Résultats de la recherche - Robert E. Drolet
- Résultat(s) 1 - 7 résultats de 7
-
1
-
2
-
3
Non‐motor parkinsonian pathology in aging A53T α‐Synuclein mice is associated with progressive synucleinopathy and altered enzymatic function par Kaitlin Farrell, Sesha Krishnamachari, Ernesto Villanueva, Haiyan Lou, Tshianda N.M. Alerte, Eloise Peet, Robert E. Drolet, Ruth G. Perez
Publié 2013Artigo -
4
Internalized Tau Oligomers Cause Neurodegeneration by Inducing Accumulation of Pathogenic Tau in Human Neurons Derived from Induced Pluripotent Stem Cells par Marija Usenovic, Shahriar Niroomand, Robert E. Drolet, Lihang Yao, Renee C. Gaspar, Nathan G. Hatcher, Joel B. Schachter, John J. Renger, Sophie Parmentier‐Batteur
Publié 2015Artigo -
5
-
6
TMEM175 deficiency impairs lysosomal and mitochondrial function and increases α-synuclein aggregation par Sarah Jinn, Robert E. Drolet, Paige E. Cramer, Andus Hon-Kit Wong, Dawn Toolan, Cheryl A. Gretzula, Bhavya Voleti, Galya Vassileva, Jyoti Disa, Marija Tadin‐Strapps, David J. Stone
Publié 2017Artigo -
7
LRRK2 inhibition prevents endolysosomal deficits seen in human Parkinson's disease par Emily M. Rocha, Briana R. De Miranda, Sandra L. Castro, Robert E. Drolet, Nathan G. Hatcher, Lihang Yao, Sean M. Smith, Matthew T. Keeney, Roberto Di Maio, Julia Kofler, Teresa G. Hastings, J. Timothy Greenamyre
Publié 2019Artigo
Outils de recherche:
Sujets similaires
Biology
Disease
Medicine
Neuroscience
Parkinson's disease
Biochemistry
Internal medicine
Mitochondrion
Cell biology
Dopamine
Dopaminergic
Neurodegeneration
Pathology
Rotenone
Substantia nigra
Alpha-synuclein
Apoptosis
Autophagy
Gene
Genetics
LRRK2
Tyrosine hydroxylase
Alzheimer's disease
Artificial intelligence
Central nervous system
Chemistry
Cognitive psychology
Computer science
Embryonic stem cell
Endocrinology