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Single Cell Biomedicine

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Cover of 'Single Cell Biomedicine'

Table of Contents

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    Book Overview
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    Chapter 1 Can the Single Cell Make Biomedicine Different?
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    Chapter 2 Automated Single-Cell Analysis and Isolation System: A Paradigm Shift in Cell Screening Methods for Bio-medicines
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    Chapter 3 Single-Cell Non-coding RNA in Embryonic Development
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    Chapter 4 High Throughput Single Cell RNA Sequencing, Bioinformatics Analysis and Applications
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    Chapter 5 Circulating Tumor Cells: The Importance of Single Cell Analysis
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    Chapter 6 Super-Resolution Fluorescence Microscopy for Single Cell Imaging
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    Chapter 7 Single Cell Proteomics for Molecular Targets in Lung Cancer: High-Dimensional Data Acquisition and Analysis
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    Chapter 8 Therapeutic Antibody Discovery in Infectious Diseases Using Single-Cell Analysis
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    Chapter 9 Single Cell Genetics and Epigenetics in Early Embryo: From Oocyte to Blastocyst
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    Chapter 10 The Potential Roles and Advantages of Single Cell Sequencing in the Diagnosis and Treatment of Hematological Malignancies
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    Chapter 11 Application of Single Cell Sequencing in Cancer
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    Chapter 12 Emergence of Bias During the Synthesis and Amplification of cDNA for scRNA-seq
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    Chapter 13 Detection and Application of RNA Editing in Cancer
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    Chapter 14 Is Pooled CRISPR-Screening the Dawn of a New Era for Functional Genomics
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    Chapter 15 Roles of Single Cell Systems Biomedicine in Lung Diseases
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    Chapter 16 The Significance of Single-Cell Biomedicine in Stem Cells
Attention for Chapter 5: Circulating Tumor Cells: The Importance of Single Cell Analysis
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Chapter title
Circulating Tumor Cells: The Importance of Single Cell Analysis
Chapter number 5
Book title
Single Cell Biomedicine
Published in
Advances in experimental medicine and biology, January 2018
DOI 10.1007/978-981-13-0502-3_5
Pubmed ID
Book ISBNs
978-9-81-130501-6, 978-9-81-130502-3
Authors

D. Heymann, M. Téllez-Gabriel, Heymann, D., Téllez-Gabriel, M.

Abstract

Cancer cells that have shed from the primary tumor are able to invade into surrounding tissues, to intravasate into the bloodstream to become circulating tumor cells (CTCs), at least one part of that cells will be able to generate distant metastases. The discovery of CTCs has improved the study of cancer disease as it represents a non invasive biopsy that can be used as prognostic and prediction biomarkers. Tumour heterogeneity is a concept related to differences in tumor cells within the same tumor or between tumours in terms of genetic and phenotypic profiles, such as morphology, metabolic activity, proliferation rate, migration and metastatic abilities. Characterization of heterogeneity among CTCs at the single cell level may be useful to better understand the causes and progression of disease and for an accurate selection of molecular prognostic/prediction markers. In this chapter we aimed to describe methods for CTC enrichment and isolation as well as current methodologies for single cell analysis at different levels, including RNA, DNA, protein and epigenetic events. Finally we wanted to stress clinical and biological importance of single CTC analysis by reviewing some studies carried out in different cancer subtypes.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 43 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 43 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 10 23%
Student > Bachelor 6 14%
Researcher 5 12%
Student > Doctoral Student 3 7%
Other 3 7%
Other 7 16%
Unknown 9 21%
Readers by discipline Count As %
Biochemistry, Genetics and Molecular Biology 14 33%
Medicine and Dentistry 7 16%
Engineering 4 9%
Pharmacology, Toxicology and Pharmaceutical Science 2 5%
Veterinary Science and Veterinary Medicine 2 5%
Other 3 7%
Unknown 11 26%