Alzheimer's disease (AD) represents the most common neurodegenerative disorder, with 47 million affected people worldwide. Current treatment strategies are aimed at reducing the symptoms and do slow down the progression of the disease, but inevitably fail in the long-term. Induced pluripotent stem cells (iPSCs)-derived neuronal cells from AD patients have proven to be a reliable model for AD pathogenesis. Here, we have conducted an in silico analysis aimed at identifying pathogenic gene-expression profiles and novel drug candidates. The GSE117589 microarray dataset was used for the identification of Differentially Expressed Genes (DEGs) between iPSC-derived neuronal progenitor (NP) cells and neurons from AD patients and healthy donors. The Discriminant Analysis Module (DAM) algorithm was used for the identification of biomarkers of disease. Drugs with anti-signature gene perturbation profiles were identified using the L1000FWD software. DAM analysis was used to identify a list of potential biomarkers among the DEGs, able to discriminate AD patients from healthy people. Finally, anti-signature perturbation analysis identified potential anti-AD drugs. This study set the basis for the investigation of potential novel pharmacological strategies for AD. Furthermore, a subset of genes for the early diagnosis of AD is proposed.

Exploratory Analysis of iPSCS-Derived Neuronal Cells as Predictors of Diagnosis and Treatment of Alzheimer Disease / Cavalli, Eugenio; Battaglia, Giuseppe; Basile, Maria Sofia; Bruno, Valeria; Petralia, Maria Cristina; Lombardo, Salvo Danilo; Pennisi, Manuela; Kalfin, Reni; Tancheva, Lyubka; Fagone, Paolo; Nicoletti, Ferdinando; Mangano, Katia. - In: BRAIN SCIENCES. - ISSN 2076-3425. - 10:3(2020), p. 166. [10.3390/brainsci10030166]

Exploratory Analysis of iPSCS-Derived Neuronal Cells as Predictors of Diagnosis and Treatment of Alzheimer Disease

Battaglia, Giuseppe;Bruno, Valeria;
2020

Abstract

Alzheimer's disease (AD) represents the most common neurodegenerative disorder, with 47 million affected people worldwide. Current treatment strategies are aimed at reducing the symptoms and do slow down the progression of the disease, but inevitably fail in the long-term. Induced pluripotent stem cells (iPSCs)-derived neuronal cells from AD patients have proven to be a reliable model for AD pathogenesis. Here, we have conducted an in silico analysis aimed at identifying pathogenic gene-expression profiles and novel drug candidates. The GSE117589 microarray dataset was used for the identification of Differentially Expressed Genes (DEGs) between iPSC-derived neuronal progenitor (NP) cells and neurons from AD patients and healthy donors. The Discriminant Analysis Module (DAM) algorithm was used for the identification of biomarkers of disease. Drugs with anti-signature gene perturbation profiles were identified using the L1000FWD software. DAM analysis was used to identify a list of potential biomarkers among the DEGs, able to discriminate AD patients from healthy people. Finally, anti-signature perturbation analysis identified potential anti-AD drugs. This study set the basis for the investigation of potential novel pharmacological strategies for AD. Furthermore, a subset of genes for the early diagnosis of AD is proposed.
2020
Alzheimer disease; Induced pluripotent stem cells-derived neuronal cells; biomarkers; drug repurposing
01 Pubblicazione su rivista::01a Articolo in rivista
Exploratory Analysis of iPSCS-Derived Neuronal Cells as Predictors of Diagnosis and Treatment of Alzheimer Disease / Cavalli, Eugenio; Battaglia, Giuseppe; Basile, Maria Sofia; Bruno, Valeria; Petralia, Maria Cristina; Lombardo, Salvo Danilo; Pennisi, Manuela; Kalfin, Reni; Tancheva, Lyubka; Fagone, Paolo; Nicoletti, Ferdinando; Mangano, Katia. - In: BRAIN SCIENCES. - ISSN 2076-3425. - 10:3(2020), p. 166. [10.3390/brainsci10030166]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1680234
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