Olga Tapia

2015 Universidad Europea del Atlántico 
"Olga Tapia"
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Puente-Bedia A, Berciano MT, Tapia O, et al. (2021) Nuclear Reorganization in Hippocampal Granule Cell Neurons from a Mouse Model of Down Syndrome: Changes in Chromatin Configuration, Nucleoli and Cajal Bodies. International Journal of Molecular Sciences. 22
Yu H, Lu S, Gasior K, et al. (2020) HSP70 chaperones RNA-free TDP-43 into anisotropic intranuclear liquid spherical shells. Science (New York, N.Y.)
Ruiz-Soto M, Riancho J, Tapia O, et al. (2020) Satellite Glial Cells of the Dorsal Root Ganglion: A New "Guest/Physiopathological Target" in ALS. Frontiers in Aging Neuroscience. 12: 595751
Mantecón-Oria M, Diban N, Berciano MT, et al. (2020) Hollow Fiber Membranes of PCL and PCL/Graphene as Scaffolds with Potential to Develop In Vitro Blood-Brain Barrier Models. Membranes. 10
Berciano MT, Castillo-Iglesias MS, Val-Bernal JF, et al. (2020) Mislocalization of SMN from the I-band and M-band in human skeletal myofibers in spinal muscular atrophy associates with primary structural alterations of the sarcomere. Cell and Tissue Research. 381: 461-478
Berciano MT, Puente-Bedia A, Medina-Samamé A, et al. (2020) Nusinersen ameliorates motor function and prevents motoneuron Cajal body disassembly and abnormal poly(A) RNA distribution in a SMA mouse model. Scientific Reports. 10: 10738
Reglero C, Lafarga V, Rivas V, et al. (2020) GRK2-Dependent HuR Phosphorylation Regulates HIF1α Activation under Hypoxia or Adrenergic Stress. Cancers. 12
Riancho J, Castanedo-Vázquez D, Gil-Bea F, et al. (2020) ALS-derived fibroblasts exhibit reduced proliferation rate, cytoplasmic TDP-43 aggregation and a higher susceptibility to DNA damage. Journal of Neurology. 267: 1291-1299
Castillo-Iglesias MS, Berciano MT, Narcis JO, et al. (2019) Reorganization of the nuclear compartments involved in transcription and RNA processing in myonuclei of type I spinal muscular atrophy. Histochemistry and Cell Biology. 152: 227-237
Cheng LC, Baboo S, Lindsay C, et al. (2019) Identification of new transmembrane proteins concentrated at the nuclear envelope using organellar proteomics of mesenchymal cells. Nucleus (Austin, Tex.). 10: 126-143
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