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Results 1-10 of 13 (Search time: 0.002 seconds).
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First PublishedTitleAuthor(s)Type
17-Jun-2011A brain-permeable small molecule reduces neuronal cholesterol by inhibiting activity of sirtuin 2 deacetylase.Taylor, DM; Balabadra, U; Xiang, Z; Woodman, B; Meade, S; Amore, A; Maxwell, MM; Reeves, S; Bates, GP; Luthi-Carter, R; Lowden, PA; Kazantsev, AGJournal Article
27-Apr-2010SIRT2 inhibition achieves neuroprotection by decreasing sterol biosynthesis.Luthi-Carter, R; Taylor, DM; Pallos, J; Lambert, E; Amore, A; Parker, A; Moffitt, H; Smith, DL; Runne, H; Gokce, O; Kuhn, A; Xiang, Z; Maxwell, MM; Reeves, SA; Bates, GP; Neri, C; Thompson, LM; Marsh, JL; Kazantsev, AGJournal Article
Aug-2010Developmental expression of Synaptotagmin isoforms in single calyx of Held-generating neurons.Xiao, L; Han, Y; Runne, H; Murray, H; Kochubey, O; Luthi-Carter, R; Schneggenburger, RJournal Article
15-Apr-2010Transcriptional changes in Huntington disease identified using genome-wide expression profiling and cross-platform analysis.Becanovic, K; Pouladi, MA; Lim, RS; Kuhn, A; Pavlidis, P; Luthi-Carter, R; Hayden, MR; Leavitt, BRJournal Article
Aug-2010Environmental enrichment reduces neuronal intranuclear inclusion load but has no effect on messenger RNA expression in a mouse model of Huntington disease.Benn, CL; Luthi-Carter, R; Kuhn, A; Sadri-Vakili, G; Blankson, KL; Dalai, SC; Goldstein, DR; Spires, TL; Pritchard, J; Olson, JM; van Dellen A; Hannan, AJ; Cha, JHJournal Article
Jan-2012Neuroprotective role of Sirt1 in mammalian models of Huntington's disease through activation of multiple Sirt1 targets.Jiang, M; Wang, J; Fu, J; Du, L; Jeong, H; West, T; Xiang, L; Peng, Q; Hou, Z; Cai, H; Seredenina, T; Arbez, N; Zhu, S; Sommers, K; Qian, J; Zhang, J; Mori, S; Yang, XW; Tamashiro, KL; Aja, S; Moran, TH; Luthi-Carter, R; Martin, B; Maudsley, S; Mattson, MP; Cichewicz, RH; Ross, CA; Holtzman, DM; Krainc, D; Duan, WJournal Article
15-Oct-2011Synchrotron infrared microspectroscopy detecting the evolution of Huntington's disease neuropathology and suggesting unique correlates of dysfunction in white versus gray brain matter.Bonda, M; Perrin, V; Vileno, B; Runne, H; Kretlow, A; Forró, L; Luthi-Carter, R; Miller, LM; Jeney, SJournal Article
Aug-2011Altered chromatin architecture underlies progressive impairment of the heat shock response in mouse models of Huntington disease.Labbadia, J; Cunliffe, H; Weiss, A; Katsyuba, E; Sathasivam, K; Seredenina, T; Woodman, B; Moussaoui, S; Frentzel, S; Luthi-Carter, R; Paganetti, P; Bates, GPJournal Article
Sep-2010Decreased Lin7b expression in layer 5 pyramidal neurons may contribute to impaired corticostriatal connectivity in huntington disease.Zucker, B; Kama, JA; Kuhn, A; Thu, D; Orlando, LR; Dunah, AW; Gokce, O; Taylor, DM; Lambeck, J; Friedrich, B; Lindenberg, KS; Faull, RL; Weiller, C; Young, AB; Luthi-Carter, RJournal Article
Jun-2011Gene expression profiling of R6/2 transgenic mice with different CAG repeat lengths reveals genes associated with disease onset and progression in Huntington's disease.Tang, B; Seredenina, T; Coppola, G; Kuhn, A; Geschwind, DH; Luthi-Carter, R; Thomas, EAJournal Article