The interrogation of single cells is revolutionizing biology, especially our understanding of the immune system. Flow cytometry is still one of the most versatile and high-throughput approaches for single-cell analysis, and its capability has been recently extended to detect up to 28 colors, thus approaching the utility of cytometry by time of flight (CyTOF). However, flow cytometry suffers from autofluorescence and spreading error (SE) generated by errors in the measurement of photons mainly at red and far-red wavelengths, which limit barcoding and the detection of dim markers. Consequently, development of 28-color fluorescent antibody panels for flow cytometry is laborious and time consuming. Here, we describe the steps that are required ...
Fluorescent immunophenotyping uses fluorescently-conjugated antibodies to identify, characterize and...
Flow cytometry (FCM) is a technique for measuring physical, chemical and biological characteristics ...
Contains fulltext : 176658.pdf (publisher's version ) (Open Access
The interrogation of single cells is revolutionizing biology, especially our understanding of the im...
This article first reviews scientific meanings of single-cell analysis by highlighting two key scien...
Flow cytometry is a laser-based technology generating a scattered and a fluorescent light signal tha...
Background: We developed a single-color multitarget flow cytometry (SM-FC) assay, a sin-gle-tube ass...
Fluorescent cell barcoding (FCB) is a cell-based multiplexing technique for high-throughput flow cyt...
Immunofluorescence microscopy is a unique method to reveal the spatial location of pro-teins in tiss...
Selection of cells labeled with fluorescein isothiocyanate-conjugated (FITC) antibodies can be diffi...
Accurate measurement of antigen-positive cells by flow cytometry can be hampered by background fluor...
Flow Cytometry (FCM) is widely used to investigate and diagnose human disease. Although high-through...
Advances in understanding the control mechanisms governing the behavior of cells in adherent mammali...
Flow cytometry traditionally uses fluorochrome-labeled probes, such as antibodies, to identify cells...
Fluorescent cell barcoding (FCB) is a multiplexing technique for high-throughput flow cytometry (FCM...
Fluorescent immunophenotyping uses fluorescently-conjugated antibodies to identify, characterize and...
Flow cytometry (FCM) is a technique for measuring physical, chemical and biological characteristics ...
Contains fulltext : 176658.pdf (publisher's version ) (Open Access
The interrogation of single cells is revolutionizing biology, especially our understanding of the im...
This article first reviews scientific meanings of single-cell analysis by highlighting two key scien...
Flow cytometry is a laser-based technology generating a scattered and a fluorescent light signal tha...
Background: We developed a single-color multitarget flow cytometry (SM-FC) assay, a sin-gle-tube ass...
Fluorescent cell barcoding (FCB) is a cell-based multiplexing technique for high-throughput flow cyt...
Immunofluorescence microscopy is a unique method to reveal the spatial location of pro-teins in tiss...
Selection of cells labeled with fluorescein isothiocyanate-conjugated (FITC) antibodies can be diffi...
Accurate measurement of antigen-positive cells by flow cytometry can be hampered by background fluor...
Flow Cytometry (FCM) is widely used to investigate and diagnose human disease. Although high-through...
Advances in understanding the control mechanisms governing the behavior of cells in adherent mammali...
Flow cytometry traditionally uses fluorochrome-labeled probes, such as antibodies, to identify cells...
Fluorescent cell barcoding (FCB) is a multiplexing technique for high-throughput flow cytometry (FCM...
Fluorescent immunophenotyping uses fluorescently-conjugated antibodies to identify, characterize and...
Flow cytometry (FCM) is a technique for measuring physical, chemical and biological characteristics ...
Contains fulltext : 176658.pdf (publisher's version ) (Open Access