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  colon carcinoma HCT116

Overall Design109 single-cell human transcriptomes were analyzed in total; 96 using nanoliter volume sample processing on a microfluidic platform, Nextera library prep (biological replicates); 3 using the SMARTer cDNA synthesis kit, Nextera library prep (biological replicates); 3 using the Transplex cDNA synthesis kit, Nextera library prep (biological replicates); 7 using the Ovation Nugen cDNA synthesis kit (biological replicates) where 3 used Nextera library prep and 4 used NEBNext library prep. In addition, 4 bulk RNA samples were sequenced: bulk RNA generated using ~1 million pooled cells was used to make bulk libraries, 2 of which were made using SMARTer cDNA synthesis kit (technical replicates) and 2 made using Superscript RT kit with no amplification (technical replicates). All 4 bulk samples were made into libraries using Nextera.
SummaryWe generated single-cell transcriptomes from a large number of single cells using several commercially available platforms, in both microliter and nanoliter volumes, and compared performance between them. We benchmarked each method to conventional RNA-seq of the same sample using bulk total RNA, as well as to multiplexed qPCR, which is the current gold standard for quantitative single-cell gene expression analysis. In doing so, we were able to systematically evaluate the sensitivity, precision, and accuracy of various approaches to single-cell RNA-seq. Our results show that it is possible to use single-cell RNA-seq to perform quantitative transcriptome measurements of individual cells, that it is possible to obtain quantitative and accurate gene expression measurements with a relatively small number of sequencing reads, and that when such measurements are performed on large numbers of cells, one can recapitulate the bulk transcriptome complexity, and the distributions of gene expression levels found by single-cell qPCR.
Dataset viewGSE51254
PMID24141493

Samples in colon carcinoma HCT116

Displaying 51-60 of 109 results.
SeriesSampleInstrumentOrganismTitleCell Source
GSE51254GSM1241191Illumina HiSeq 2000Homo sapiensSingle Cell C1 Microfluidics 38colon carcinoma HCT116
GSE51254GSM1241192Illumina HiSeq 2000Homo sapiensSingle Cell C1 Microfluidics 39colon carcinoma HCT116
GSE51254GSM1241193Illumina HiSeq 2000Homo sapiensSingle Cell C1 Microfluidics 40colon carcinoma HCT116
GSE51254GSM1241194Illumina HiSeq 2000Homo sapiensSingle Cell C1 Microfluidics 41colon carcinoma HCT116
GSE51254GSM1241195Illumina HiSeq 2000Homo sapiensSingle Cell C1 Microfluidics 42colon carcinoma HCT116
GSE51254GSM1241196Illumina HiSeq 2000Homo sapiensSingle Cell C1 Microfluidics 43colon carcinoma HCT116
GSE51254GSM1241197Illumina HiSeq 2000Homo sapiensSingle Cell C1 Microfluidics 44colon carcinoma HCT116
GSE51254GSM1241198Illumina HiSeq 2000Homo sapiensSingle Cell C1 Microfluidics 45colon carcinoma HCT116
GSE51254GSM1241199Illumina HiSeq 2000Homo sapiensSingle Cell C1 Microfluidics 46colon carcinoma HCT116
GSE51254GSM1241200Illumina HiSeq 2000Homo sapiensSingle Cell C1 Microfluidics 47colon carcinoma HCT116

Gene rank in colon carcinoma HCT116

Displaying 20301-20310 of 20378 results.
Rank orderGene SymbolEnsembl ID
20301ADAM3AENSG00000197475
20302C8AENSG00000157131
20303MMP17ENSG00000198598
20304ABP1
20305SNX31ENSG00000174226
20306NLRP5ENSG00000171487
20307CYP27B1ENSG00000111012
20308LOC283089
20309RGS9ENSG00000108370
20310CALN1ENSG00000183166