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Brain Homogenate of a Rat Model of Alzheimer's Disease Modifies the Secretome of 3D Cultured Periodontal Ligament Stem Cells: A Potential Neuroregenerative Therapy

BACKGROUND: Alzheimer's disease (AD) is a progressive neurodegenerative disease leading to neuronal cell death and manifested by cognitive disorders and behavioral impairment. Mesenchymal stem cells (MSCs) are one of the most promising candidates to stimulate neuroregeneration and prevent disea...

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Autores principales: Mohebichamkhorami, Fariba, Niknam, Zahra, Khoramjouy, Mona, Heidarli, Elmira, Ghasemi, Rasoul, Hosseinzadeh, Simzar, Mohseni, Seyedeh Sarvenaz, Hajikarim-Hamedani, Arman, Heidari, Amirhossein, Ghane, Yekta, Mahmoudifard, Matin, Zali, Hakimeh, Faizi, Mehrdad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Brieflands 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9990517/
https://www.ncbi.nlm.nih.gov/pubmed/36896321
http://dx.doi.org/10.5812/ijpr-133668
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author Mohebichamkhorami, Fariba
Niknam, Zahra
Khoramjouy, Mona
Heidarli, Elmira
Ghasemi, Rasoul
Hosseinzadeh, Simzar
Mohseni, Seyedeh Sarvenaz
Hajikarim-Hamedani, Arman
Heidari, Amirhossein
Ghane, Yekta
Mahmoudifard, Matin
Zali, Hakimeh
Faizi, Mehrdad
author_facet Mohebichamkhorami, Fariba
Niknam, Zahra
Khoramjouy, Mona
Heidarli, Elmira
Ghasemi, Rasoul
Hosseinzadeh, Simzar
Mohseni, Seyedeh Sarvenaz
Hajikarim-Hamedani, Arman
Heidari, Amirhossein
Ghane, Yekta
Mahmoudifard, Matin
Zali, Hakimeh
Faizi, Mehrdad
author_sort Mohebichamkhorami, Fariba
collection PubMed
description BACKGROUND: Alzheimer's disease (AD) is a progressive neurodegenerative disease leading to neuronal cell death and manifested by cognitive disorders and behavioral impairment. Mesenchymal stem cells (MSCs) are one of the most promising candidates to stimulate neuroregeneration and prevent disease progression. Optimization of MSC culturing protocols is a key strategy to increase the therapeutic potential of the secretome. OBJECTIVES: Here, we investigated the effect of brain homogenate of a rat model of AD (BH-AD) on the enhancement of protein secretion in the secretome of periodontal ligament stem cells (PDLSCs) when cultured in a 3D environment. Moreover, the effect of this modified secretome was examined on neural cells to study the impact of the conditioned medium (CM) on stimulation of regeneration or immunomodulation in AD. METHODS: PDLSCs were isolated and characterized. Then, the spheroids of PDLSCs were generated in a modified 3D culture plate. PDLSCs-derived CM was prepared in the presence of BH-AD (PDLSCs-HCM) and the absence of it (PDLSCs-CM). The viability of C6 glioma cells was assessed after exposure to different concentrations of both CMs. Then, a proteomic analysis was performed on the CMs. RESULTS: Differentiation into adipocytes and high expression of MSCs markers verified the precise isolation of PDLSCs. The PDLSC spheroids were formed after 7 days of 3D culturing, and their viability was confirmed. The effect of CMs on C6 glioma cell viability showed that both CMs at low concentrations (> 20 mg/mL) had no cytotoxic effect on C6 neural cells. The results showed that PDLSCs-HCM contains higher concentrations of proteins compared to PDLSCs-CM, including Src-homology 2 domain (SH2)-containing PTPs (SHP-1) and muscle glycogen phosphorylase (PYGM) proteins. SHP-1 has a role in nerve regeneration, and PYGM is involved in glycogen metabolism. CONCLUSIONS: The modified secretome derived from 3D cultured spheroids of PDLSCs treated by BH-AD as a reservoir of regenerating neural factors can serve as a potential source for AD treatment.
