Soledad Miranda-Rottmann, PhD
Affiliations: | 2011- | Neuroscience | Université de Montréal, Montréal, Canada |
Area:
Neuroscience, gene regulation & splicingWebsite:
https://scholar.google.ca/citations?user=IFJKYIYAAAAJ&hl=enGoogle:
"Soledad Miranda-Rottmann"Mean distance: (not calculated yet)
Parents
Sign in to add mentorFederico Leighton | grad student | Universidad Catolica (Cell Biology Tree) | |
Robert Darnell | post-doc | Rockefeller | |
A. James Hudspeth | post-doc | Rockefeller | |
Roberto Araya | research scientist | Université de Montréal |
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Publications
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Mitchell DE, Miranda-Rottmann S, Blanchard M, et al. (2023) Altered integration of excitatory inputs onto the basal dendrites of layer 5 pyramidal neurons in a mouse model of Fragile X syndrome. Proceedings of the National Academy of Sciences of the United States of America. 120: e2208963120 |
Tazerart S, Blanchard MG, Miranda-Rottmann S, et al. (2022) Selective activation of BK channels in small-headed dendritic spines suppresses excitatory postsynaptic potentials. The Journal of Physiology |
Tazerart S, Mitchell DE, Miranda-Rottmann S, et al. (2020) A spike-timing-dependent plasticity rule for dendritic spines. Nature Communications. 11: 4276 |
Opazo JC, Zavala K, Miranda-Rottmann S, et al. (2018) Evolution of dopamine receptors: phylogenetic evidence suggests a later origin of the DRD and DRD dopamine receptor gene lineages. Peerj. 6: e4593 |
Saito Y, Miranda-Rottmann S, Ruggiu M, et al. (2016) NOVA2-mediated RNA regulation is required for axonal pathfinding during development. Elife. 5 |
Saito Y, Miranda-Rottmann S, Ruggiu M, et al. (2016) Author response: NOVA2-mediated RNA regulation is required for axonal pathfinding during development Elife |
Miranda-Rottmann S, Kozlov AS, Hudspeth AJ. (2010) Highly specific alternative splicing of transcripts encoding BK channels in the chicken's cochlea is a minor determinant of the tonotopic gradient. Molecular and Cellular Biology. 30: 3646-60 |
Leighton F, Miranda-Rottmann S, Urquiaga I. (2006) A central role of eNOS in the protective effect of wine against metabolic syndrome. Cell Biochemistry and Function. 24: 291-8 |
Hötzer KA, Henriquez C, Pino E, et al. (2005) Antioxidant and pro-oxidant effects of red wine and its fractions on Cu(II) induced LDL oxidation evaluated by absorbance and chemiluminescence measurements. Free Radical Research. 39: 175-83 |
Miranda-Rottmann S, Aspillaga AA, Pérez DD, et al. (2002) Juice and phenolic fractions of the berry Aristotelia chilensis inhibit LDL oxidation in vitro and protect human endothelial cells against oxidative stress. Journal of Agricultural and Food Chemistry. 50: 7542-7 |