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Jovanovic M,Rooney M, Mertins P, Przybylski D, Chevrier N, Satija R, Rodriguez EH, Fields AP, Schwartz S, Raychowdhury R, Mumbach M, Eisenhaure T, Rabani M, Gennert D, Lu D, Delorey T, Weissman JS, Carr SA, Hacohen N, Regev A, submitted 2015. Protein expression is regulated by production and degrada...
ORGANISM(S): Mus Musculus (ncbitaxon:10090) 
2015-01-15 | MSV000078994 | MassIVE
Here, we use a microfluidics-based approach to prepare single-cell RNA-Seq libraries from over 1,700 primary mouse dendritic cells (DCs) stimulated with three pathogenic components and examine variation between individual cells exposed to the same stimulus and general strategies that multicellular p...
ORGANISM(S): Mus musculus 
To identify bacterial transcripts that may be associated with type I IFN production in Salmonella enterica subsp typhimurium (SL1344) infected macrophages we transformed macrophages with an ISRE-GFP reporter construct and sorted separate populations of GFP positive and GFP negative infected macropha...
ORGANISM(S): Mus musculus 
We present a detailed single cell analysis of the macrophage response to LPS from Salmonella enterica. By combining single cell transcriptional analysis, fluorescently labeled, LPS-coated beads, and cytometry we are able to distinguish the responses of macrophages that have internalized LPS-coated ...
ORGANISM(S): Mus musculus 
We present a detailed single cell time course of the macrophage response to Salmonella infection. By combining phenotypic fluorescent labels with single cell expression analysis we are able to identify gene modules associated with bacterial exposure and bacterial infection. We also identify other ...
ORGANISM(S): Mus musculus 
A time course of the macrophage response to Salmonella exposure analyzing the effects of input cell number as a control for single cell studies Mouse macrophages were exposed to Salmonella enterica for different lengths of time. Libraries were constructed using either approximately 500,00 macrophag...
ORGANISM(S): Mus musculus 
Here, we used single-cell RNA-Seq to discover extensive cell-to-cell variability – in transcript expression levels, cell state, circuit usage, and alternative splicing – between stimulated immune cells RNA seq libraries from 18 single cells, 3 populations of 10,000 cells, and 2 zero cells (negative ...
ORGANISM(S): Mus musculus 
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