Description

Book Synopsis

Nanoscale techniques and devices have had an explosive influence on research in life sciences and bioengineering. Reflecting this influence, Nanopatterning and Nanoscale Devices for Biological Applications provides valuable insight into the latest developments in nanoscale technologies for the study of biological systems. Written and edited by experts in the field, this first-of-its-kind collection of topics:

  • Covers device fabrication methods targeting the substrate on the nanoscale through surface modification
  • Explores the generation of nanostructured biointerfaces and bioelectronics elements
  • Examines microfluidically generated droplets as reactors enabling nanoscale sample preparation and analysis
  • Gives an overview of key biosensors and integrated devices with nanoscale functionalities
  • Discusses the biological applications of nanoscale devices, including a review of nanotechnology in tissue engineering



Trade Review

"This book is a good reference for researchers interested in realizing bio-applications based on micro- and nanostructures, where their interface with liquids and biomolecules is the key point. The most important ‘players’ of micro- and nano-bioengineering are considered, from DNA to proteins and cells. The work is a good merger of basic concepts and real examples of applications."
—Danilo Demarchi, Politecnico di Torino, Italy



Table of Contents

Interfacial Control of Multiphase Fluids in Miniaturized Devices. Nanostructured Biointerfaces. Biological Sample Preparation and Analysis Using Droplet-Based Microfluidics. Recent Developments toward the Synthesis of Supramolecular Bioelectronic Nanostructures. Physics and Modeling of DNA-Derivative Architectures for Long-Wavelength Bio-Sensing. In Situ Nanotechnology-Derived Sensors for Ensuring Implant Success. Nucleic Acid and Nucleoprotein Nanodevices. 2-D Nanofluidic Bioarray for Nucleic Acid Analysis. Optical Oxygen Sensors for Micro- and Nanofluidic Devices. Construction of Enzyme Biosensors Based on a Commercial Glucose Sensor Platform. Bioanalytical Applications of Piezoelectric Sensors. Monitoring, Controlling, and Improving Engineered Tissues: Nanoscale Technologies and Devices for Tissue Engineering. Bioinspired Nanomaterials for Bone Regeneration. Nanotechnology for Tissue Engineering and Regenerative Medicine.

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    A Hardback by Seila Šelimović

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      Publisher: Taylor & Francis Inc
      Publication Date: Publication Date: 11/07/2014
      ISBN13: 9781466586314, 978-1466586314
      ISBN10: 1466586311

      Description

      Book Synopsis

      Nanoscale techniques and devices have had an explosive influence on research in life sciences and bioengineering. Reflecting this influence, Nanopatterning and Nanoscale Devices for Biological Applications provides valuable insight into the latest developments in nanoscale technologies for the study of biological systems. Written and edited by experts in the field, this first-of-its-kind collection of topics:

      • Covers device fabrication methods targeting the substrate on the nanoscale through surface modification
      • Explores the generation of nanostructured biointerfaces and bioelectronics elements
      • Examines microfluidically generated droplets as reactors enabling nanoscale sample preparation and analysis
      • Gives an overview of key biosensors and integrated devices with nanoscale functionalities
      • Discusses the biological applications of nanoscale devices, including a review of nanotechnology in tissue engineering



      Trade Review

      "This book is a good reference for researchers interested in realizing bio-applications based on micro- and nanostructures, where their interface with liquids and biomolecules is the key point. The most important ‘players’ of micro- and nano-bioengineering are considered, from DNA to proteins and cells. The work is a good merger of basic concepts and real examples of applications."
      —Danilo Demarchi, Politecnico di Torino, Italy



      Table of Contents

      Interfacial Control of Multiphase Fluids in Miniaturized Devices. Nanostructured Biointerfaces. Biological Sample Preparation and Analysis Using Droplet-Based Microfluidics. Recent Developments toward the Synthesis of Supramolecular Bioelectronic Nanostructures. Physics and Modeling of DNA-Derivative Architectures for Long-Wavelength Bio-Sensing. In Situ Nanotechnology-Derived Sensors for Ensuring Implant Success. Nucleic Acid and Nucleoprotein Nanodevices. 2-D Nanofluidic Bioarray for Nucleic Acid Analysis. Optical Oxygen Sensors for Micro- and Nanofluidic Devices. Construction of Enzyme Biosensors Based on a Commercial Glucose Sensor Platform. Bioanalytical Applications of Piezoelectric Sensors. Monitoring, Controlling, and Improving Engineered Tissues: Nanoscale Technologies and Devices for Tissue Engineering. Bioinspired Nanomaterials for Bone Regeneration. Nanotechnology for Tissue Engineering and Regenerative Medicine.

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