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human expression profiling affymetrix gene 1 0 st array  (Thermo Fisher)


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    Structured Review

    Thermo Fisher human expression profiling affymetrix gene 1 0 st array
    Quality of human ORF features on GMAP chip . (a) Intensity signals from the GMAP array (X-axis) plotted against signals from the Human Gene 1.0 ST array (Y-axis) following amplification of human ORFeome v5.1 pools and hybridization of the resulting probe to each of these arrays. Common features between the two arrays were used to calculate the Pearson correlation coefficient. (b) Distribution of signal intensities from replicate GMAP or Human 1.0 ST arrays as described in (a) for shared features. Hybridization behaviour for the huORF features compared to the (c) huGene features or the (d) 22-mer hairpin features for corresponding genes.
    Human Expression Profiling Affymetrix Gene 1 0 St Array, supplied by Thermo Fisher, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/array+gene+expression+profiling/pmc03115879-121-14-17
    Average 86 stars, based on 1 article reviews
    human expression profiling affymetrix gene 1 0 st array - by Bioz Stars, 2026-09
    86/100 stars

    Images

    1) Product Images from "A comprehensive platform for highly multiplexed mammalian functional genetic screens"

    Article Title: A comprehensive platform for highly multiplexed mammalian functional genetic screens

    Journal: BMC Genomics

    doi: 10.1186/1471-2164-12-213

    Quality of human ORF features on GMAP chip . (a) Intensity signals from the GMAP array (X-axis) plotted against signals from the Human Gene 1.0 ST array (Y-axis) following amplification of human ORFeome v5.1 pools and hybridization of the resulting probe to each of these arrays. Common features between the two arrays were used to calculate the Pearson correlation coefficient. (b) Distribution of signal intensities from replicate GMAP or Human 1.0 ST arrays as described in (a) for shared features. Hybridization behaviour for the huORF features compared to the (c) huGene features or the (d) 22-mer hairpin features for corresponding genes.
    Figure Legend Snippet: Quality of human ORF features on GMAP chip . (a) Intensity signals from the GMAP array (X-axis) plotted against signals from the Human Gene 1.0 ST array (Y-axis) following amplification of human ORFeome v5.1 pools and hybridization of the resulting probe to each of these arrays. Common features between the two arrays were used to calculate the Pearson correlation coefficient. (b) Distribution of signal intensities from replicate GMAP or Human 1.0 ST arrays as described in (a) for shared features. Hybridization behaviour for the huORF features compared to the (c) huGene features or the (d) 22-mer hairpin features for corresponding genes.

    Techniques Used: Amplification, Hybridization

    Related Articles

    other:

    Article Title: Unveiling the origin and functions of diagnostic circulating microRNAs in lung cancer.
    Article Snippet: BACKGROUND: Circulating microRNAs (c-miRs) were shown to be effective biomarkers for lung cancer early detection.. However, the understanding of c-miRs origin and their biological functions still remains elusive.. METHODS: We analysed miRNA expression in a large panel of lung cancer (LC) and hematopoietic cell lines (N= 252; CCLE database) coupled with c-miR profile of a large cohort of serum samples (N= 975), from high-risk subjects underwent annual LD-CT for 5 years.

    Article Title: Using transcriptomic signatures to elucidate individual and mixture effects of inorganic arsenic and manganese in human placental trophoblast HTR-8/SVneo cells.
    Article Snippet: Prenatal exposure to the toxic metal inorganic arsenic (iAs) is associated with adverse pregnancy and fetal growth outcomes.. These adverse outcomes are tied to physiological disruptions in the placenta.. Although iAs co-occurs in the environment with other metals such as manganese (Mn), there is a gap in the knowledge of the effects of metal mixtures on the placenta.

    Article Title: Integrative miRNA-mRNA profiling uncovers mechanisms of belimumab action in systemic lupus erythematosus
    Article Snippet: For mRNA expression profiling, Affymetrix Human Transcriptome Array 2.0 (HTA 2.0) (Thermo Fisher Scientific, Inc.) was used.

    Article Title: Identification of hub genes and pathways in Uterine corpus endometrial carcinoma (UCEC): A comprehensive in silico study
    Article Snippet: The gene expression profiling for this dataset was performed with the Affymetrix Human Genome U133A 2.0 Array (GPL571).

    Article Title: Aberrant BCAT1 expression augments MTOR activity and accelerates disease progression in chronic lymphocytic leukemia
    Article Snippet: We analyzed Affymetrix GeneChipTM Human Genome U133 Plus 2.0 Array gene expression profiling results derived from mRNA/cDNA isolated from CD19+ flow sorted CLL samples from 117 CLL patients.

