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The molecular biology of acute promyelocytic leukemia.
J. L. Slack, R. E. Gallagher
Hematology/Oncology
Research output
:
Contribution to journal
›
Review article
›
peer-review
43
Scopus citations
Overview
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Dive into the research topics of 'The molecular biology of acute promyelocytic leukemia.'. Together they form a unique fingerprint.
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Keyphrases
Molecular Biology
100%
Acute Promyelocytic Leukemia
100%
Retinoic Acid Receptor
100%
PML-RAR
56%
Functional Analysis
12%
NuMA
12%
Human Cancer
6%
Leukemia
6%
Oncogene
6%
Ubiquitin
6%
Transgenic Mice
6%
Biological Activity
6%
Type-specific
6%
Specific Expression
6%
Functional Activity
6%
Molecular Pathogenesis
6%
Differentiation Therapy
6%
Functional Links
6%
Prognostic Significance
6%
Alpha Function
6%
Chemotherapy Combinations
6%
Dimer Interface
6%
Promyelocytes
6%
Normal Hematopoiesis
6%
Expression Vector
6%
Pathogenetic Features
6%
Subtle Differences
6%
Promyelocytic
6%
NPM-RAR
6%
Knowledge Accumulation
6%
α Isoform
6%
Fusion Partner
6%
Retinoid Signaling
6%
Retinoid Resistance
6%
Unifying Model
6%
Medicine and Dentistry
Granulocyte
100%
Acute Promyelocytic Leukemia
100%
In Vitro
14%
Retinoid
14%
Malignant Neoplasm
7%
Signal Transduction
7%
Ubiquitin
7%
Transgenic Mouse
7%
Biological Activity
7%
Maturation
7%
Oncogene
7%
Molecular Pathology
7%
Differentiation Therapy
7%
Hematopoiesis
7%
Combination Chemotherapy
7%
Promyelocyte
7%
Heterodimer
7%
Expression Vector
7%
Biochemistry, Genetics and Molecular Biology
Molecular Biology
100%
Granulocyte
100%
Retinoid
14%
Mouse
7%
Signal Transduction
7%
Oncogene
7%
Ubiquitin
7%
Isoform
7%
Transgenic Mouse
7%
Biological Activity
7%
Maturation
7%
Hematopoiesis
7%
Transcription
7%
Dimerization
7%
Cytogenetics
7%
Expression Vector
7%
Promyelocyte
7%
Neuroscience
Granulocyte
100%
Tretinoin
50%
In Vitro
14%
Retinoid
14%
Ubiquitin
7%
Cell Signaling
7%
Oncogene
7%
Cytogenetics
7%
Hematopoiesis
7%
Expression Vector
7%
Promyelocyte
7%