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Lydia M Castelli

Showing results (21-30 of 29) with videos related to

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Aging Cell|December 14, 2020
Directly converted astrocytes retain the ageing features of the donor fibroblasts and elucidate the astrocytic contribution to human CNS health and diseaseNoemi Gatto, Cleide Dos Santos Souza, Allan C Shaw, et al.
Nature Communications|September 7, 2023
The master energy homeostasis regulator PGC-1α exhibits an mRNA nuclear export functionSimeon R Mihaylov, Lydia M Castelli, Ya-Hui Lin, et al.
Frontiers in Cellular Neuroscience|January 9, 2023
Loss of TMEM106B exacerbates C9ALS/FTD DPR pathology by disrupting autophagosome maturationClaudia S Bauer, Christopher P Webster, Allan C Shaw, et al.
Frontiers in Aging Neuroscience|May 30, 2023
A Y374X TDP43 truncation leads to an altered metabolic profile in amyotrophic lateral sclerosis fibroblasts driven by pyruvate and TCA cycle intermediate alterationsScott P Allen, Afnan Al Sultan, Elaine Kabucho Kibirige, et al.
Life Science Alliance|December 5, 2024
RuvBL1/2 reduce toxic dipeptide repeat protein burden in multiple models of C9orf72-ALS/FTDChristopher P Webster, Bradley Hall, Olivia M Crossley, et al.
Molecular Neurodegeneration|August 11, 2021
SRSF1-dependent inhibition of C9ORF72-repeat RNA nuclear export: genome-wide mechanisms for neuroprotection in amyotrophic lateral sclerosisLydia M Castelli, Luisa Cutillo, Cleide Dos Santos Souza, et al.
Science Translational Medicine|March 1, 2023
A cell-penetrant peptide blocking <i>C9ORF72</i>-repeat RNA nuclear export reduces the neurotoxic effects of dipeptide repeat proteinsLydia M Castelli, Ya-Hui Lin, Alvaro Sanchez-Martinez, et al.
Brain : a Journal of Neurology|January 31, 2019
Astrocyte adenosine deaminase loss increases motor neuron toxicity in amyotrophic lateral sclerosisScott P Allen, Benjamin Hall, Lydia M Castelli, et al.
Nature Communications|July 6, 2017
SRSF1-dependent nuclear export inhibition of C9ORF72 repeat transcripts prevents neurodegeneration and associated motor deficitsGuillaume M Hautbergue, Lydia M Castelli, Laura Ferraiuolo, et al.
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Showing results (21-30 of 29) with videos related to

Sort By:
Pageof 3
You have reached the last page of results.This site can display upto 29 results.
Aging Cell|December 14, 2020
Directly converted astrocytes retain the ageing features of the donor fibroblasts and elucidate the astrocytic contribution to human CNS health and diseaseNoemi Gatto, Cleide Dos Santos Souza, Allan C Shaw, et al.
Nature Communications|September 7, 2023
The master energy homeostasis regulator PGC-1α exhibits an mRNA nuclear export functionSimeon R Mihaylov, Lydia M Castelli, Ya-Hui Lin, et al.
Frontiers in Cellular Neuroscience|January 9, 2023
Loss of TMEM106B exacerbates C9ALS/FTD DPR pathology by disrupting autophagosome maturationClaudia S Bauer, Christopher P Webster, Allan C Shaw, et al.
Frontiers in Aging Neuroscience|May 30, 2023
A Y374X TDP43 truncation leads to an altered metabolic profile in amyotrophic lateral sclerosis fibroblasts driven by pyruvate and TCA cycle intermediate alterationsScott P Allen, Afnan Al Sultan, Elaine Kabucho Kibirige, et al.
Life Science Alliance|December 5, 2024
RuvBL1/2 reduce toxic dipeptide repeat protein burden in multiple models of C9orf72-ALS/FTDChristopher P Webster, Bradley Hall, Olivia M Crossley, et al.
Molecular Neurodegeneration|August 11, 2021
SRSF1-dependent inhibition of C9ORF72-repeat RNA nuclear export: genome-wide mechanisms for neuroprotection in amyotrophic lateral sclerosisLydia M Castelli, Luisa Cutillo, Cleide Dos Santos Souza, et al.
Science Translational Medicine|March 1, 2023
A cell-penetrant peptide blocking <i>C9ORF72</i>-repeat RNA nuclear export reduces the neurotoxic effects of dipeptide repeat proteinsLydia M Castelli, Ya-Hui Lin, Alvaro Sanchez-Martinez, et al.
Brain : a Journal of Neurology|January 31, 2019
Astrocyte adenosine deaminase loss increases motor neuron toxicity in amyotrophic lateral sclerosisScott P Allen, Benjamin Hall, Lydia M Castelli, et al.
Nature Communications|July 6, 2017
SRSF1-dependent nuclear export inhibition of C9ORF72 repeat transcripts prevents neurodegeneration and associated motor deficitsGuillaume M Hautbergue, Lydia M Castelli, Laura Ferraiuolo, et al.
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