    Gene Expression:

    Article Title: Synergistic Effects of Fructose and Food Preservatives on Metabolic Dysfunction-Associated Steatotic Liver Disease (MASLD): From Gut Microbiome Alterations to Hepatic Gene Expression
    Article Snippet: RNA integrity and purity were assessed using an Agilent 2100 Bioanalyzer with the RNA 6000 Nano LabChip reagent set (Agilent, Palo Alto, CA, USA). .. Gene expression profiling was performed using Applied Biosystems GeneChip Clariom S mouse arrays. .. Sample preparation and microarray hybridization were performed according to the manufacturer’s protocol (GeneChip WT PLUS Reagent Kit, Thermo Fisher Scientific, Waltham, MA, USA).

    Article Title: c-Triadem: A constrained, explainable deep learning model to identify novel biomarkers in Alzheimer’s disease
    Article Snippet: .. Blood gene expression profiling was conducted using Affymetrix Human Genome U219 Array for 744 samples in the ADNI2/ADNI-GO (Grand Opportunity) phase. ..

    Article Title: Gene therapy of the FAAH pseudogene
    Article Snippet: Microarray analyses were carried out using the Clarion D human transcriptome array (Applied Biosystems) and WT plus kit. .. Differential gene expression analysis of transcriptome array data was performed using the Transcriptome Analysis Console (TAC Ver 4.0, Thermo Fisher). .. CRISPR/Cas9 Plasmids Plasmids 6159121 and 10621922 (Addgene) were modified for the gene editing (SaCas9) and transcriptional repression (dSaCas9-KRAB) CRISPR experiments.



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    Cross-talk between CoV-2-infected epithelial cells and immune cells activated MAIT and exacerbated inflammation. (A) Heatmap of immunological profile of Caco-2-ACE2-N cells infected with CoV-2 and PBMC cocultured with CoV-2-infected Caco-2-ACE2-N cells. mRNA fold change of immune genes was profiled by <t>RT2</t> Profiler <t>PCR</t> Array Gene Expression Analysis. Left panel indicated group of CoV-2-infected Caco-2-ACE2-N cells, shortly named with “Caco-2 ACE2-N”; data were presented with mRNA fold change relative to Mock-treated Caco-2-ACE2-N cells. Right panel indicated group of PBMCs cocultured with CoV-2-infected Caco-2-ACE2-N cells, shortly named with “PBMC”; data were presented with mRNA fold change relative to control PBMCs cocultured with Mock-treated Caco-2-ACE2-N cells. (B) CD69 expression profile on MAIT cells in various coculture groups. “Isotype ctr” indicated isotype antibody staining; “Mock” group indicated MAIT cells cocultured with Mock-treated IECs (Caco-2-ACE-2-N); “CoV-2” group indicated MAIT cells cocultured with CoV-2-infected IECs. (C) Representative flow cytometry dot plot of IFNγ expression in NK and MAIT cells after coculture with either Mock or CoV-2 infected IECs (Caco-2-ACE-2-N). (D) Inflammatory cytokine (IFNγ, GrzB, TNFα) expression in MAIT cells determined by FACS with positive population percentage. “Mock” indicated group of MAIT cells cocultured with Mock-treated IECs; “CoV-2” indicated group of MAIT cells cocultured with CoV-2-infected IECs (E) Depletion of IL18 by adding αIL18 Ab into medium at the beginning of coculture. Cytokine expression in MAIT with depletion of IL18 in coculture or with rIL18 addition alone in PBMC culture medium. All data are represented as mean ± SEM of three replicates. Statistical significance is indicated. (ns, not significant, **p<0.01 ***p<0.001, unpaired t test or One-way ANOVA).
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    Cross-talk between CoV-2-infected epithelial cells and immune cells activated MAIT and exacerbated inflammation. (A) Heatmap of immunological profile of Caco-2-ACE2-N cells infected with CoV-2 and PBMC cocultured with CoV-2-infected Caco-2-ACE2-N cells. mRNA fold change of immune genes was profiled by <t>RT2</t> Profiler <t>PCR</t> Array Gene Expression Analysis. Left panel indicated group of CoV-2-infected Caco-2-ACE2-N cells, shortly named with “Caco-2 ACE2-N”; data were presented with mRNA fold change relative to Mock-treated Caco-2-ACE2-N cells. Right panel indicated group of PBMCs cocultured with CoV-2-infected Caco-2-ACE2-N cells, shortly named with “PBMC”; data were presented with mRNA fold change relative to control PBMCs cocultured with Mock-treated Caco-2-ACE2-N cells. (B) CD69 expression profile on MAIT cells in various coculture groups. “Isotype ctr” indicated isotype antibody staining; “Mock” group indicated MAIT cells cocultured with Mock-treated IECs (Caco-2-ACE-2-N); “CoV-2” group indicated MAIT cells cocultured with CoV-2-infected IECs. (C) Representative flow cytometry dot plot of IFNγ expression in NK and MAIT cells after coculture with either Mock or CoV-2 infected IECs (Caco-2-ACE-2-N). (D) Inflammatory cytokine (IFNγ, GrzB, TNFα) expression in MAIT cells determined by FACS with positive population percentage. “Mock” indicated group of MAIT cells cocultured with Mock-treated IECs; “CoV-2” indicated group of MAIT cells cocultured with CoV-2-infected IECs (E) Depletion of IL18 by adding αIL18 Ab into medium at the beginning of coculture. Cytokine expression in MAIT with depletion of IL18 in coculture or with rIL18 addition alone in PBMC culture medium. All data are represented as mean ± SEM of three replicates. Statistical significance is indicated. (ns, not significant, **p<0.01 ***p<0.001, unpaired t test or One-way ANOVA).
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    Thermo Fisher human expression profiling affymetrix gene 1 0 st array
    Quality of human ORF features on GMAP chip . (a) Intensity signals from the GMAP array (X-axis) plotted against signals from the Human Gene 1.0 ST array (Y-axis) following amplification of human ORFeome v5.1 pools and hybridization of the resulting probe to each of these arrays. Common features between the two arrays were used to calculate the Pearson correlation coefficient. (b) Distribution of signal intensities from replicate GMAP or Human 1.0 ST arrays as described in (a) for shared features. Hybridization behaviour for the huORF features compared to the (c) huGene features or the (d) 22-mer hairpin features for corresponding genes.
    Human Expression Profiling Affymetrix Gene 1 0 St Array, supplied by Thermo Fisher, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/array+gene+expression+profiling/pmc03115879-121-14-17
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    human expression profiling affymetrix gene 1 0 st array - by Bioz Stars, 2026-09
    86/100 stars
      Buy from Supplier

