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Showing results (361-370 of 430) with videos related to

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The Journal of Infectious Diseases|November 4, 2006
Prevalence of primary HIV-1 drug resistance among recently infected adolescents: a multicenter adolescent medicine trials network for HIV/AIDS interventions studyRolando M Viani, Ligia Peralta, Grace Aldrovandi, et al.
Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences|August 6, 1999
Altered neurotransmitter receptor expression in transgenic mouse models of Huntington's diseaseJ H Cha, A S Frey, S A Alsdorf, et al.
FEBS Letters|December 3, 2013
Dynamic recruitment of active proteasomes into polyglutamine initiated inclusion bodiesSabine Schipper-Krom, Katrin Juenemann, Anne H Jansen, et al.
Plos Currents|November 20, 2015
Characterization of Gastric Mucosa Biopsies Reveals Alterations in Huntington's DiseaseAndrew C McCourt, Kirsty L O'Donovan, Eva Ekblad, et al.
Plos Genetics|August 8, 2014
Dysfunction of the CNS-heart axis in mouse models of Huntington's diseaseMichal Mielcarek, Linda Inuabasi, Marie K Bondulich, et al.
Neurobiology of Disease|June 1, 2011
Gastrointestinal dysfunction contributes to weight loss in Huntington's disease miceJorien M M van der Burg, Annika Winqvist, N Ahmad Aziz, et al.
Chemistry & Biology|February 28, 2012
TR-FRET-based duplex immunoassay reveals an inverse correlation of soluble and aggregated mutant huntingtin in huntington's diseaseBarbara Baldo, Paolo Paganetti, Stephan Grueninger, et al.
Human Molecular Genetics|March 1, 1993
The isolation of cDNAs within the Huntington disease region by hybridisation of yeast artificial chromosomes to a cDNA libraryR G Snell, L A Doucette-Stamm, K M Gillespie, et al.
EMBO Reports|October 11, 2024
m<sup>6</sup>A modification of mutant huntingtin RNA promotes the biogenesis of pathogenic huntingtin transcriptsAnika Pupak, Irene Rodríguez-Navarro, Kirupa Sathasivam, et al.
ACS Chemical Biology|March 5, 2011
A brain-permeable small molecule reduces neuronal cholesterol by inhibiting activity of sirtuin 2 deacetylaseDavid M Taylor, Uma Balabadra, Zhongmin Xiang, et al.
Pageof 43

Showing results (361-370 of 430) with videos related to

Sort By:
Pageof 43
The Journal of Infectious Diseases|November 4, 2006
Prevalence of primary HIV-1 drug resistance among recently infected adolescents: a multicenter adolescent medicine trials network for HIV/AIDS interventions studyRolando M Viani, Ligia Peralta, Grace Aldrovandi, et al.
Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences|August 6, 1999
Altered neurotransmitter receptor expression in transgenic mouse models of Huntington's diseaseJ H Cha, A S Frey, S A Alsdorf, et al.
FEBS Letters|December 3, 2013
Dynamic recruitment of active proteasomes into polyglutamine initiated inclusion bodiesSabine Schipper-Krom, Katrin Juenemann, Anne H Jansen, et al.
Plos Currents|November 20, 2015
Characterization of Gastric Mucosa Biopsies Reveals Alterations in Huntington's DiseaseAndrew C McCourt, Kirsty L O'Donovan, Eva Ekblad, et al.
Plos Genetics|August 8, 2014
Dysfunction of the CNS-heart axis in mouse models of Huntington's diseaseMichal Mielcarek, Linda Inuabasi, Marie K Bondulich, et al.
Neurobiology of Disease|June 1, 2011
Gastrointestinal dysfunction contributes to weight loss in Huntington's disease miceJorien M M van der Burg, Annika Winqvist, N Ahmad Aziz, et al.
Chemistry & Biology|February 28, 2012
TR-FRET-based duplex immunoassay reveals an inverse correlation of soluble and aggregated mutant huntingtin in huntington's diseaseBarbara Baldo, Paolo Paganetti, Stephan Grueninger, et al.
Human Molecular Genetics|March 1, 1993
The isolation of cDNAs within the Huntington disease region by hybridisation of yeast artificial chromosomes to a cDNA libraryR G Snell, L A Doucette-Stamm, K M Gillespie, et al.
EMBO Reports|October 11, 2024
m<sup>6</sup>A modification of mutant huntingtin RNA promotes the biogenesis of pathogenic huntingtin transcriptsAnika Pupak, Irene Rodríguez-Navarro, Kirupa Sathasivam, et al.
ACS Chemical Biology|March 5, 2011
A brain-permeable small molecule reduces neuronal cholesterol by inhibiting activity of sirtuin 2 deacetylaseDavid M Taylor, Uma Balabadra, Zhongmin Xiang, et al.
Pageof 43