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Biology subjects

Svahn, F.

Publications and source records attributed to Svahn, F..

2 recordsLinked to original sources

PiP-plex: A Particle-in-Particle System for Multiplexed Quantification of Secreted Proteins by Single Cells

Cell signaling is modulated by the secretion of various proteins, which can be used to infer a cells phenotype. However, these proteins cannot be readily detected in multiplex by commonly used methods at the single cell level. Here, we present PiP-plex, a particles-in-particle (PiPs) system comprising (i) fluorescence intensity barcoded microparticles (BMPs) co-entrapped with (ii) a single cell inside an alginate hydrogel particle for multiplex protein secretion analysis by confocal microscopy. We show that developed PiPs maintained >90 % cellular viability and allowed live cells retrieval. A seven-plex fluorescent barcoding and concomitant sandwich immunoassay in PiPs were implemented with limits of detection ranging from 0.8 pg mL-1 to 2 ng mL-1 depending on the protein. PiP-plex assays were benchmarked with bulk immunoassays and found to rival or outperform them. We applied PiP-plex to analyze protein secreted by THP-1 cells upon exposure to lipopolysaccharide and detected varying cell responses, with a significant increase in MIP-1, TNF- and IL-17A. Multivariate analysis revealed that the majority of stimulated cells secreted either MIP-1 or IL-17A, while other cytokines were typically co-secreted. Using PiP-plex, we analyzed [~]750 THP-1 cells, showcasing its potential for characterizing cells and cell-based therapeutics for cancer immunotherapies.

bioengineering↗

Pooled optical screening in bacteria using chromosomally expressed barcodes

Optical pooled screening is an important tool to study dynamic phenotypes for libraries of genetically engineered cells. However, the desired engineering often requires that the barcodes used for in situ genotyping are expressed from the chromosome. This has not been possible in bacteria. Here we describe a method for in situ genotyping of libraries with genomic barcodes in Escherichia. coli. The method is applied to measure the intracellular maturation time of 81 red fluorescent proteins.

biophysics↗