Neuroprotective strategies against neurodegeneration in cellular model systems

In the present study we analyzed new neuroprotective therapeutical strategies in PD (Parkinson’s disease) and AD (Alzheimer’s disease). Current therapeutic strategies for treating PD and AD offer mainly transient symptomatic relief but it is still impossible to block the loss of neuron and then the...

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Main Author: Eleuteri, Simona Carmen <1979>
Other Authors: Contestabile, Antonio
Format: Doctoral Thesis
Language:en
Published: Alma Mater Studiorum - Università di Bologna 2010
Subjects:
Online Access:http://amsdottorato.unibo.it/2831/
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spelling ndltd-unibo.it-oai-amsdottorato.cib.unibo.it-28312014-03-24T16:28:40Z Neuroprotective strategies against neurodegeneration in cellular model systems Eleuteri, Simona Carmen <1979> BIO/09 Fisiologia In the present study we analyzed new neuroprotective therapeutical strategies in PD (Parkinson’s disease) and AD (Alzheimer’s disease). Current therapeutic strategies for treating PD and AD offer mainly transient symptomatic relief but it is still impossible to block the loss of neuron and then the progression of PD and AD. There is considerable consensus that the increased production and/or aggregation of α- synuclein (α-syn) and β-amyloid peptide (Aβ), plays a central role in the pathogenesis of PD, related synucleinopathies and AD. Therefore, we identified antiamyloidogenic compounds and we tested their effect as neuroprotective drug-like molecules against α-syn and β-amyloid cytotoxicity in PC12. Herein, we show that two nitro-catechol compounds (entacapone and tolcapone) and 5 cathecol-containing compounds (dopamine, pyrogallol, gallic acid, caffeic acid and quercetin) with antioxidant and anti-inflammatory properties, are potent inhibitors of α-syn and β-amyloid oligomerization and fibrillization. Subsequently, we show that the inhibition of α-syn and β-amyloid oligomerization and fibrillization is correlated with the neuroprotection of these compounds against the α-syn and β-amyloid-induced cytotoxicity in PC12. Finally, we focused on the study of the neuroprotective role of microglia and on the possibility that the neuroprotection properties of these cells could be use as therapeutical strategy in PD and AD. Here, we have used an in vitro model to demonstrate neuroprotection of a 48 h-microglial conditioned medium (MCM) towards cerebellar granule neurons (CGNs) challenged with the neurotoxin 6-hydroxydopamine (6-OHDA), which induces a Parkinson-like neurodegeneration, with Aβ42, which induces a Alzheimer-like neurodegeneration, and glutamate, involved in the major neurodegenerative diseases. We show that MCM nearly completely protects CGNs from 6-OHDA neurotoxicity, partially from glutamate excitotoxicity but not from Aβ42 toxin. Alma Mater Studiorum - Università di Bologna Contestabile, Antonio 2010-04-20 Doctoral Thesis PeerReviewed application/pdf en http://amsdottorato.unibo.it/2831/ info:eu-repo/semantics/openAccess
collection NDLTD
language en
format Doctoral Thesis
sources NDLTD
topic BIO/09 Fisiologia
spellingShingle BIO/09 Fisiologia
Eleuteri, Simona Carmen <1979>
Neuroprotective strategies against neurodegeneration in cellular model systems
description In the present study we analyzed new neuroprotective therapeutical strategies in PD (Parkinson’s disease) and AD (Alzheimer’s disease). Current therapeutic strategies for treating PD and AD offer mainly transient symptomatic relief but it is still impossible to block the loss of neuron and then the progression of PD and AD. There is considerable consensus that the increased production and/or aggregation of α- synuclein (α-syn) and β-amyloid peptide (Aβ), plays a central role in the pathogenesis of PD, related synucleinopathies and AD. Therefore, we identified antiamyloidogenic compounds and we tested their effect as neuroprotective drug-like molecules against α-syn and β-amyloid cytotoxicity in PC12. Herein, we show that two nitro-catechol compounds (entacapone and tolcapone) and 5 cathecol-containing compounds (dopamine, pyrogallol, gallic acid, caffeic acid and quercetin) with antioxidant and anti-inflammatory properties, are potent inhibitors of α-syn and β-amyloid oligomerization and fibrillization. Subsequently, we show that the inhibition of α-syn and β-amyloid oligomerization and fibrillization is correlated with the neuroprotection of these compounds against the α-syn and β-amyloid-induced cytotoxicity in PC12. Finally, we focused on the study of the neuroprotective role of microglia and on the possibility that the neuroprotection properties of these cells could be use as therapeutical strategy in PD and AD. Here, we have used an in vitro model to demonstrate neuroprotection of a 48 h-microglial conditioned medium (MCM) towards cerebellar granule neurons (CGNs) challenged with the neurotoxin 6-hydroxydopamine (6-OHDA), which induces a Parkinson-like neurodegeneration, with Aβ42, which induces a Alzheimer-like neurodegeneration, and glutamate, involved in the major neurodegenerative diseases. We show that MCM nearly completely protects CGNs from 6-OHDA neurotoxicity, partially from glutamate excitotoxicity but not from Aβ42 toxin.
author2 Contestabile, Antonio
author_facet Contestabile, Antonio
Eleuteri, Simona Carmen <1979>
author Eleuteri, Simona Carmen <1979>
author_sort Eleuteri, Simona Carmen <1979>
title Neuroprotective strategies against neurodegeneration in cellular model systems
title_short Neuroprotective strategies against neurodegeneration in cellular model systems
title_full Neuroprotective strategies against neurodegeneration in cellular model systems
title_fullStr Neuroprotective strategies against neurodegeneration in cellular model systems
title_full_unstemmed Neuroprotective strategies against neurodegeneration in cellular model systems
title_sort neuroprotective strategies against neurodegeneration in cellular model systems
publisher Alma Mater Studiorum - Università di Bologna
publishDate 2010
url http://amsdottorato.unibo.it/2831/
work_keys_str_mv AT eleuterisimonacarmen1979 neuroprotectivestrategiesagainstneurodegenerationincellularmodelsystems
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