about
Regulation of ferroptotic cancer cell death by GPX4Development of small-molecule probes that selectively kill cells induced to express mutant RASUnraveling the mechanism of cell death induced by chemical fibrils.Ferrostatins inhibit oxidative lipid damage and cell death in diverse disease modelsModulatory profiling identifies mechanisms of small molecule-induced cell death.Identification of Simple Compounds with Microtubule-Binding Activity That Inhibit Cancer Cell Growth with High PotencyCell-Line Selectivity Improves the Predictive Power of Pharmacogenomic Analyses and Helps Identify NADPH as Biomarker for Ferroptosis Sensitivity.tRNA synthase suppression activates de novo cysteine synthesis to compensate for cystine and glutathione deprivation during ferroptosisGlobal survey of cell death mechanisms reveals metabolic regulation of ferroptosis.Discovery of Mdm2-MdmX E3 ligase inhibitors using a cell-based ubiquitination assay.Transdermal delivery of a readthrough-inducing drug: a new approach of gentamicin administration for the treatment of nonsense mutation-mediated disorders.Dependency of a therapy-resistant state of cancer cells on a lipid peroxidase pathway.Unsupervised identification of disease states from high-dimensional physiological and histopathological profilesHuman Pluripotency Is Initiated and Preserved by a Unique Subset of Founder Cells
P50
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P50
description
researcher
@en
wetenschapper
@nl
հետազոտող
@hy
name
Kenichi Shimada
@ast
Kenichi Shimada
@en
Kenichi Shimada
@es
Kenichi Shimada
@nl
type
label
Kenichi Shimada
@ast
Kenichi Shimada
@en
Kenichi Shimada
@es
Kenichi Shimada
@nl
prefLabel
Kenichi Shimada
@ast
Kenichi Shimada
@en
Kenichi Shimada
@es
Kenichi Shimada
@nl
P106
P1153
55262447400
P31
P496
0000-0001-8540-9785