Resultats de la cerca - Ching‐In Lau
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Mechanism by which caffeine potentiates lethality of nitrogen mustard. per Ching C. Lau, A B Pardee
Publicat 1982Artigo -
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Valproic acid induces growth arrest, apoptosis, and senescence in medulloblastomas by increasing histone hyperacetylation and regulating expression of p21Cip1, CDK4, and CMYC per Xiao‐Nan Li, Qin Shu, Jack Su, László Perlaky, Susan M. Blaney, Ching C. Lau
Publicat 2005Artigo -
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P21-Activated Protein Kinase Is Overexpressed in Hepatocellular Carcinoma and Enhances Cancer Metastasis Involving c-Jun NH2-Terminal Kinase Activation and Paxillin Phosphorylation per Ching C. Lau, Veronica Yee-Law Leong, Man-Fong Lee, Haitao Xu, Dong‐Yan Jin, Irene Oi‐Lin Ng
Publicat 2007Artigo -
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The transcriptional activator Gli2 modulates T-cell receptor signalling through attenuation of AP-1 and NFκB activity per Anna L. Furmanski, Alessandro Barbarulo, Anisha Solanki, Ching‐In Lau, Hemant Sahni, José Ignacio Saldaña, Fulvio D’Acquisto, Tessa Crompton
Publicat 2015Artigo -
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Garlic-Derived S-Allylmercaptocysteine Ameliorates Nonalcoholic Fatty Liver Disease in a Rat Model through Inhibition of Apoptosis and Enhancing Autophagy per Jia Xiao, Rui Guo, Man‐Lung Fung, Emily C. Liong, Raymond Chuen‐Chung Chang, Ching C. Lau, George L. Tipoe
Publicat 2013Artigo -
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A pilot study using carboplatin, vincristine, and temozolomide in children with progressive/symptomatic low-grade glioma: a Children's Oncology Group study per Murali Chintagumpala, Sandrah P. Eckel, Mark Krailo, Michael J. Morris, Adekunle M. Adesina, Roger J. Packer, Ching C. Lau, Amar Gajjar
Publicat 2015Artigo -
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Eines de cerca:
Matèries relacionades
Biology
Medicine
Genetics
Gene
Cancer research
Internal medicine
Cancer
Cell biology
Pathology
Biochemistry
Oncology
Glioma
Immunology
Medulloblastoma
Osteosarcoma
Gene expression
Computational biology
Chemistry
Genotype
Chemotherapy
Bioinformatics
Genome
Molecular biology
Mutation
Signal transduction
Single-nucleotide polymorphism
Endocrinology
Pharmacology
Disease
Wnt signaling pathway