Project description:The objective of the study was to identify differentially methylated regions of DNA (DMRs) that distinguish human leukocyte subtypes, and hence serve as biomarkers for those immune cell types. This file contains Illumina Infinium HumanMethylation27 BeadChip data for human leukocyte subtypes that were purified from whole blood samples via magnetic activated cell sorting (MACS) and purity confirmed by flourescence activated cell sorting (FACS).
Project description:Affymetrix miRNA arrays were used to generate miRNA profiles of peripheral blood leukocytes and FACS sorted neutrophils, monocytes, B-cells, T-cells, CD4+ T-cells, and CD8+ T-cells, being the major leukocyte cell types in human. The study allowed for the determination of the miRNAs that were expressed in each leukocyte cell subtype. Two-way hierarchical clustering on the miRNAs and samples illustrated that miRNA expression profiles of B- and T-cells were very much alike, and that there there were a number of miRNAs which appeared to have an expression profile specific to certain leukocyte cell subtypes. This study will facilitate the identification of microRNAs associated with and contributing to single leukocyte cell subtypes.
Project description:The objective of the study was to identify differentially methylated regions of DNA (DMRs) that distinguish human leukocyte subtypes, and hence serve as biomarkers for those immune cell types. This file contains Illumina Infinium HumanMethylation27 BeadChip data for human leukocyte subtypes that were purified from whole blood samples via magnetic activated cell sorting (MACS) and purity confirmed by flourescence activated cell sorting (FACS). Bisulphite converted DNA from the 73 samples were hybridised to the Illumina Infinium 27k Human Methylation Beadchip v1.2
Project description:This SuperSeries is composed of the following subset Series: GSE21311: Maternal influences on the transmission of leukocyte gene expression profiles in population samples (Red Cross Donors) GSE21342: Maternal influences on the transmission of leukocyte gene expression profiles in population samples (mother and child) Refer to individual Series
Project description:WArning Files GSM90663.txt and GSM90665.txt are identical. In the present study we used Affymetrix oligonucleotide microarrays to produce gene transcription profiles for the major leukocyte types in humans. This comprehensive dataset enabled us to not only establish which genes were expressed in each leukocyte type, but also which genes were expressed in each subset after activation. The used of a comprehensive dataset of gene profiles from all the major human leukocyte subsets enabled a novel and powerful means for identification of genes associated with single leukocyte subsets, or different immune paradigms. Experiment Overall Design: Different leukocyte subsets were either isolated or differentiated from human blood to obtain consistently >95% pure populations. Gene profiles for activated effector cells such as macrophages, neutrophils and mast cells were also generated. In most cases, microarray analyses were perform on samples from 2 independent donors.
Project description:CD34+ progenitor cells were cultured for 0 or 21 days in StemPro medium + supplement + IL-3 at 5 ng/ml Basophils, eosinophils and plasmacytoid dendritic cells were purified to near homogeneity and lysed for miRNA and mRNA. Basophils were purified by negative selection (StemSep Abs, miltenyi columns), eosinophils by StemSep Abs and pDC by positive selection after removing monocytes. The method starting with a 2-step Percoll gradient that put eosinophils in the pellet, basophils in the middle layer and pDC in the upper layer.