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This volume explores the latest engineering methods of mammalian
cells that are useful for controlling the performance of engineered
mammalian cells for future cell-based therapeutics and for better
understanding of complex biological systems. The chapters in this
book are organized into five parts. Part One described methods to
engineer mammalian cells to sense biologically relevant inputs,
such as cell contacts and soluble proteins. Part Two looks at
techniques to engineer mammalian cells to sense artificial inputs,
such as light and ultrasound. Part Three provides cutting-edge
CRISPR-Cas-based methods to carry out highly multiplexed genome
editing and spatiotemporally controlled genome editing. Part Four
discusses ways to control and engineer biological events in
mammalian cells in combination with chemical compounds and systems.
Part Five explores techniques to engineer specific mammalian cells
in targeted manners. 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.
Comprehensive and authoritative, Mammalian Cell Engineering:
Methods and Protocols is a valuable resource that allows scientists
to successfully carry out their research, thus ultimately
contributing to the future advancement of this field.
This volume explores the latest engineering methods of mammalian
cells that are useful for controlling the performance of engineered
mammalian cells for future cell-based therapeutics and for better
understanding of complex biological systems. The chapters in this
book are organized into five parts. Part One described methods to
engineer mammalian cells to sense biologically relevant inputs,
such as cell contacts and soluble proteins. Part Two looks at
techniques to engineer mammalian cells to sense artificial inputs,
such as light and ultrasound. Part Three provides cutting-edge
CRISPR-Cas-based methods to carry out highly multiplexed genome
editing and spatiotemporally controlled genome editing. Part Four
discusses ways to control and engineer biological events in
mammalian cells in combination with chemical compounds and systems.
Part Five explores techniques to engineer specific mammalian cells
in targeted manners. 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.
Comprehensive and authoritative, Mammalian Cell Engineering:
Methods and Protocols is a valuable resource that allows scientists
to successfully carry out their research, thus ultimately
contributing to the future advancement of this field.
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