TY - JOUR
T1 - Early expression of neuronal dopaminergic markers in a Parkinson’s disease model in rats implanted with enteric stem cells (ENSCs)
AU - Parra-Cid, Carmen
AU - Orozco-Castillo, Eduardo
AU - García-López, Julieta
AU - Contreras-Figueroa, Elena
AU - Ramos-Languren, Laura E.
AU - Ibarra, Clemente
AU - Carreón-Rodríguez, Alfonso
AU - Aschner, Michael
AU - Königsberg, Mina
AU - Santamaría, Abel
N1 - Funding Information:
This work is supported by Consejo Nacional de Ciencia y Tecnología (grant no.201836), Project Grants INR-19/14 (C.P.), and Salud-CONACyT 201836 (B. Sc. Ana Brena and C.P.). M.A. was supported in part by grants from the National Institute of Environmental Health Sciences (NIEHS) (Grant nos. R01 ES10563, R01 ES020852, and R01 ES07331).
Funding Information:
This work is supported by Consejo Nacional de Ciencia y Tecnolog?a (grant no.201836), Project Grants INR-19/14 (C.P.), and Salud-CONACyT 201836 (B. Sc. Ana Brena and C.P.). M.A. was supported in part by grants from the National Institute of Environmental Health Sciences (NIEHS) (Grant nos. R01 ES10563, R01 ES020852, and R01 ES07331). Carmen Parra-Cid presents this article as the first author as it encompasses her work and efforts to obtain a Ph.D. degree at the Universidad Aut?noma Metropolitana-Iztapalapa (UAM, Mexico). The authors wish to express sincere gratitude to the Programa de Posgrado en Biolog?a Experimental from the UAM-Iztapalapa for all the support provided throughout this study. The authors also gratefully acknowledge Xochitl Guerrero-Alva and Dr. Ana Cristina D?az-Alarc?n for their technical support, and Dr. Armando Luna-L?pez for his valuable suggestions.
Publisher Copyright:
© 2020 Bentham Science Publishers.
PY - 2020
Y1 - 2020
N2 - Background: Parkinson’s Disease (PD) is a common neurodegenerative disorder affecting the dopaminergic (DAergic) system. Replacement therapy is a promising alternative aimed at reconstructing the cytoarchitecture of affected brain regions in PD. Experimental approaches, such as the replacement of DAergic neurons with cells obtained from the Enteric Nervous System (ENS) has yet to be explored. Objective: To establish and characterize a cell replacement strategy with ENS Cells (ENSCs) in a PD model in rats. Methods: Since ENSCs can develop mature DAergic phenotypes, here we cultured undifferentiated cells from the myenteric plexus of newborn rats, establishing that they exhibit multipotential characteristics. These cells were characterized and further implanted in the Substantia nigra pars compacta (SNpc) of adult rats previously lesioned by a retrograde degenerative model produced by intrastriatal injection of 6-Hydroxydopamine (6-OHDA). DAergic markers were assessed in implants to validate their viability and possible differentiation once implanted. Results: Cell cultures were viable, exhibited stem cell features and remained partially undifferentiated until the time of implant. The retrograde lesion induced by 6-OHDA produced DAergic denervation, reducing the number of fibers and cells in the SNpc. Implantation of ENSCs in the SNpc of 6-OHDAlesioned rats was tracked after 5 and 10 days post-implant. During that time, the implant increased selective neuronal and DAergic markers, Including Microtubule-Associated Protein 2 (MAP-2), Dopamine Transporter (DAT), and Tyrosine Hydroxylase (TH). Conclusion: Our novel results suggest that ENSCs possess a differentiating, proliferative and restorative potential that may offer therapeutic modalities to attenuate neurodegenerative events with the inherent demise of DAergic neurons.
AB - Background: Parkinson’s Disease (PD) is a common neurodegenerative disorder affecting the dopaminergic (DAergic) system. Replacement therapy is a promising alternative aimed at reconstructing the cytoarchitecture of affected brain regions in PD. Experimental approaches, such as the replacement of DAergic neurons with cells obtained from the Enteric Nervous System (ENS) has yet to be explored. Objective: To establish and characterize a cell replacement strategy with ENS Cells (ENSCs) in a PD model in rats. Methods: Since ENSCs can develop mature DAergic phenotypes, here we cultured undifferentiated cells from the myenteric plexus of newborn rats, establishing that they exhibit multipotential characteristics. These cells were characterized and further implanted in the Substantia nigra pars compacta (SNpc) of adult rats previously lesioned by a retrograde degenerative model produced by intrastriatal injection of 6-Hydroxydopamine (6-OHDA). DAergic markers were assessed in implants to validate their viability and possible differentiation once implanted. Results: Cell cultures were viable, exhibited stem cell features and remained partially undifferentiated until the time of implant. The retrograde lesion induced by 6-OHDA produced DAergic denervation, reducing the number of fibers and cells in the SNpc. Implantation of ENSCs in the SNpc of 6-OHDAlesioned rats was tracked after 5 and 10 days post-implant. During that time, the implant increased selective neuronal and DAergic markers, Including Microtubule-Associated Protein 2 (MAP-2), Dopamine Transporter (DAT), and Tyrosine Hydroxylase (TH). Conclusion: Our novel results suggest that ENSCs possess a differentiating, proliferative and restorative potential that may offer therapeutic modalities to attenuate neurodegenerative events with the inherent demise of DAergic neurons.
KW - 6-hydroxydopamine
KW - Dopaminergic markers
KW - Enteric nervous system
KW - Parkinson’s disease
KW - Replacement therapy
KW - Stem cells
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U2 - 10.2174/1871527319666200417123948
DO - 10.2174/1871527319666200417123948
M3 - Article
C2 - 32303175
AN - SCOPUS:85086279067
SN - 1871-5273
VL - 19
SP - 148
EP - 162
JO - CNS and Neurological Disorders - Drug Targets
JF - CNS and Neurological Disorders - Drug Targets
IS - 2
ER -