Publication:
Brain Organoids to Evaluate Cellular Therapies.

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Date

2022-11-15

Authors

Garcia-Delgado, Ana Belen
Campos-Cuerva, Rafael
Rosell-Valle, Cristina
Martin-Lopez, Maria
Casado, Carlos
Ferrari, Daniela
Marquez-Rivas, Javier
Sanchez-Pernaute, Rosario
Fernandez-Muñoz, Beatriz

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MDPI AG
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Abstract

Animal models currently used to test the efficacy and safety of cell therapies, mainly murine models, have limitations as molecular, cellular, and physiological mechanisms are often inherently different between species, especially in the brain. Therefore, for clinical translation of cell-based medicinal products, the development of alternative models based on human neural cells may be crucial. We have developed an in vitro model of transplantation into human brain organoids to study the potential of neural stem cells as cell therapeutics and compared these data with standard xenograft studies in the brain of immunodeficient NOD.Cg-Prkdcscid Il2rgtm1Wjl/SzJ (NSG) mice. Neural stem cells showed similar differentiation and proliferation potentials in both human brain organoids and mouse brains. Our results suggest that brain organoids can be informative in the evaluation of cell therapies, helping to reduce the number of animals used for regulatory studies.

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MeSH Terms

Supervivencia Celular
Humans
Mice
Heterografts
Disease Models, Animal
Mice, Inbred NOD
Brain
Organoids
Neural Stem Cells

DeCS Terms

Encéfalo
Células
Humanos
Terapéutica
Organoides
Células-Madre Neurales
Técnicas In Vitro
Xenoinjertos

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Keywords

3 Rs, brain organoids, cell therapy, neural progenitors, neural stem cells, reduction, translation, Unidad de Producción y Reprogramación Celular (UPRC), Red Andaluza de Diseño y Traslación de Terapias Avanzadas (RAdytTA)

Citation

García-Delgado AB, Campos-Cuerva R, Rosell-Valle C, Martin-López M, Casado C, Ferrari D, et al. Brain Organoids to Evaluate Cellular Therapies. Animals (Basel). 2022 Nov 15;12(22):3150.