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Microglia Impairs Proliferation and Induces Senescence In-Vitro in NGF Releasing Cells Used in Encapsulated Cell Biodelivery for Alzheimer’s Disease Therapy

There is no cure yet available for Alzheimer’s disease (AD). We recently optimized encapsulated cell biodelivery (ECB) devices releasing human mature nerve growth factor (hmNGF), termed ECB-NGF, to the basal forebrain of AD patients. The ECB-NGF delivery resulted in increased CSF cholinergic markers...

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Autores principales: Mitra, Sumonto, Gera, Ruchi, Sundheimer, Julia, Lemee, Marine, Wahlberg, Lars U., Linderoth, Bengt, Eriksdotter, Maria, Behbahani, Homira
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9409429/
https://www.ncbi.nlm.nih.gov/pubmed/36012296
http://dx.doi.org/10.3390/ijms23169011
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author Mitra, Sumonto
Gera, Ruchi
Sundheimer, Julia
Lemee, Marine
Wahlberg, Lars U.
Linderoth, Bengt
Eriksdotter, Maria
Behbahani, Homira
author_facet Mitra, Sumonto
Gera, Ruchi
Sundheimer, Julia
Lemee, Marine
Wahlberg, Lars U.
Linderoth, Bengt
Eriksdotter, Maria
Behbahani, Homira
author_sort Mitra, Sumonto
collection PubMed
description There is no cure yet available for Alzheimer’s disease (AD). We recently optimized encapsulated cell biodelivery (ECB) devices releasing human mature nerve growth factor (hmNGF), termed ECB-NGF, to the basal forebrain of AD patients. The ECB-NGF delivery resulted in increased CSF cholinergic markers, improved glucose metabolism, and positive effects on cognition in AD patients. However, some ECB-NGF implants showed altered hmNGF release post-explantation. To optimize the ECB-NGF platform for future therapeutic purposes, we initiated in-vitro optimization studies by exposing ECB-NGF devices to physiological factors present within the AD brain. We report here that microglia cells can impair hmNGF release from ECB-NGF devices in-vitro, which can be reversed by transferring the devices to fresh culture medium. Further, we exposed the hmNGF secreting human ARPE-19 cell line (NGC0211) to microglia (HMC3) conditioned medium (MCM; untreated or treated with IL-1β/IFNγ/Aβ(40)/Aβ(42)), and evaluated biochemical stress markers (ROS, GSH, ΔΨ(m), and Alamar Blue assay), cell death indicators (Annexin-V/PI), cell proliferation (CFSE retention and Ki67) and senescence markers (SA-β-gal) in NGC0211 cells. MCMs from activated microglia reduced cell proliferation and induced cell senescence in NGC0211 cells, which otherwise resist biochemical alterations and cell death. These data indicate a critical but reversible impact of activated microglia on NGC0211 cells.
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spelling pubmed-94094292022-08-26 Microglia Impairs Proliferation and Induces Senescence In-Vitro in NGF Releasing Cells Used in Encapsulated Cell Biodelivery for Alzheimer’s Disease Therapy Mitra, Sumonto Gera, Ruchi Sundheimer, Julia Lemee, Marine Wahlberg, Lars U. Linderoth, Bengt Eriksdotter, Maria Behbahani, Homira Int J Mol Sci Article There is no cure yet available for Alzheimer’s disease (AD). We recently optimized encapsulated cell biodelivery (ECB) devices releasing human mature nerve growth factor (hmNGF), termed ECB-NGF, to the basal forebrain of AD patients. The ECB-NGF delivery resulted in increased CSF cholinergic markers, improved glucose metabolism, and positive effects on cognition in AD patients. However, some ECB-NGF implants showed altered hmNGF release post-explantation. To optimize the ECB-NGF platform for future therapeutic purposes, we initiated in-vitro optimization studies by exposing ECB-NGF devices to physiological factors present within the AD brain. We report here that microglia cells can impair hmNGF release from ECB-NGF devices in-vitro, which can be reversed by transferring the devices to fresh culture medium. Further, we exposed the hmNGF secreting human ARPE-19 cell line (NGC0211) to microglia (HMC3) conditioned medium (MCM; untreated or treated with IL-1β/IFNγ/Aβ(40)/Aβ(42)), and evaluated biochemical stress markers (ROS, GSH, ΔΨ(m), and Alamar Blue assay), cell death indicators (Annexin-V/PI), cell proliferation (CFSE retention and Ki67) and senescence markers (SA-β-gal) in NGC0211 cells. MCMs from activated microglia reduced cell proliferation and induced cell senescence in NGC0211 cells, which otherwise resist biochemical alterations and cell death. These data indicate a critical but reversible impact of activated microglia on NGC0211 cells. MDPI 2022-08-12 /pmc/articles/PMC9409429/ /pubmed/36012296 http://dx.doi.org/10.3390/ijms23169011 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Mitra, Sumonto
Gera, Ruchi
Sundheimer, Julia
Lemee, Marine
Wahlberg, Lars U.
Linderoth, Bengt
Eriksdotter, Maria
Behbahani, Homira
Microglia Impairs Proliferation and Induces Senescence In-Vitro in NGF Releasing Cells Used in Encapsulated Cell Biodelivery for Alzheimer’s Disease Therapy
title Microglia Impairs Proliferation and Induces Senescence In-Vitro in NGF Releasing Cells Used in Encapsulated Cell Biodelivery for Alzheimer’s Disease Therapy
title_full Microglia Impairs Proliferation and Induces Senescence In-Vitro in NGF Releasing Cells Used in Encapsulated Cell Biodelivery for Alzheimer’s Disease Therapy
title_fullStr Microglia Impairs Proliferation and Induces Senescence In-Vitro in NGF Releasing Cells Used in Encapsulated Cell Biodelivery for Alzheimer’s Disease Therapy
title_full_unstemmed Microglia Impairs Proliferation and Induces Senescence In-Vitro in NGF Releasing Cells Used in Encapsulated Cell Biodelivery for Alzheimer’s Disease Therapy
title_short Microglia Impairs Proliferation and Induces Senescence In-Vitro in NGF Releasing Cells Used in Encapsulated Cell Biodelivery for Alzheimer’s Disease Therapy
title_sort microglia impairs proliferation and induces senescence in-vitro in ngf releasing cells used in encapsulated cell biodelivery for alzheimer’s disease therapy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9409429/
https://www.ncbi.nlm.nih.gov/pubmed/36012296
http://dx.doi.org/10.3390/ijms23169011
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