Back to Search Start Over

High-resolution imaging of protein secretion at the single-cell level using plasmon-enhanced FluoroDOT assay

Authors :
Anushree, Seth
Ekansh, Mittal
Jingyi, Luan
Samhitha, Kolla
Monty B, Mazer
Hemant, Joshi
Rohit, Gupta
Priya, Rathi
Zheyu, Wang
Jeremiah J, Morrissey
Joel D, Ernst
Cynthia, Portal-Celhay
Sharon Celeste, Morley
Jennifer A, Philips
Srikanth, Singamaneni
Source :
Cell reports methods, vol 2, iss 8
Publication Year :
2022
Publisher :
eScholarship, University of California, 2022.

Abstract

Secreted proteins mediate essential physiological processes. With conventional assays, it is challenging to map the spatial distribution of proteins secreted by single cells, to study cell-to-cell heterogeneity in secretion, or to detect proteins of low abundance or incipient secretion. Here, we introduce the "FluoroDOT assay," which uses an ultrabright nanoparticle plasmonic-fluor that enables high-resolution imaging of protein secretion. We find that plasmonic-fluors are 16,000-fold brighter, with nearly 30-fold higher signal-to-noise compared with conventional fluorescence labels. We demonstrate high-resolution imaging of different secreted cytokines in the single-plexed and spectrally multiplexed FluoroDOT assay that revealed cellular heterogeneity in secretion of multiple proteins simultaneously. Using diverse biochemical stimuli, including Mycobacterium tuberculosis infection, and a variety of immune cells such as macrophages, dendritic cells (DCs), and DC-T cell co-culture, we demonstrate that the assay is versatile, facile, and widely adaptable for enhancing biological understanding of spatial and temporal dynamics of single-cell secretome.

Details

Database :
OpenAIRE
Journal :
Cell reports methods, vol 2, iss 8
Accession number :
edsair.doi.dedup.....1c71c2990fb9303a9cfa2b5bf06dacf9