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Sample GSM3405692 Query DataSets for GSM3405692
Status Public on Oct 30, 2018
Title EUB162
Sample type genomic
 
Source name CD14+ Monocytes, resting cells
Organism Homo sapiens
Characteristics age: 27.87
gender: Male
batch: 2
ethnicity: European descent
Treatment protocol Primary monocytes were positively selected with magnetic CD14 microbeads from Miltenyi Biotec, according to the manufacturer's instructions
Growth protocol Monocyte DNA samples were obtained from PBMCs frozen in 90% fetal calf serum (FCS) and 10% dimethyl sulfoxide dimethyl sulfoxid
Extracted molecule genomic DNA
Extraction protocol Each DNA sample was extracted from 2x106 primary monocytes by a standard phenol/chloroform protocol followed by ethanol precipitation. Prior to DNA methylation profiling, DNAs were then bisulfite converted and processed using the Illumina Infinium MethylationEPIC BeadChip Kit, according to the manufacturer's instructions followed by ethanol precipitation
Label cy3,cy5
Label protocol Sample barcoding and staining were carried out by following the instructions of Illumina provided in the Infinium MethylationEPIC BeadChip Kit
 
Hybridization protocol Bisulfite converted DNAs were hybridized to beadchips provided the Illumina Infinium MethylationEPIC BeadChip Kit
Scan protocol Signal intensity is measured with the Illumina HiScan system to generate beta values, a measure of the degree of methylation at a locus
Description SAMPLE 52
Data processing Signal intensity is measured with the Illumina HiScan system to generate beta values, a measure of the degree of methylation at a locus
 
Submission date Sep 28, 2018
Last update date Oct 30, 2018
Contact name Lucas Theo Husquin
E-mail(s) lucas.husquin@pasteur.fr
Organization name Institut Pasteur
Department Genetics and Genomics
Lab Human Evolutionary Genetics
Street address 28 rue du docteur Roux
City Paris
State/province --- Select a state ---
ZIP/Postal code 75015
Country France
 
Platform ID GPL23976
Series (1)
GSE120610 Exploring the Genetic Basis of Human Population Differences in DNA Methylation and their Causal Impact on Immune Gene Regulation

Supplementary data files not provided
Processed data are available on Series record

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