Micro/Nanofluidic Devices for Single Cell Analysis

Micro/Nanofluidic Devices for Single Cell Analysis
Title Micro/Nanofluidic Devices for Single Cell Analysis PDF eBook
Author Fan-Gang Tseng
Publisher MDPI
Pages 167
Release 2018-10-04
Genre Computers
ISBN 3038421464

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This book is a printed edition of the Special Issue "Micro/Nanofluidic Devices for Single Cell Analysis" that was published in Micromachines

Micro/Nanofluidic Devices for Single Cell Analysis

Micro/Nanofluidic Devices for Single Cell Analysis
Title Micro/Nanofluidic Devices for Single Cell Analysis PDF eBook
Author
Publisher
Pages 166
Release 2015
Genre
ISBN

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Micro/Nanofluidic Devices for Single Cell Analysis, Volume II

Micro/Nanofluidic Devices for Single Cell Analysis, Volume II
Title Micro/Nanofluidic Devices for Single Cell Analysis, Volume II PDF eBook
Author Tuhin Subhra Santra
Publisher Mdpi AG
Pages 160
Release 2022-02-03
Genre Science
ISBN 9783036529196

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This Special Issue book entitled "Micro/nanofluidic devices for Single Cell Analysis, Volume II" covers different aspects of single-cell analysis. This book emphasizes in detail single-cell separation, manipulation, and analysis and diagnosis. It also covers single-nucleus electrical characterization, hydrodynamic stretching, microsieve filtration for genetic, phenotypic analysis which links to cellular deformability and the clinical application of an integrated microfluidic device for the isolation of circulating tumor cells and analysis. Moreover, this book describes single-cell mechanophenotyping to evaluate the behavior of U87 Glioma cells, with the heterogeneity being quantified according to the deformation of the U937 monocytes and U937-differentiated macrophages. Finally, this book also demonstrated the real-time monitoring and detection of single-cell level cytokine secretion using LSPR technology.

Micro and Nanofluidic Devices

Micro and Nanofluidic Devices
Title Micro and Nanofluidic Devices PDF eBook
Author Venkata Raghavendra Subrahmanya Sarma Mokkapati
Publisher
Pages
Release 2011
Genre
ISBN 9789090261133

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Essentials of Single-Cell Analysis

Essentials of Single-Cell Analysis
Title Essentials of Single-Cell Analysis PDF eBook
Author Fan-Gang Tseng
Publisher Springer
Pages 415
Release 2016-01-21
Genre Technology & Engineering
ISBN 3662491184

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This book provides an overview of single-cell isolation, separation, injection, lysis and dynamics analysis as well as a study of their heterogeneity using different miniaturized devices. As an important part of single-cell analysis, different techniques including electroporation, microinjection, optical trapping, optoporation, rapid electrokinetic patterning and optoelectronic tweezers are described in detail. It presents different fluidic systems (e.g. continuous micro/nano-fluidic devices, microfluidic cytometry) and their integration with sensor technology, optical and hydrodynamic stretchers etc., and demonstrates the applications of single-cell analysis in systems biology, proteomics, genomics, epigenomics, cancer transcriptomics, metabolomics, biomedicine and drug delivery systems. It also discusses the future challenges for single-cell analysis, including the advantages and limitations. This book is enjoyable reading material while at the same time providing essential information to scientists in academia and professionals in industry working on different aspects of single-cell analysis. Dr. Fan-Gang Tseng is a Distinguished Professor of Engineering and System Science at the National Tsing Hua University, Taiwan. Dr. Tuhin Subhra Santra is a Research Associate at the California Nano Systems Institute, University of California at Los Angeles, USA.

