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single-cell rna-seq analysis  (SAS institute)


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    SAS institute single-cell rna-seq analysis
    Single Cell Rna Seq Analysis, supplied by SAS institute, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/single-cell+analysis/single+cell+rna+seq+analysis/pm36715148-352-4-27
    Average 90 stars, based on 1 article reviews
    single-cell rna-seq analysis - by Bioz Stars, 2026-10
    90/100 stars

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    Article Title: Endothelial cell-derived oxysterol ablation attenuates experimental autoimmune encephalomyelitis.
    Article Snippet: In line with this, single-cell RNA-seq analysis of Ly6G+ cells isolated from the CNS in a mouse model of optic nerve injury identified three different cell clusters (Sas et al, 2020), suggesting that CNS-infiltrating neutrophils are a heterogeneous population.

    Article Title: Characterization of Genetic Landscape and Novel Inflammatory Biomarkers in Patients With Adult‐Onset Still's Disease
    Article Snippet: Healthy Control Cohort 2 (HC#2, n= 10, RNAseq) Demographics Selected symptoms Labs Age Sex SAS(At sampling) Fever Arthralgia Arthri s >=2 joints Feri n ug/l CRP/hsCRP - Female - - - - - - - Male - - - - - - - Female - - - - - - - Female - - - - - - - Female - - - - - - - Female - - - - - - - Female - - - - - - - Female - - - - - - - Male - - - - - - - Male - - - - - - Healthy Control Cohort 3 (HC#3, n= 32, Func onal assays) Demographics Selected symptoms Labs Age Sex SAS(At sampling) Fever Arthralgia Arthri s >=2 joints Feri n ug/l CRP/hsCRP 53 Female - - - - - - 45 Male - - - - - - 50 Male - - - - - - 24 Male - - - - - - 39 Female - - - - - - 40 Male - - - - - - 55 Female - - - - - - 31 Male - - - - - - 30 Female - - - - - - 34 Female - - - - - - 37 Male - - - - - - 37 Female - - - - - - 11 Female - - - - - - 27 Female - - - - - - 27 Female - - - - - - 26 Male - - - - - - 38 Male - - - - - - 49 Female - - - - - - 59 Male - - - - - - 26 Male - - - - - - 39 Male - - - - - - 44 Female - - - - - - 29 Male - - - - - - 28 Male - - - - - - 38 Male - - - - - - 47 Male - - - - - - 27 Male - - - - - - 29 Female - - - - - - 54 Female - - - - - - 15 Male - - - - - -

    Article Title: Tracking the best reference genes for RT-qPCR data normalization in filamentous fungi
    Article Snippet: In a preliminary study on the industrial Talaromyces versatilis strain IMI378536, RNA-seq data were generated to analyse the transcriptome of this filamentous fungus on wheat straw (unpublished data, property of ADISSEO SAS).

    Article Title: Transcriptome Responses to Dexamethasone Depending on Dose and Glucocorticoid Receptor Sensitivity in the Liver
    Article Snippet: Correlation between expression data generated using mRNA-Seq (normalized CPM) and qPCR was calculated using Proc CORR (SAS 9.4).

    Article Title: Cyclic anthraquinone derivatives, unique G-quadruplex binders, selectively induce cancer cell apoptosis and inhibit tumor growth
    Article Snippet: Then, to address the gene regulation difference between cAQ-mBen and AQ-Ac, RNA-sequencing (RNA-Seq) analysis was conducted by treating the tumor cell line SAS with 1 μM of AQ-Ac or cAQ-mBen for 6 or 24 h and then plotting the differential expression of genes to investigate the gene expression profile.

    Article Title: Endothelial cell‐derived oxysterol ablation attenuates experimental autoimmune encephalomyelitis
    Article Snippet: In line with this, single‐cell RNA‐seq analysis of Ly6G + cells isolated from the CNS in a mouse model of optic nerve injury identified three different cell clusters (Sas et al , ), suggesting that CNS‐infiltrating neutrophils are a heterogeneous population.