    Image Search Results


    Genes analyzed with the  RT 2 Profiler PCR Array—Human  DNA Damage Signaling Pathway kit (Qiagen, Germantown, MD, USA).

    Journal: Current Issues in Molecular Biology

    Article Title: DNA Double-Strand Break Repair Inhibitors: YU238259, A12B4C3 and DDRI-18 Overcome the Cisplatin Resistance in Human Ovarian Cancer Cells, but Not under Hypoxia Conditions

    doi: 10.3390/cimb45100500

    Figure Lengend Snippet: Genes analyzed with the RT 2 Profiler PCR Array—Human DNA Damage Signaling Pathway kit (Qiagen, Germantown, MD, USA).

    Article Snippet: Expression of genes related to cell response to DNA damage was carried out using Real-time PCR using the RT 2 Profiler PCR Array—Human DNA Damage Signaling Pathway gene expression evaluation kit (Qiagen, Germantown, MD, USA).

    Techniques:

    Cross-talk between CoV-2-infected epithelial cells and immune cells activated MAIT and exacerbated inflammation. (A) Heatmap of immunological profile of Caco-2-ACE2-N cells infected with CoV-2 and PBMC cocultured with CoV-2-infected Caco-2-ACE2-N cells. mRNA fold change of immune genes was profiled by RT2 Profiler PCR Array Gene Expression Analysis. Left panel indicated group of CoV-2-infected Caco-2-ACE2-N cells, shortly named with “Caco-2 ACE2-N”; data were presented with mRNA fold change relative to Mock-treated Caco-2-ACE2-N cells. Right panel indicated group of PBMCs cocultured with CoV-2-infected Caco-2-ACE2-N cells, shortly named with “PBMC”; data were presented with mRNA fold change relative to control PBMCs cocultured with Mock-treated Caco-2-ACE2-N cells. (B) CD69 expression profile on MAIT cells in various coculture groups. “Isotype ctr” indicated isotype antibody staining; “Mock” group indicated MAIT cells cocultured with Mock-treated IECs (Caco-2-ACE-2-N); “CoV-2” group indicated MAIT cells cocultured with CoV-2-infected IECs. (C) Representative flow cytometry dot plot of IFNγ expression in NK and MAIT cells after coculture with either Mock or CoV-2 infected IECs (Caco-2-ACE-2-N). (D) Inflammatory cytokine (IFNγ, GrzB, TNFα) expression in MAIT cells determined by FACS with positive population percentage. “Mock” indicated group of MAIT cells cocultured with Mock-treated IECs; “CoV-2” indicated group of MAIT cells cocultured with CoV-2-infected IECs (E) Depletion of IL18 by adding αIL18 Ab into medium at the beginning of coculture. Cytokine expression in MAIT with depletion of IL18 in coculture or with rIL18 addition alone in PBMC culture medium. All data are represented as mean ± SEM of three replicates. Statistical significance is indicated. (ns, not significant, **p<0.01 ***p<0.001, unpaired t test or One-way ANOVA).

