients is a fundamental step to identifying precise therapeutic targets and developing effective drugs to modify the neurodegenerative process in PD.

Year:

2023

Collaborators (5)

Edoardo Monfrini

University of Milan

ITALY

Federico Giorgi

Associate Professor

University of Bologna

ITALY

Paola Mandich

University of Genoa

ITALY

Vidal Yahya

University of Milan

ITALY

FRANCESCA MORGANTE

Reader in Neurology

St George’s, University of London

UNITED KINGDOM
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