    RNA sequencing:

    Article Title: trans-Zeatin N-glucosides can delay salt accelerated leaf senescence in Arabidopsis thaliana.
    Article Snippet: While cytokinin (CK) can delay natural leaf senescence, its effects on abiotic stress accelerated leaf senescence are less studied.. Here we show N-conjugated trans-zeatin CK forms (tZ7G and tZ9G, or tZNGs) have the ability to delay salt stress senescence.. Using a modified dark-induced senescence bioassay with Arabidopsis leaves, exogenous salt treatment accelerated leaf senescence as measured by lower photosystem II efficiency (Fv/Fm) and chlorophyll content. tZNGs were able to delay these parameters at concentrations as low as 10 nM similar to tZ, indicating that tZ7G and tZ9G can function in delaying salt accelerated senescence (SAS).



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    Image Search Results


    (A) Experimental overview illustrating the generation of isogenic single-cell LOY and ROY clones from parental A549 cells and the multi-omic analysis of clones and patients. (B) Representative WGS profiles of ROY (top, orange) and LOY (bottom, blue) clones. Left: zoomed-in view of the Y chromosome. Right: genome-wide Circos plots (right). (C) Volcano plot of differentially expressed genes between LOY (n=4) and ROY (n=4) clones (Y-linked genes excluded). X-axis: log2 fold change; y-axis: -log 10 (p-value). Blue: significantly upregulated genes in LOY; orange: downregulated in LOY. (D) Dot plot showing the top 6 Hallmark gene sets with FDR<0.25 from preranked GSEA of RNA-seq data. X-axis: normalized enrichment score (NES); y-axis: gene sets. Dot size indicates gene count; color represents -log 10 (FDR). (E) Heatmap of lead genes contributing to the EMT gene set enrichment. TPM values are z-scored across clones. (F) Dot plot of Hallmark gene sets from GSEA of full proteome data at 70% confluency (left) and 100% confluency (right). X-axis: normalized enrichment score (NES); y-axis: gene sets. Dot size indicates protein count; color represents -log 10 (FDR). ( G ) Confocal microscopy images of clones stained for N-cadherin (green). Nuclei are counterstained with DAPI (4′,6-diamidino-2-phenylindole, blue). Scale bar 20 µm (H) . Flow cytometry histograms of CD90 expression for LOY (blue) and ROY (orange) clones, with isotype controls shown. (I) Dot plot of top 10 Hallmark gene sets from preranked GSEA of TCGA LUAD samples (LOY vs. ROY). (J) Dot plot the top 8 positively enriched Hallmark gene sets from GSEA of the LuCA single-cell dataset (LOY vs. ROY tumor cells).

    Journal: bioRxiv

    Article Title: Loss of the Y chromosome drives epigenetic and transcriptomic plasticity in lung adenocarcinoma

    doi: 10.64898/2026.06.02.729627

    Figure Lengend Snippet: (A) Experimental overview illustrating the generation of isogenic single-cell LOY and ROY clones from parental A549 cells and the multi-omic analysis of clones and patients. (B) Representative WGS profiles of ROY (top, orange) and LOY (bottom, blue) clones. Left: zoomed-in view of the Y chromosome. Right: genome-wide Circos plots (right). (C) Volcano plot of differentially expressed genes between LOY (n=4) and ROY (n=4) clones (Y-linked genes excluded). X-axis: log2 fold change; y-axis: -log 10 (p-value). Blue: significantly upregulated genes in LOY; orange: downregulated in LOY. (D) Dot plot showing the top 6 Hallmark gene sets with FDR<0.25 from preranked GSEA of RNA-seq data. X-axis: normalized enrichment score (NES); y-axis: gene sets. Dot size indicates gene count; color represents -log 10 (FDR). (E) Heatmap of lead genes contributing to the EMT gene set enrichment. TPM values are z-scored across clones. (F) Dot plot of Hallmark gene sets from GSEA of full proteome data at 70% confluency (left) and 100% confluency (right). X-axis: normalized enrichment score (NES); y-axis: gene sets. Dot size indicates protein count; color represents -log 10 (FDR). ( G ) Confocal microscopy images of clones stained for N-cadherin (green). Nuclei are counterstained with DAPI (4′,6-diamidino-2-phenylindole, blue). Scale bar 20 µm (H) . Flow cytometry histograms of CD90 expression for LOY (blue) and ROY (orange) clones, with isotype controls shown. (I) Dot plot of top 10 Hallmark gene sets from preranked GSEA of TCGA LUAD samples (LOY vs. ROY). (J) Dot plot the top 8 positively enriched Hallmark gene sets from GSEA of the LuCA single-cell dataset (LOY vs. ROY tumor cells).

