Title : Cholinergic Differentiation of Human Neuroblastoma SH-SY5Y Cell Line and Its Potential Use as an In vitro Model for Alzheimer's Disease Studies - de Medeiros_2019_Mol.Neurobiol_56_7355 |
Author(s) : de Medeiros LM , De Bastiani MA , Rico EP , Schonhofen P , Pfaffenseller B , Wollenhaupt-Aguiar B , Grun L , Barbe-Tuana F , Zimmer ER , Castro MAA , Parsons RB , Klamt F |
Ref : Molecular Neurobiology , 56 :7355 , 2019 |
Abstract :
Cholinergic transmission is critical to high-order brain functions such as memory, learning, and attention. Alzheimer's disease (AD) is characterized by cognitive decline associated with a specific degeneration of cholinergic neurons. No effective treatment to prevent or reverse the symptoms is known. Part of this might be due to the lack of in vitro models that effectively mimic the relevant features of AD. Here, we describe the characterization of an AD in vitro model using the SH-SY5Y cell line. Exponentially growing cells were maintained in DMEM/F12 medium and differentiation was triggered by the combination of retinoic acid (RA) and BDNF. Both acetylcholinesterase (AChE) and choline acetyltransferase (ChAT) enzymatic activities and immunocontent were determined. For mimicking tau and amyloid-beta pathology, RA + BDNF-differentiated cells were challenged with okadaic acid (OA) or soluble oligomers of amyloid-beta (AbetaOs) and neurotoxicity was evaluated. RA + BDNF-induced differentiation resulted in remarkable neuronal morphology alterations characterized by increased neurite density. Enhanced expression and enzymatic activities of cholinergic markers were observed compared to RA-differentiation only. Combination of sublethal doses of AbetaOs and OA resulted in decreased neurite densities, an in vitro marker of synaptopathy. Challenging RA + BDNF-differentiated SH-SY5Y cells with the combination of sublethal doses of OA and AbetaO, without causing considerable decrease of cell viability, provides an in vitro model which mimics the early-stage pathophysiology of cholinergic neurons affected by AD. |
PubMedSearch : de Medeiros_2019_Mol.Neurobiol_56_7355 |
PubMedID: 31037648 |
de Medeiros LM, De Bastiani MA, Rico EP, Schonhofen P, Pfaffenseller B, Wollenhaupt-Aguiar B, Grun L, Barbe-Tuana F, Zimmer ER, Castro MAA, Parsons RB, Klamt F (2019)
Cholinergic Differentiation of Human Neuroblastoma SH-SY5Y Cell Line and Its Potential Use as an In vitro Model for Alzheimer's Disease Studies
Molecular Neurobiology
56 :7355
de Medeiros LM, De Bastiani MA, Rico EP, Schonhofen P, Pfaffenseller B, Wollenhaupt-Aguiar B, Grun L, Barbe-Tuana F, Zimmer ER, Castro MAA, Parsons RB, Klamt F (2019)
Molecular Neurobiology
56 :7355