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Number of items: 14.
Hill, Emily, Moffat, Kevin G., Wall, Mark J., Zetterberg, Henrik, Blennow, Kaj and Karikari, Thomas K. (2023) Functional applications of stable Tau Oligomers in cell biology and electrophysiology studies. In: Protein Aggregation. Methods in Molecular Biology, 2551 . New York, NY: Humana, pp. 147-161. ISBN 9781071625972
Everett, James, Brooks, Jake, Lermyte, Frederik, Tjendana Tjhin, Vindy, Hands-Portman, Ian, Hill, Emily, Collingwood, Joanna F. and Telling, Neil D. (2023) Dataset for : Illuminating the brain : revealing brain biochemistry with synchrotron x-ray spectromicroscopy. [Dataset]
Brown, Jessica, Camporesi, Elena, Lantero-Rodriguez, Juan, Olsson, Maria, Wang, Alice, Medem, Blanca, Zetterberg, Henrik, Blennow, Kaj, Karikari, Thomas K., Wall, Mark J. and Hill, Emily (2023) Tau in cerebrospinal fluid induces neuronal hyperexcitability and alters hippocampal theta oscillations. Acta Neuropathologica Communications, 11 . 67. doi:10.1186/s40478-023-01562-5 ISSN 2051-5960 .
Hill, Emily, Moffat, Kevin G., Wall, Mark J., Zetterberg, Henrik, Blennow, Kaj and Karikari, Thomas K. (2022) A validated method to prepare stable Tau Oligomers. In: Cieplak, A. S., (ed.) Protein Aggregation. Methods in Molecular Biology, 2551 . New York, NY: Humana, pp. 203-224. ISBN 9781071625965
Wall, Mark J., Hill, Emily, Huckstepp, Robert T. R., Barkan, Kerry, Deganutti, Giuseppe, Leuenberger, Michele, Preti, Barbara, Winfield, Ian, Carvalho, Sabrina, Suchankova, Anna et al.
(2022)
Selective activation of GΞ±ob by an adenosine A 1 receptor agonist elicits analgesia without cardiorespiratory depression.
Nature Communications, 13
(1).
4150.
doi:10.1038/s41467-022-31652-2
ISSN 2041-1723.
Hill, Emily, Karikari, Thomas K., Lantero-Rodriguez, Juan, Zetterberg, Henrik, Blennow, Kaj, Richardson, Magnus J. E. and Wall, Mark J. (2021) Truncating Tau reveals different pathophysiological actions of oligomers in single neurons. Communications Biology, 4 . 1265 . doi:10.1038/s42003-021-02791-x ISSN 2399-3642.
Hill, Emily, Dale, Nicholas and Wall, Mark J. (2021) CO2-sensitive connexin hemichannels in neurons and glia : three different modes of signalling? International Journal of Molecular Sciences, 22 (14). 7254. doi:10.3390/ijms22147254 ISSN 1422-0067.
Hill, Emily, Dale, Nicholas and Wall, Mark J. (2020) Detecting CO2-sensitive hemichannels in neurons in acute brain slices. STAR Protocols, 1 (3). 100139. doi:10.1016/j.xpro.2020.100139 ISSN 2666-1667.
Hill, Emily, Gowers, Robert, Richardson, Magnus J. E. and Wall, Mark J. (2020) Alpha-synuclein aggregates increase the conductance of substantia nigra dopamine neurons, an effect partly reversed by the KATP channel inhibitor glibenclamide. eNeuro . ENEURO.0330-20.2020. doi:10.1523/ENEURO.0330-20.2020 ISSN 2373-2822.
Karikari, Thomas K., Keeling, Sophie, Hill, Emily, Lantero RodrΔ±Μguez, Juan, Nagel, David A., Becker, Bruno, HΓΆglund, Kina, Zetterberg, Henrik, Blennow, Kaj, Hill, Eric J. and Moffat, Kevin G. (2020) Extensive plasmid library to prepare Tau protein variants and study their functional biochemistry. ACS Chemical Neuroscience, 11 (19). pp. 3117-3129. doi:10.1021/acschemneuro.0c00469 ISSN 1948-7193.
Hill, Emily, Dale, Nicholas and Wall, Mark J. (2020) Moderate changes in CO2 modulate the firing of neurons in the VTA and substantia nigra. iScience, 23 (7). 101343. doi:10.1016/j.isci.2020.101343 ISSN 2589-0042.
Hill, Emily, Hickman, Charlotte, Diez, Rebecca and Wall, Mark J. (2020) Role of A1 receptor-activated GIRK channels in the suppression of hippocampal seizure activity. Neuropharmacology, 164 . 107904. doi:10.1016/j.neuropharm.2019.107904 ISSN 0028-3908.
Hill, Emily, Wall, Mark J., Moffat, Kevin G. and Karikari , T. (2020) Understanding the pathophysiological actions of tau oligomers : a critical review of current electrophysiological methods. Frontiers in Molecular Neuroscience, 13 . 155. doi:10.3389/fnmol.2020.00155 ISSN 1662-5099.
Hill, Emily, Karikaria, Thomas K., Moffat, Kevin G., Richardson, Magnus J. E. and Wall, Mark J. (2019) Introduction of tau oligomers into cortical neurons alters action potential dynamics and disrupts synaptic transmission and plasticity. eNeuro, 6 (5). 0166. doi:10.1523/ENEURO.0166-19.2019 ISSN 2373-2822.
This list was generated on Thu Jan 11 15:44:26 2024 GMT.