Cargando…
Earliest Mechanisms of Dopaminergic Neurons Sufferance in a Novel Slow Progressing Ex Vivo Model of Parkinson Disease in Rat Organotypic Cultures of Substantia Nigra
The current treatments of Parkinson disease (PD) are ineffective mainly due to the poor understanding of the early events causing the decline of dopaminergic neurons (DOPAn). To overcome this problem, slow progressively degenerating models of PD allowing the study of the pre-clinical phase are cruci...
Autores principales: | , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2019
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6539377/ https://www.ncbi.nlm.nih.gov/pubmed/31064126 http://dx.doi.org/10.3390/ijms20092224 |
_version_ | 1783422373470404608 |
---|---|
author | Dal Ben, Matteo Bongiovanni, Rosario Tuniz, Simone Fioriti, Emanuela Tiribelli, Claudio Moretti, Rita Gazzin, Silvia |
author_facet | Dal Ben, Matteo Bongiovanni, Rosario Tuniz, Simone Fioriti, Emanuela Tiribelli, Claudio Moretti, Rita Gazzin, Silvia |
author_sort | Dal Ben, Matteo |
collection | PubMed |
description | The current treatments of Parkinson disease (PD) are ineffective mainly due to the poor understanding of the early events causing the decline of dopaminergic neurons (DOPAn). To overcome this problem, slow progressively degenerating models of PD allowing the study of the pre-clinical phase are crucial. We recreated in a short ex vivo time scale (96 h) all the features of human PD (needing dozens of years) by challenging organotypic culture of rat substantia nigra with low doses of rotenone. Thus, taking advantage of the existent knowledge, the model was used to perform a time-dependent comparative study of the principal possible causative molecular mechanisms undergoing DOPAn demise. Alteration in the redox state and inflammation started at 3 h, preceding the reduction in DOPAn number (pre-diagnosis phase). The number of DOPAn declined to levels compatible with diagnosis only at 12 h. The decline was accompanied by a persistent inflammation and redox imbalance. Significant microglia activation, apoptosis, a reduction in dopamine vesicle transporters, and the ubiquitination of misfolded protein clearance pathways were late (96 h, consequential) events. The work suggests inflammation and redox imbalance as simultaneous early mechanisms undergoing DOPAn sufferance, to be targeted for a causative treatment aimed to stop/delay PD. |
format | Online Article Text |
id | pubmed-6539377 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2019 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-65393772019-06-04 Earliest Mechanisms of Dopaminergic Neurons Sufferance in a Novel Slow Progressing Ex Vivo Model of Parkinson Disease in Rat Organotypic Cultures of Substantia Nigra Dal Ben, Matteo Bongiovanni, Rosario Tuniz, Simone Fioriti, Emanuela Tiribelli, Claudio Moretti, Rita Gazzin, Silvia Int J Mol Sci Article The current treatments of Parkinson disease (PD) are ineffective mainly due to the poor understanding of the early events causing the decline of dopaminergic neurons (DOPAn). To overcome this problem, slow progressively degenerating models of PD allowing the study of the pre-clinical phase are crucial. We recreated in a short ex vivo time scale (96 h) all the features of human PD (needing dozens of years) by challenging organotypic culture of rat substantia nigra with low doses of rotenone. Thus, taking advantage of the existent knowledge, the model was used to perform a time-dependent comparative study of the principal possible causative molecular mechanisms undergoing DOPAn demise. Alteration in the redox state and inflammation started at 3 h, preceding the reduction in DOPAn number (pre-diagnosis phase). The number of DOPAn declined to levels compatible with diagnosis only at 12 h. The decline was accompanied by a persistent inflammation and redox imbalance. Significant microglia activation, apoptosis, a reduction in dopamine vesicle transporters, and the ubiquitination of misfolded protein clearance pathways were late (96 h, consequential) events. The work suggests inflammation and redox imbalance as simultaneous early mechanisms undergoing DOPAn sufferance, to be targeted for a causative treatment aimed to stop/delay PD. MDPI 2019-05-06 /pmc/articles/PMC6539377/ /pubmed/31064126 http://dx.doi.org/10.3390/ijms20092224 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Dal Ben, Matteo Bongiovanni, Rosario Tuniz, Simone Fioriti, Emanuela Tiribelli, Claudio Moretti, Rita Gazzin, Silvia Earliest Mechanisms of Dopaminergic Neurons Sufferance in a Novel Slow Progressing Ex Vivo Model of Parkinson Disease in Rat Organotypic Cultures of Substantia Nigra |
title | Earliest Mechanisms of Dopaminergic Neurons Sufferance in a Novel Slow Progressing Ex Vivo Model of Parkinson Disease in Rat Organotypic Cultures of Substantia Nigra |
title_full | Earliest Mechanisms of Dopaminergic Neurons Sufferance in a Novel Slow Progressing Ex Vivo Model of Parkinson Disease in Rat Organotypic Cultures of Substantia Nigra |
title_fullStr | Earliest Mechanisms of Dopaminergic Neurons Sufferance in a Novel Slow Progressing Ex Vivo Model of Parkinson Disease in Rat Organotypic Cultures of Substantia Nigra |
title_full_unstemmed | Earliest Mechanisms of Dopaminergic Neurons Sufferance in a Novel Slow Progressing Ex Vivo Model of Parkinson Disease in Rat Organotypic Cultures of Substantia Nigra |
title_short | Earliest Mechanisms of Dopaminergic Neurons Sufferance in a Novel Slow Progressing Ex Vivo Model of Parkinson Disease in Rat Organotypic Cultures of Substantia Nigra |
title_sort | earliest mechanisms of dopaminergic neurons sufferance in a novel slow progressing ex vivo model of parkinson disease in rat organotypic cultures of substantia nigra |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6539377/ https://www.ncbi.nlm.nih.gov/pubmed/31064126 http://dx.doi.org/10.3390/ijms20092224 |
work_keys_str_mv | AT dalbenmatteo earliestmechanismsofdopaminergicneuronssufferanceinanovelslowprogressingexvivomodelofparkinsondiseaseinratorganotypicculturesofsubstantianigra AT bongiovannirosario earliestmechanismsofdopaminergicneuronssufferanceinanovelslowprogressingexvivomodelofparkinsondiseaseinratorganotypicculturesofsubstantianigra AT tunizsimone earliestmechanismsofdopaminergicneuronssufferanceinanovelslowprogressingexvivomodelofparkinsondiseaseinratorganotypicculturesofsubstantianigra AT fioritiemanuela earliestmechanismsofdopaminergicneuronssufferanceinanovelslowprogressingexvivomodelofparkinsondiseaseinratorganotypicculturesofsubstantianigra AT tiribelliclaudio earliestmechanismsofdopaminergicneuronssufferanceinanovelslowprogressingexvivomodelofparkinsondiseaseinratorganotypicculturesofsubstantianigra AT morettirita earliestmechanismsofdopaminergicneuronssufferanceinanovelslowprogressingexvivomodelofparkinsondiseaseinratorganotypicculturesofsubstantianigra AT gazzinsilvia earliestmechanismsofdopaminergicneuronssufferanceinanovelslowprogressingexvivomodelofparkinsondiseaseinratorganotypicculturesofsubstantianigra |