Chemical Cytometry: Fluorescence-Based Single-Cell Analysis

Author:

Cohen Daniella1,Dickerson Jane A.1,Whitmore Colin D.1,Turner Emily H.1,Palcic Monica M.2,Hindsgaul Ole2,Dovichi Norman J.1

Affiliation:

1. Department of Chemistry, University of Washington, Seattle, Washington 98195;

2. Carlsberg Laboratory, Valby Copenhagen, DK-2500, Denmark

Abstract

Cytometry deals with the analysis of the composition of single cells. Flow and image cytometry employ antibody-based stains to characterize a handful of components in single cells. Chemical cytometry, in contrast, employs a suite of powerful analytical tools to characterize a large number of components. Tools have been developed to characterize nucleic acids, proteins, and metabolites in single cells. Whereas nucleic acid analysis employs powerful polymerase chain reaction–based amplification techniques, protein and metabolite analysis tends to employ capillary electrophoresis separation and ultrasensitive laser-induced fluorescence detection. It is now possible to detect yoctomole amounts of many analytes in single cells.

Publisher

Annual Reviews

Subject

Analytical Chemistry

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