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The Resource Investigations of Cellular and Molecular Biophysical Properties by Atomic Force Microscopy Nanorobotics

Investigations of Cellular and Molecular Biophysical Properties by Atomic Force Microscopy Nanorobotics

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Investigations of Cellular and Molecular Biophysical Properties by Atomic Force Microscopy Nanorobotics
Title
Investigations of Cellular and Molecular Biophysical Properties by Atomic Force Microscopy Nanorobotics
Creator
Subject
Language
eng
Member of
Cataloging source
MiAaPQ
Literary form
non fiction
Nature of contents
dictionaries
Series statement
Springer Theses Ser
Investigations of Cellular and Molecular Biophysical Properties by Atomic Force Microscopy Nanorobotics
Label
Investigations of Cellular and Molecular Biophysical Properties by Atomic Force Microscopy Nanorobotics
Link
http://libproxy.rpi.edu/login?url=https://ebookcentral.proquest.com/lib/rpi/detail.action?docID=5097146
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Copyright
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Carrier category
online resource
Carrier category code
cr
Carrier MARC source
rdacarrier
Color
multicolored
Content category
text
Content type code
txt
Content type MARC source
rdacontent
Contents
  • "Supervisorâ{u0080}{u0099}s Foreword" -- "Parts of this thesis have been published in the following journal articles:" -- "Acknowledgements" -- "Contents" -- "1 Introduction to Atomic Force Microscopy-Based Nanorobotics for Biomedical Applications" -- "1.1 Background and Motivation" -- "1.2 Cellular Physiological Properties Detection" -- "1.3 Single-Cell and Single-Molecule Techniques" -- "1.4 Nanorobot Based on AFM" -- "1.5 Opportunities and Challenges" -- "1.6 Thesis Contents and Chapter Organization" -- "References" -- "2 Immobilization Methods for Observing Living Mammalian Suspended Cells by AFM" -- "2.1 Current Status of Immobilizing Living Cell for AFM Imaging" -- "2.2 Biological Experiment Platform Based on AFM Nanorobot" -- "2.3 Immobilizing Mammalian Suspended Cells by Micropillar Array" -- "2.4 Imaging Living Mammalian Suspended Cells Based on Micro-Pillar Immobilization" -- "2.5 Imaging Living Mammalian Suspended Cells Based on Micro-Well Immobilization" -- "2.6 Summary" -- "References" -- "3 Measuring the Mechanical Properties of Single Cells by AFM" -- "3.1 Current Status of Measuring Cell Mechanics by AFM" -- "3.2 Principle and Methods of Measuring Cell Mechanics by AFM" -- "3.3 Fabrication of AFM Spherical Tip" -- "3.4 Measuring the Mechanics of Cancerous Cells with Different Invasive Abilities" -- "3.5 Summary" -- "References" -- "4 Single-Molecule Recognition and Force Measurements by AFM" -- "4.1 Current Status of AFM Single-Molecule Force Measurements" -- "4.2 Principle of AFM Single-Molecule Force Spectroscopy" -- "4.3 Tip Functionalization and Verification" -- "4.4 Measuring the CD20-Rituximab Interaction Forces" -- "4.4.1 Purified CD20s on Mica" -- "4.4.2 Native CD20s on Lymphoma Cell" -- "4.5 Summary" -- "References" -- "5 Mapping Membrane Proteins on Cell Surface by AFM"
  • "5.1 Current Status of Mapping Membrane Proteins on Cell Surface by AFM" -- "5.2 Peak Force Tapping AFM" -- "5.3 Mapping Protein Distributions by PFT" -- "5.3.1 Avidins on Mica" -- "5.3.2 CD20s on Lymphoma Cell Surface" -- "5.4 Summary" -- "References" -- "6 Applications of AFM Cellular and Molecular Biophysical Detection in Clinical Lymphoma Rituximab Treatment" -- "6.1 Cellular Ultra-Microstructure and Mechanics Detection" -- "6.1.1 PCD Mechanism" -- "6.1.2 ADCC Mechanism" -- "6.1.3 CDC Mechanism" -- "6.2 Probing Target Proteins on Primary Cells from Clinical Lymphoma Patients" -- "6.2.1 Detecting CD20-Rituximab Interactions on Patient Cancerous Cells" -- "6.2.2 Detecting FcR-Rituximab Interactions on Patient Effector Cells" -- "6.3 Comparison of AFM Detection Results and Clinical Therapeutic Outcomes" -- "6.3.1 CD20-Rituximab Interaction on Patient Cancerous Cells and Clinical Efficacies" -- "6.3.2 FcR-Rituximab Interaction Patient Effector Cells and Clinical Efficacies" -- "6.4 Summary" -- "References" -- "7 Conclusion and Future Work" -- "7.1 Conclusion" -- "7.2 Future Work" -- "References"
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{'f': 'http://opac.lib.rpi.edu/record=b4414664'}
Extent
1 online resource (146 pages)
Form of item
online
Isbn
9789811068294
Media category
computer
Media MARC source
rdamedia
Media type code
c
Sound
unknown sound
Specific material designation
remote

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