MicroRNA Profiling in Cancer

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Androgen Refractory Prostate Cancer
CaP Cell
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computational analysis of microRNA expression
DAB2IP
DAVID Software
DNA Capture Probe
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gene regulation networks
human cancer
Ingenuity Pathway Analysis System
Interconnection of MicroRNA and Transcription Factor-Mediated Regulatory Networks
Intronic miRNA
Intronic miRNAs
LNCaP Cell
LnCAP Cells
Log2 Hy3
Mathematical and Computational Modeling of Post-Transcriptional Gene Regulation by MicroRNAs
mathematical modeling cancer
Mature microRNAs
Measurement and Interpretation of MiRNA Expression Profiles
microRNA Clusters
microRNA detection
microRNA Expression
MicroRNA Expression Analysis by LNA Enhanced Microarrays
microRNA Expression Profiling
microRNA profiling
microRNA regulation
MicroRNAs Involved in Prostate Cancer
miRNA Expression
miRNA Promoter
miRNA Target
Multiple microRNAs
post-transcriptional regulation
Protein Protein Interactions Networks
qPCR Measurements
quantitative genomics
Real Time QPCR
Real Time QPCR Data
RISC Complex
Small RNA Fraction
systems biology
transcription factor analysis

Product details

  • ISBN 9789814267014
  • Weight: 620g
  • Dimensions: 156 x 234mm
  • Publication Date: 31 Oct 2009
  • Publisher: Pan Stanford Publishing Pte Ltd
  • Publication City/Country: SG
  • Product Form: Hardback
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This book presents advances in the interdisciplinary field of microRNA research of human cancers from a unique perspective of quantitative sciences: bioinformatics, computational and systems biology, and mathematical modeling. This volume contains adaptations and critical reviews of state-of-the-art studies, ranging from technological advances in microRNA detection and profiling, clinically oriented microRNA profiling in several human cancers, to a systems biology analysis of global patterns of microRNA regulation of signaling and metabolic pathways. It discusses interactions with transcription factor regulatory networks and mathematical modeling of microRNA regulation.

Yuriy Gusev, PhD, assistant professor in Bioinformatics, Department of Surgery, at the University of Oklahoma Health Sciences Center, is instrumental in the ongoing development and activities of a surgical research facility focused on molecular and cellular studies of human diseases related to surgery. He is responsible for the management of computerized cell imaging and bioinformatics systems for gene expression micro-arrays technologies in Surgical Research Core Facilities as well as the education of residents, postdoctoral fellows, and medical and graduate students.