    Journal: Frontiers in Cellular and Infection Microbiology

    Article Title: SARS-CoV-2 infection of intestinal epithelia cells sensed by RIG-I and DHX-15 evokes innate immune response and immune cross-talk

    doi: 10.3389/fcimb.2022.1035711

    Figure Lengend Snippet: Cross-talk between CoV-2-infected epithelial cells and immune cells activated MAIT and exacerbated inflammation. (A) Heatmap of immunological profile of Caco-2-ACE2-N cells infected with CoV-2 and PBMC cocultured with CoV-2-infected Caco-2-ACE2-N cells. mRNA fold change of immune genes was profiled by RT2 Profiler PCR Array Gene Expression Analysis. Left panel indicated group of CoV-2-infected Caco-2-ACE2-N cells, shortly named with “Caco-2 ACE2-N”; data were presented with mRNA fold change relative to Mock-treated Caco-2-ACE2-N cells. Right panel indicated group of PBMCs cocultured with CoV-2-infected Caco-2-ACE2-N cells, shortly named with “PBMC”; data were presented with mRNA fold change relative to control PBMCs cocultured with Mock-treated Caco-2-ACE2-N cells. (B) CD69 expression profile on MAIT cells in various coculture groups. “Isotype ctr” indicated isotype antibody staining; “Mock” group indicated MAIT cells cocultured with Mock-treated IECs (Caco-2-ACE-2-N); “CoV-2” group indicated MAIT cells cocultured with CoV-2-infected IECs. (C) Representative flow cytometry dot plot of IFNγ expression in NK and MAIT cells after coculture with either Mock or CoV-2 infected IECs (Caco-2-ACE-2-N). (D) Inflammatory cytokine (IFNγ, GrzB, TNFα) expression in MAIT cells determined by FACS with positive population percentage. “Mock” indicated group of MAIT cells cocultured with Mock-treated IECs; “CoV-2” indicated group of MAIT cells cocultured with CoV-2-infected IECs (E) Depletion of IL18 by adding αIL18 Ab into medium at the beginning of coculture. Cytokine expression in MAIT with depletion of IL18 in coculture or with rIL18 addition alone in PBMC culture medium. All data are represented as mean ± SEM of three replicates. Statistical significance is indicated. (ns, not significant, **p<0.01 ***p<0.001, unpaired t test or One-way ANOVA).

    Article Snippet: After that, PBMC were harvested for immune genes profiling with customized RT2 Profiler PCR Array Gene Expression Kit (Qiagen).

    Techniques: Infection, Gene Expression, Control, Expressing, Staining, Flow Cytometry

    Quality of human ORF features on GMAP chip . (a) Intensity signals from the GMAP array (X-axis) plotted against signals from the Human Gene 1.0 ST array (Y-axis) following amplification of human ORFeome v5.1 pools and hybridization of the resulting probe to each of these arrays. Common features between the two arrays were used to calculate the Pearson correlation coefficient. (b) Distribution of signal intensities from replicate GMAP or Human 1.0 ST arrays as described in (a) for shared features. Hybridization behaviour for the huORF features compared to the (c) huGene features or the (d) 22-mer hairpin features for corresponding genes.

    Journal: BMC Genomics

    Article Title: A comprehensive platform for highly multiplexed mammalian functional genetic screens

    doi: 10.1186/1471-2164-12-213

    Figure Lengend Snippet: Quality of human ORF features on GMAP chip . (a) Intensity signals from the GMAP array (X-axis) plotted against signals from the Human Gene 1.0 ST array (Y-axis) following amplification of human ORFeome v5.1 pools and hybridization of the resulting probe to each of these arrays. Common features between the two arrays were used to calculate the Pearson correlation coefficient. (b) Distribution of signal intensities from replicate GMAP or Human 1.0 ST arrays as described in (a) for shared features. Hybridization behaviour for the huORF features compared to the (c) huGene features or the (d) 22-mer hairpin features for corresponding genes.

    Article Snippet: For comparative purposes, we also included up to three additional features found on the human expression profiling Affymetrix Gene 1.0 ST array for 18,088 of these sequences.

    Techniques: Amplification, Hybridization