    Article Snippet: The sorted CD45 + and CD45 neg cells derived from paired distal normal lung and lung adenocarcinoma samples were used for single-cell RNA sequencing analysis (10X Genomics, Single Cell 3′ Gene Expression v3.1).

    Techniques: Single Cell, Clone Assay, Genome Wide, RNA Sequencing, Confocal Microscopy, Staining, Flow Cytometry, Expressing

    (A) Experimental workflow for single-cell profiling of isogenic A549 ROY and LOY clones using Epi-CyTOF and scMultiome, alongside clinical data reanalysis . (B) Heatmap of Epi-CyTOF histone modification measurements. Values are z-scored across clones; blue: lower-than-average; red: higher-than-average levels. Hierarchical clustering was applied to histone marks and samples. (C) Boxplot showing the epigenetic heterogeneity metric derived from multidimensional Epi-CyTOF data. (D) Boxplot of EMT module scores from snRNA-seq, based on lead genes from . (E) Heatmaps of lead EMT gene expression (snRNA-seq, left) and corresponding chromatin accessibility at gene promoters (scATACseq, right). (F) Boxplot of transcriptional heterogeneity (QuoTHiC) in premalignant and tumor cells compared to normal AT2 cells in a cohort from the LuCA dataset , . (G) Boxplot comparing QuoTHiC scores across cell types and ROY/LOY status from the cohort shown in (F).

    Journal: bioRxiv

    Article Title: Loss of the Y chromosome drives epigenetic and transcriptomic plasticity in lung adenocarcinoma

    doi: 10.64898/2026.06.02.729627

    Figure Lengend Snippet: (A) Experimental workflow for single-cell profiling of isogenic A549 ROY and LOY clones using Epi-CyTOF and scMultiome, alongside clinical data reanalysis . (B) Heatmap of Epi-CyTOF histone modification measurements. Values are z-scored across clones; blue: lower-than-average; red: higher-than-average levels. Hierarchical clustering was applied to histone marks and samples. (C) Boxplot showing the epigenetic heterogeneity metric derived from multidimensional Epi-CyTOF data. (D) Boxplot of EMT module scores from snRNA-seq, based on lead genes from . (E) Heatmaps of lead EMT gene expression (snRNA-seq, left) and corresponding chromatin accessibility at gene promoters (scATACseq, right). (F) Boxplot of transcriptional heterogeneity (QuoTHiC) in premalignant and tumor cells compared to normal AT2 cells in a cohort from the LuCA dataset , . (G) Boxplot comparing QuoTHiC scores across cell types and ROY/LOY status from the cohort shown in (F).

    Article Snippet: The sorted CD45 + and CD45 neg cells derived from paired distal normal lung and lung adenocarcinoma samples were used for single-cell RNA sequencing analysis (10X Genomics, Single Cell 3′ Gene Expression v3.1).

    Techniques: Single Cell, Clone Assay, Modification, Derivative Assay, Gene Expression

    (A) Schematic of the in vitro phenotypic characterization of isogenic A549 ROY and LOY clones. (B) Dot plot showing the top 10 Hallmark gene sets with FDR<0.25 from preranked GSEA of RNA-seq data comparing A549 LOY and ROY under glucose deprivation. X-axis: normalized enrichment score (NES); y-axis: gene sets. Dot size indicates gene count; color represents -log 10 (FDR). ( C) Dot plot showing significant Hallmark gene sets from preranked GSEA of global proteome data comparing LOY vs. ROY clones under glucose (left) and glutamine (right) deprivation. Dot size indicates protein count; color represents -log 10 (FDR). (D) Colony formation capacity under glutamine deprivation. Left: Boxplot of mean colony number (n = 3 technical replicates/clone). Right: Representative crystal violet-stained images. (E ) Normalized dose-response curves of four LOY (blue) and four ROY (orange) clones assessed 24 hours post-irradiation (0-40 Gy). Viability was measured in triplicate using CellTiter-Blue and fitted using non-linear regression. (F) Clonogenic survival following 10 Gy. Left: boxplots showing mean colony counts across two independent experiments (n=3 replicates/clone/experiment). Right: representative images from experiment 1. Note: For all boxplots, the center line represents the median, box limits represent upper and lower quartiles, and whiskers represent minimum and maximum values. Statistical significance was assessed using an unpaired t-test (α=0.05).

