Roche NimbleGen offers six types of promoter designs to suit your DNA Methylation analyses: 2.1M Deluxe Promoters are single array designs for human and mouse that cover ~10 kb of all annotated promoters. In addition, these arrays tile through all annotated CpG islands, all annotated miRNA promoters, and manually selected ENCODE regions (human only). All regions are tiled at 100bp […]
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Mouse DNA Methylation 2.1M Deluxe Promoter Array
The NimbleGen Mouse DNA Methylation 2.1M Deluxe Promoter Array enables rapid and precise identification of methylated DNA regions across all biologically significant regulatory elements including all gene and microRNA promoters as well as all 15,963 annotated CpG islands with 100bp proble spacing throughout all tiled regions. Tiling of each gene promoter (∼20,227 total) begins 8.2kb […]
Human DNA Methylation 3x720K CpG Island Plus
The NimbleGen Human DNA Methylation 3x720K CpG Island Plus RefSeq Promoter Array enables rapid and precise identification of methylated DNA regions using a cost-effective, higher sample throughput multiplex array platform. Each array covers important regulatory elements including RefSeq gene promoters and 27,728 annotated CpG islands with 100bp proble spacing throughout all tiled regions. Tiling of […]
Human DNA Methylation 2.1M Deluxe Promoter
The NimbleGen Human DNA Methylation 2.1M Deluxe Promoter Array enables rapid and precise identification of methylated DNA regions across all biologically significant regulatory elements including gene and microRNA promoters as well as all 27,891 annotated CpG islands with 100bp proble spacing throughout all tiled regions. Tiling of each gene promoter (∼29,500 total) begins 7.25kb upstream […]
DNA Methylation 3x720K Custom Array
The NimbleGen DNA Methylation 3x720K Custom arrays enable you to design multiplex arrays with 3 identical arrays per slide, each with 720,000 features, for the simultaneous analysis of three different samples. With 720,000 features per array, you can cover extensive genomic regions of interest with high resolution probe spacing for sensitive mapping of methylated DNA […]
