Caldwell, Maeve 照片

Caldwell, Maeve

Dr

所属大学: University of Bristol

所属学院: School of Clinical Sciences

邮箱:
maeve.caldwell@bristol.ac.uk

个人主页:
http://www.bristol.ac.uk/clinical-sciences/people/maeve-a-caldwell/overview.html

近期论文

Nistor, PA, May, PW, Tamagnini, F, Randall, AD & Caldwell, MA, 2015, ‘Long-term culture of pluripotent stem-cell-derived human neurons on diamond - A substrate for neurodegeneration research and therapy’. Biomaterials, vol 61., pp. 139-149 Wang, W, Wang, X, Fujioka, H, Hoppel, C, Whone, AL, Caldwell, MA, Cullen, PJ, Liu, J & Zhu, X, 2015, ‘Parkinson's disease-associated mutant VPS35 causes mitochondrial dysfunction by recycling DLP1 complexes’. Nature Medicine. Damseh, N, Danson, CM, Al-Ashhab, M, Abu-Libdeh, B, Gallon, M, Sharma, K, Yaacov, B, Caldwell, MA, Edvardson, S, Cullen, PJ, Elpeleg, O & Coulthard, E, 2015, ‘A defect in the retromer accessory protein, SNX27, manifests by infantile myoclonic epilepsy and neurodegeneration’. Neurogenetics, vol 16., pp. 215-21 Cordero-Llana, O, Rinaldi, F, Brennan, PA, Wynick, D & Caldwell, MA, 2014, ‘Galanin promotes neuronal differentiation from neural progenitor cells in vitro and contributes to the generation of new olfactory neurons in the adult mouse brain’. Experimental Neurology, vol 256., pp. 93-104 Rinaldi, F, Hartfield, E, Crompton, LA, Badger, J, Glover, C, Kelly, C, Rosser, A, Uney, JB & Caldwell, MA, 2014, ‘Cross-regulation of Connexin43 and β-catenin influences differentiation of human neural progenitor cells.’. Cell Death and Disease. Cordero-Llana, &#x, Ho;ughton, BC, Rinaldi, F, Taylor, H, Yá?ez-Mu?oz, RJ, Uney, JB, Wong, L-F & Caldwell, MA, 2014, ‘Enhanced efficacy of the CDNF/MANF family by combined intranigral overexpression in the 6-OHDA rat model of Parkinson's disease’. Molecular Therapy, vol 23., pp. 244-54 Crompton, LA, Byrne, ML, Taylor, H, Kerrigan, TL, Bru-Mercier, G, Badger, JL, Barbuti, PA, Jo, J, Tyler, SJ, Allen-Birt, SJ, Kunath, T, Cho, K & Caldwell, MA, 2013, ‘Stepwise, non-adherent differentiation of human pluripotent stem cells to generate basal forebrain cholinergic neurons via hedgehog signaling’. Stem Cell Research, vol 11., pp. 1206-1221 Rinaldi, F & Caldwell, MA, 2013, ‘Modeling astrocytic contribution toward neurodegeneration with pluripotent stem cells: focus on Alzheimer's and Parkinson's diseases’. Neuroreport, vol 24., pp. 1053-1057 Sood, A, Salih, S, Roh, D, Lora, LL, Parry, MC, Hardiman, B, Keehan, R, Grummer, R, Winterhager, E, Gokhale, PJ, Andrews, PW, Abbott, C, Forbes, K, Westwood, M, Aplin, JD, Ingham, E, Papageorgiou, I, Berry, M, Liu, J, Dick, AD, Garland, RJ, Williams, N, Singh, R, Simon, AK, Lewis, M, Ham, J, Roger, L, Baird, DM, Crompton, LA, Caldwell, MA, Swalwell, H, Birch-Machin, M, Lopez-Castejon, G, Randall, A, Lin, H, Suleiman, M-S, Evans, WH, Newson, R & Case, CP, 2011, ‘Signalling of DNA damage and cytokines across cell barriers exposed to nanoparticles depends on barrier thickness’. Nature Nanotechnology, vol 6., pp. 824 - 833 Hartfield, E, Rinaldi, F, Glover, C, Wong, L, Caldwell, M & Uney, J, 2011, ‘Connexin 36 expression regulates neuronal differentiation from neural progenitor cells’. PLoS One, vol 9;6(3)., pp. e14746 - e14746