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This book provides an update on the latest development in the field
of microRNAs in cancer research with an emphasis on translational
research. Since the early 2000s, microRNAs have been recognized as
important and ubiquitous regulators of gene expression. Soon it
became evident that their deregulation can cause human diseases
including cancer. This book focuses on the emerging opportunities
for the application of microRNA research in clinical practice. In
this context, computer models are presented that can help to
identify novel biomarkers, e.g. in circulating microRNAs, and tools
that can help to design microRNA-based therapeutic interventions.
Other chapters evaluate the role of microRNAs in immunotherapy,
immune responses and drug resistance. Covering key topics on
microRNAs in cancer research this book is a valuable resource for
both emerging and established microRNA researchers who want to
explore the potential of microRNAs as therapeutic targets or
co-adjuvants in cancer therapies.
This volume details a collection of state-of-art methods including
identification of novel ncRNAs and their targets, functional
annotation and disease association in different biological
contexts. Chapters guide readers through an overview of
disease-specific ncRNAs, computational methods and workflows for
ncRNA discovery, annotation based on high-throughput sequencing
data, bioinformatics tools and databases for ncRNA analyses,
network-based methods, and kinetic modelling of ncRNA-mediated gene
regulation. Written in the highly successful Methods in Molecular
Biology series format, chapters include introductions to their
respective topics, lists of the necessary materials and reagents,
step-by-step, readily reproducible laboratory protocols, and tips
on troubleshooting and avoiding known pitfalls. Authoritative and
cutting-edge, Computational Biology of Non-Coding RNA: Methods and
Protocols aims to provide a state-of-the-art collection of
computational methods and approaches that will be of value to
researchers interested in ncRNA field.
This edited reflects the current state of knowledge about the role
of microRNAs in the formation and progression of solid tumours. The
main focus lies on computational methods and applications, together
with cutting edge experimental techniques that are used to approach
all aspects of microRNA regulation in cancer. We are sure that the
emergence of high-throughput quantitative techniques will make this
integrative approach absolutely necessary in the near future. This
book will be a resource for researchers starting out with cancer
microRNA research, but is also intended for the experienced
researcher who wants to incorporate concepts and tools from systems
biology and bioinformatics into his work. Bioinformaticians and
modellers are provided with a general perspective on microRNA
biology in cancer, and the state-of-the-art in computational
microRNA biology.
This edited reflects the current state of knowledge about the role
of microRNAs in the formation and progression of solid tumours. The
main focus lies on computational methods and applications, together
with cutting edge experimental techniques that are used to approach
all aspects of microRNA regulation in cancer. We are sure that the
emergence of high-throughput quantitative techniques will make this
integrative approach absolutely necessary in the near future. This
book will be a resource for researchers starting out with cancer
microRNA research, but is also intended for the experienced
researcher who wants to incorporate concepts and tools from systems
biology and bioinformatics into his work. Bioinformaticians and
modellers are provided with a general perspective on microRNA
biology in cancer, and the state-of-the-art in computational
microRNA biology.
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