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International Journal of Molecular Sciences|July 2, 2021
In Silico and In Vitro Analyses Validate Human MicroRNAs Targeting the SARS-CoV-2 3'-UTRMaría Asunción Barreda-Manso, Manuel Nieto-Díaz, Altea Soto, et al.Pharmaceuticals (Basel, Switzerland)|May 28, 2022
miR-182-5p Regulates Nogo-A Expression and Promotes Neurite Outgrowth of Hippocampal Neurons In VitroAltea Soto, Manuel Nieto-Díaz, David Reigada, et al.International Journal of Molecular Sciences|November 25, 2023
MiR-138-5p Upregulation during Neuronal Maturation Parallels with an Increase in Neuronal SurvivalMaría Asunción Barreda-Manso, Altea Soto, Teresa Muñoz-Galdeano, et al.Scientific Reports|June 20, 2026
Automated segmentation of neurons and spinal cord structures in immunofluorescence images using SpineDLPablo Ruiz-Amezcua, Daniel Franco-Barranco, David Reigada, et al.Molecular Pharmacology|February 26, 2011
Cannabidiol and other cannabinoids reduce microglial activation in vitro and in vivo: relevance to Alzheimer's diseaseAna María Martín-Moreno, David Reigada, Belén G Ramírez, et al.Purinergic Signalling|April 12, 2008
Stimulation of an alpha1-adrenergic receptor downregulates ecto-5' nucleotidase activity on the apical membrane of RPE cellsDavid Reigada, Xiulan Zhang, Ana Crespo, et al.International Journal of Molecular Sciences|November 27, 2024
Identification of a New Role of miR-199a-5p as Factor Implied in Neuronal Damage: Decreasing the Expression of Its Target X-Linked Anti-Apoptotic Protein (XIAP) After SCITeresa Muñoz-Galdeano, David Reigada, Altea Soto, et al.Frontiers in Cellular Neuroscience|June 28, 2018
Cell Specific Changes of Autophagy in a Mouse Model of Contusive Spinal Cord InjuryTeresa Muñoz-Galdeano, David Reigada, Ángela Del Águila, et al.Journal of Neurochemistry|March 30, 2019
MicroRNA-135a-5p reduces P2X7 -dependent rise in intracellular calcium and protects against excitotoxicityDavid Reigada, Andrés Ángel Calderón-García, Manuel Soto-Catalán, et al.American Journal of Physiology. Cell Physiology|April 29, 2005
Degradation of extracellular ATP by the retinal pigment epitheliumDavid Reigada, Wennan Lu, Xiulan Zhang, et al.Pageof 4