Organotypic spinal cord cultures: An in vitro 3D model to preliminary screen treatments for spinal muscular atrophy
Autor: | Boido, Marina Maria, Elena De Amicis, Mareschi, Katia, Fagioli, Franca, Vercelli, Alessandro |
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Jazyk: | angličtina |
Rok vydání: | 2021 |
Předmět: |
3D cell culture
QH301-705.5 motor neuron disease drug screening Cell Culture Techniques Mesenchymal Stem Cells Proof of Concept Study Article Cell Line Animals Genetically Modified Muscular Atrophy Spinal Survival of Motor Neuron 2 Protein Disease Models Animal Mice Spinal Cord Culture Media Conditioned Animals Humans Biology (General) |
Zdroj: | European Journal of Histochemistry : EJH European Journal of Histochemistry, Vol 65, Iss s1 (2021) |
ISSN: | 2038-8306 1121-760X |
Popis: | Spinal muscular atrophy (SMA) is a severe neuromuscular disease affecting children, due to mutation/deletion of survival motor neuron 1 (SMN1) gene. The lack of functional protein SMN determines motor neuron (MN) degeneration and skeletal muscle atrophy, leading to premature death due to respiratory failure. Nowadays, the Food and Drug Administration approved the administration of three drugs, aiming at increasing the SMN production: although assuring noteworthy results, all these therapies show some non-negligible limitations, making essential the identification of alternative/synergistic therapeutic strategies. To offer a valuable in vitro experimental model for easily performing preliminary screenings of alternative promising treatments, we optimized an organotypic spinal cord culture (derived from murine spinal cord slices), which well recapitulates the pathogenetic features of SMA. Then, to validate the model, we tested the effects of human Mesenchymal Stem Cells (hMSCs) or murine C2C12 cells (a mouse skeletal myoblast cell line) conditioned media: 1/3 of conditioned medium (obtained from either hMSCs or C2C12 cells) was added to the conventional medium of the organotypic culture and maintained for 7 days. Then the slices were fixed and immunoreacted to evaluate the MN survival. In particular we observed that the C2C12 and hMSCs conditioned media positively influenced the MN soma size and the axonal length respectively, without modulating the glial activation. These data suggest that trophic factors released by MSCs or muscular cells can exert beneficial effects, by acting on different targets, and confirm the reliability of the model. Overall, we propose the organotypic spinal cord culture as an excellent tool to preliminarily screen molecules and drugs before moving to in vivo models, in this way partly reducing the use of animals and the costs. |
Databáze: | OpenAIRE |
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