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spelling pubmed-99905172023-03-08 Brain Homogenate of a Rat Model of Alzheimer's Disease Modifies the Secretome of 3D Cultured Periodontal Ligament Stem Cells: A Potential Neuroregenerative Therapy Mohebichamkhorami, Fariba Niknam, Zahra Khoramjouy, Mona Heidarli, Elmira Ghasemi, Rasoul Hosseinzadeh, Simzar Mohseni, Seyedeh Sarvenaz Hajikarim-Hamedani, Arman Heidari, Amirhossein Ghane, Yekta Mahmoudifard, Matin Zali, Hakimeh Faizi, Mehrdad Iran J Pharm Res Research Article BACKGROUND: Alzheimer's disease (AD) is a progressive neurodegenerative disease leading to neuronal cell death and manifested by cognitive disorders and behavioral impairment. Mesenchymal stem cells (MSCs) are one of the most promising candidates to stimulate neuroregeneration and prevent disease progression. Optimization of MSC culturing protocols is a key strategy to increase the therapeutic potential of the secretome. OBJECTIVES: Here, we investigated the effect of brain homogenate of a rat model of AD (BH-AD) on the enhancement of protein secretion in the secretome of periodontal ligament stem cells (PDLSCs) when cultured in a 3D environment. Moreover, the effect of this modified secretome was examined on neural cells to study the impact of the conditioned medium (CM) on stimulation of regeneration or immunomodulation in AD. METHODS: PDLSCs were isolated and characterized. Then, the spheroids of PDLSCs were generated in a modified 3D culture plate. PDLSCs-derived CM was prepared in the presence of BH-AD (PDLSCs-HCM) and the absence of it (PDLSCs-CM). The viability of C6 glioma cells was assessed after exposure to different concentrations of both CMs. Then, a proteomic analysis was performed on the CMs. RESULTS: Differentiation into adipocytes and high expression of MSCs markers verified the precise isolation of PDLSCs. The PDLSC spheroids were formed after 7 days of 3D culturing, and their viability was confirmed. The effect of CMs on C6 glioma cell viability showed that both CMs at low concentrations (> 20 mg/mL) had no cytotoxic effect on C6 neural cells. The results showed that PDLSCs-HCM contains higher concentrations of proteins compared to PDLSCs-CM, including Src-homology 2 domain (SH2)-containing PTPs (SHP-1) and muscle glycogen phosphorylase (PYGM) proteins. SHP-1 has a role in nerve regeneration, and PYGM is involved in glycogen metabolism. CONCLUSIONS: The modified secretome derived from 3D cultured spheroids of PDLSCs treated by BH-AD as a reservoir of regenerating neural factors can serve as a potential source for AD treatment. Brieflands 2022-12-12 /pmc/articles/PMC9990517/ /pubmed/36896321 http://dx.doi.org/10.5812/ijpr-133668 Text en Copyright © 2022, Author(s) https://creativecommons.org/licenses/by-nc/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 International License (http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) ) which permits copy and redistribute the material just in noncommercial usages, provided the original work is properly cited.
spellingShingle Research Article
Mohebichamkhorami, Fariba
Niknam, Zahra
Khoramjouy, Mona
Heidarli, Elmira
Ghasemi, Rasoul
Hosseinzadeh, Simzar
Mohseni, Seyedeh Sarvenaz
Hajikarim-Hamedani, Arman
Heidari, Amirhossein
Ghane, Yekta
Mahmoudifard, Matin
Zali, Hakimeh
Faizi, Mehrdad
Brain Homogenate of a Rat Model of Alzheimer's Disease Modifies the Secretome of 3D Cultured Periodontal Ligament Stem Cells: A Potential Neuroregenerative Therapy
title Brain Homogenate of a Rat Model of Alzheimer's Disease Modifies the Secretome of 3D Cultured Periodontal Ligament Stem Cells: A Potential Neuroregenerative Therapy
title_full Brain Homogenate of a Rat Model of Alzheimer's Disease Modifies the Secretome of 3D Cultured Periodontal Ligament Stem Cells: A Potential Neuroregenerative Therapy
title_fullStr Brain Homogenate of a Rat Model of Alzheimer's Disease Modifies the Secretome of 3D Cultured Periodontal Ligament Stem Cells: A Potential Neuroregenerative Therapy
title_full_unstemmed Brain Homogenate of a Rat Model of Alzheimer's Disease Modifies the Secretome of 3D Cultured Periodontal Ligament Stem Cells: A Potential Neuroregenerative Therapy
title_short Brain Homogenate of a Rat Model of Alzheimer's Disease Modifies the Secretome of 3D Cultured Periodontal Ligament Stem Cells: A Potential Neuroregenerative Therapy
title_sort brain homogenate of a rat model of alzheimer's disease modifies the secretome of 3d cultured periodontal ligament stem cells: a potential neuroregenerative therapy
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9990517/
https://www.ncbi.nlm.nih.gov/pubmed/36896321
http://dx.doi.org/10.5812/ijpr-133668
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