An Improved Protocol for MRNA Quantification After Fluorescence-activated Cell Sorting with an Increased Signal to Noise Ratio in Flow Cytometry
Overview
Molecular Biology
Affiliations
We established a method to analyze cells collected by fluorescence-activated cell sorting (FACS) named mRNA quantification after FACS (FACS-mQ), in which cells are labeled with a fluorescent dye in a manner that minimizes RNA degradation, and then cells sorted by FACS are examined by analyzing their gene expression profile. In this study, we established a modified protocol to analyze molecules with a low expression level, such as N-cadherin and thyroid transcription factor, by improving the signal to noise ratio in flow cytometry. Use of a fluorophore-conjugated second antibody and the appropriate choice of a fluorescence dye showed a marked increase in the signal to noise ratio. Use of the Can Get Signal Immunostain in diluting antibodies shortened the reaction time. In real-time reverse transcription-PCR, a significant decrease in the copy number of intracellular mRNAs was not observed after in-tube immunostaining. These results indicated that the present protocol is useful for separating and analyzing cells by FACS-mQ, targeting a molecule with a low expression level.
PBMC fixation and processing for Chromium single-cell RNA sequencing.
Chen J, Cheung F, Shi R, Zhou H, Lu W J Transl Med. 2018; 16(1):198.
PMID: 30016977 PMC: 6050658. DOI: 10.1186/s12967-018-1578-4.
Antibody Engineering for Pursuing a Healthier Future.
Saeed A, Wang R, Ling S, Wang S Front Microbiol. 2017; 8:495.
PMID: 28400756 PMC: 5368232. DOI: 10.3389/fmicb.2017.00495.