Surface plasmon resonance in bioanalysis / Edited by You-Peng Chen, Teng-Fei Ma.

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Bibliographic Details
Online Access: Full Text (via ScienceDirect)
Other Authors: Chen, You-Peng (Editor), Ma, Teng-Fei (Editor)
Format: eBook
Language:English
Published: Amsterdam, Netherlands : Elsevier, 2021.
Series:Comprehensive analytical chemistry ; v. 95.
Subjects:
Table of Contents:
  • Intro
  • Surface Plasmon Resonance in Bioanalysis
  • Copyright
  • Contents
  • Contributors to Volume 95
  • Preface
  • Series editorÅ› preface
  • Chapter One: Surface plasmon resonance sensing in cell biology and drug discovery
  • 1. Introduction
  • 2. Typical SPR sensing techniques in bioanalysis
  • 3. Application of SPR sensing techniques in cell biology and drug discovery
  • 3.1. Application of cSPR in cell biology and drug discovery
  • 3.1.1. Viral and bacterial detection
  • 3.1.2. Stem cells research
  • 3.1.3. Cancer research
  • 3.1.4. T cell based therapy and diagnosis.
  • 3.1.5. Drug screening and efficacy evaluation
  • 3.1.6. Distribution and interaction kinetics of drug targets
  • 3.1.7. Herbal medicine research
  • 3.2. Application of SPRi in cell biology and drug discovery
  • 3.2.1. Cell morphology study
  • 3.2.2. Cell-extracellular matrix (ECM) interactions
  • 3.2.3. Cellular mass density measurements
  • 3.2.4. Extracellular vesicles detection
  • 3.2.5. Stem cells research
  • 3.2.6. Cancer research
  • 3.2.7. Blood group detection
  • 3.2.8. Allergic disease diagnosis
  • 3.2.9. Distribution and interaction kinetics of drug targets
  • 3.2.10. Drug delivery.
  • 3.2.11. Other applications
  • 3.3. Application of SPRM in cell biology and drug discovery
  • 3.3.1. Cell morphology study
  • 3.3.2. Cell-ECM interactions
  • 3.3.3. Cellular mass density measurements
  • 3.3.4. Cell-substrate distance measurement
  • 3.3.5. Subcellular activities
  • 3.3.6. DNA molecular imaging
  • 3.3.7. Binding kinetics detection
  • 3.3.8. Extracellular vesicles detection
  • 3.3.9. Viral and bacterial detection
  • 3.3.10. Drug screening and efficacy evaluation
  • 3.4. Other SPR devices and their applications in cell biology and drug discovery.
  • 3.4.1. Plasmonic scattering microscopy (PSM)
  • 3.4.2. Plasmonic-based electrochemical impedance imaging technique (P-EIM)
  • 3.4.3. Interferometric plasmonic microscopy (iPM)
  • 3.4.4. Spatially switched SPM (ssSPM)
  • 3.4.5. Wavelength-scanning surface plasmon resonance microscope (WS-SPRM)
  • 3.4.6. Surface plasmon resonance with arrays of nanostructures
  • 4. Outlook
  • References
  • Chapter Two: Phase-sensitive surface plasmon resonance sensors for highly sensitive bioanalysis
  • 1. Introduction
  • 2. Principle of phase-sensitive SPR biosensors
  • 2.1. Schematic of the model.
  • 2.2. Simulation analysis
  • 2.2.1. Comparison between amplitude-sensitive and phase-sensitive SPR sensors
  • 2.2.2. Effect of model parameters on SPR sensors
  • 2.2.3. Sample system analysis
  • 2.2.4. Resolution calculation
  • 3. Phase interrogation methods for SPR biosensors
  • 3.1. Heterodyne detection
  • 3.1.1. Optical configurations
  • 3.1.2. Bioanalysis applications
  • 3.2. Ellipsometry
  • 3.2.1. Optical configurations
  • 3.2.2. Bioanalysis applications
  • 3.3. Interferometry
  • 3.3.1. Shear interferometry
  • 3.3.2. Spatial phase modulation interferometry.