Handbook of Single-Cell Technologies

Handbook of Single-Cell Technologies
Title Handbook of Single-Cell Technologies PDF eBook
Author Tuhin Subhra Santra
Publisher Springer
Pages 1096
Release 2021-10-29
Genre Technology & Engineering
ISBN 9789811089527

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This book provides a brief overview of single-cell analysis using recent advanced technologies. The different sections cover different aspect of single cell analysis and applications with their advantages, limitations, and future challenges. The book has covered how different physical energies such as optical, electrical, and mechanical energy have been applied for single cell therapy and analysis. The recent advanced micro/nanofluidic devices have been employed for single-cell counting, manipulation, cultivation, separation, isolation, lysis, printing and patterning and host-viral interaction at single-cell level. Various chemical approaches for single-cell analysis have been discussed, such as liposome mediated materials transfer at single-cell and their analysis, discovery of antibody via single-cell, high-throughput screening of antigen-specific antibody-secreting cells, and biomolecular secretion analysis of individual cells. Moreover, different single-cell omics such as genomics, proteomics and transcriptomics have been discussed using microfluidic technologies as well as conventional approaches. The role of single cell analysis in system biology and biocatalysis have been discussed in detail. The book describes single-cell phenotyping of heterogeneous tissue, stimulation, and instant reaction quenching technology for biochemical kinetic analysis, large scale single-cell assay for the identification of biocatalysts and analytical techniques for single-cell studies in microbiology. The role of single-cell analysis in cancer, such as single-cell adhesion and cancer progression, single-cell technologies for cancer therapy, analytical technology for single cancer cell analysis, and biophysical markers for cancer cell analysis have been discussed. The flow cytometry based high throughput single-cell analysis have been well emphasized. Finally this book has covered single-cell electrophysiology, single-cell sensing and size measurement using mechanical and microwave resonators, molecular force spectroscopy for cell adhesion measurement, micro-tweezers and force microscopy techniques for single-cell mechanobiological analysis, mass spectrometry and acoustic tweezers for single-cell manipulation and analysis. This book is intended for academic and industrial researchers, undergraduate and graduate students in the fields of biomedical engineering, bio-micro/nanoengineering, and bio-micro/nano fabrication for single-cell analysis. It can be used for courses on bio-MEMS/bio-NEMS, biomicrofluidics, bio-micro/nanofabrications, micro/nanofluidics, biophysics, single cell analysis, bionanotechnology, drug delivery systems and biomedical microdevices. Collective contributions from respected experts, have brought diverse aspects of single-cell technologies in a single hand book. This will benefit researchers and practitioners in the biotechnology industry for different diseases analysis, therapeutics, diagnostics, drug discovery, drug screening etc. In addition to hard copies, the book will be available online and will often be updated by the authors.

Microfluidics for Single-Cell Analysis

Microfluidics for Single-Cell Analysis
Title Microfluidics for Single-Cell Analysis PDF eBook
Author Jin-Ming Lin
Publisher Springer Nature
Pages 261
Release 2019-08-28
Genre Science
ISBN 9813297298

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This book summarizes the various microfluidic-based approaches for single-cell capture, isolation, manipulation, culture and observation, lysis, and analysis. Single-cell analysis reveals the heterogeneities in morphology, functions, composition, and genetic performance of seemingly identical cells, and advances in single-cell analysis can overcome the difficulties arising due to cell heterogeneity in the diagnostics for a targeted model of disease. This book provides a detailed review of the state-of-the-art techniques presenting the pros and cons of each of these methods. It also offers lessons learned and tips from front-line investigators to help researchers overcome bottlenecks in their own studies. Highlighting a number of techniques, such as microfluidic droplet techniques, combined microfluidics-mass-spectrometry systems, and nanochannel sampling, it describes in detail a new microfluidic chip-based live single-cell extractor (LSCE) developed in the editor’s laboratory, which opens up new avenues to use open microfluidics in single-cell extraction, single-cell mass spectrometric analysis, single-cell adhesion analysis and subcellular operations. Serving as both an elementary introduction and advanced guidebook, this book interests and inspires scholars and students who are currently studying or wish to study microfluidics-based cell analysis methods.