    Journal: bioRxiv

    Article Title: Loss of the Y chromosome drives epigenetic and transcriptomic plasticity in lung adenocarcinoma

    doi: 10.64898/2026.06.02.729627

    Figure Lengend Snippet: (A) Schematic of the in vitro phenotypic characterization of isogenic A549 ROY and LOY clones. (B) Dot plot showing the top 10 Hallmark gene sets with FDR<0.25 from preranked GSEA of RNA-seq data comparing A549 LOY and ROY under glucose deprivation. X-axis: normalized enrichment score (NES); y-axis: gene sets. Dot size indicates gene count; color represents -log 10 (FDR). ( C) Dot plot showing significant Hallmark gene sets from preranked GSEA of global proteome data comparing LOY vs. ROY clones under glucose (left) and glutamine (right) deprivation. Dot size indicates protein count; color represents -log 10 (FDR). (D) Colony formation capacity under glutamine deprivation. Left: Boxplot of mean colony number (n = 3 technical replicates/clone). Right: Representative crystal violet-stained images. (E ) Normalized dose-response curves of four LOY (blue) and four ROY (orange) clones assessed 24 hours post-irradiation (0-40 Gy). Viability was measured in triplicate using CellTiter-Blue and fitted using non-linear regression. (F) Clonogenic survival following 10 Gy. Left: boxplots showing mean colony counts across two independent experiments (n=3 replicates/clone/experiment). Right: representative images from experiment 1. Note: For all boxplots, the center line represents the median, box limits represent upper and lower quartiles, and whiskers represent minimum and maximum values. Statistical significance was assessed using an unpaired t-test (α=0.05).

    Article Snippet: The sorted CD45 + and CD45 neg cells derived from paired distal normal lung and lung adenocarcinoma samples were used for single-cell RNA sequencing analysis (10X Genomics, Single Cell 3′ Gene Expression v3.1).

    Techniques: In Vitro, Clone Assay, RNA Sequencing, Staining, Irradiation

    (A) Boxplots displaying cell proliferation (BrdU ELISA) of four LOY (blue) and four ROY (orange) clones under normal growth conditions (glucose+, glutamine+), glucose deprivation (glucose-, glutamine+), or glutamine deprivation (glucose+, glutamine-). (B) Volcano plot of differentially expressed genes between LOY (n=4) and ROY (n=4) clones under glucose deprivation (top) and glutamine deprivation (bottom) (Y-linked genes excluded). X-axis: log2 fold change; y-axis: -log 10 (p-value). Blue: significantly upregulated genes in LOY; orange: downregulated in LOY. (C) Dot plot showing the top 2 Hallmark gene sets with FDR<0.25 from preranked GSEA of RNA-seq data comparing A549 LOY and ROY under glutamine deprivation. X-axis: normalized enrichment score (NES); y-axis: gene sets. Dot size indicates gene count; color represents -log 10 (FDR). (D) Volcano plots of differentially abundant proteins under glucose (left) and glutamine (right) deprivation. Blue: significantly upregulated in LOY; orange: downregulated in LOY. X-axis: log2 fold change; y-axis: -log 10 (p-value). (E) 10-day colony formation assay of four LOY (blue) and four ROY (orange) clones, standard growth conditions. Left: boxplot of mean colony number (n=3 technical replicates/clone). Right: representative images. (F) Normalized growth curves of four LOY (blue) and four ROY (orange) clones over 5 days following 10 Gy irradiation, fitted using non-linear regression. (G) Boxplot quantifying the area occupied by colonies after 10 Gy irradiation (experiment 1). (H) Boxplot quantifying the area occupied by non-irradiated controls (left) and representative images (right) from experiment 1. Box plots as in .

    Journal: bioRxiv

    Article Title: Loss of the Y chromosome drives epigenetic and transcriptomic plasticity in lung adenocarcinoma

    doi: 10.64898/2026.06.02.729627

    Figure Lengend Snippet: (A) Boxplots displaying cell proliferation (BrdU ELISA) of four LOY (blue) and four ROY (orange) clones under normal growth conditions (glucose+, glutamine+), glucose deprivation (glucose-, glutamine+), or glutamine deprivation (glucose+, glutamine-). (B) Volcano plot of differentially expressed genes between LOY (n=4) and ROY (n=4) clones under glucose deprivation (top) and glutamine deprivation (bottom) (Y-linked genes excluded). X-axis: log2 fold change; y-axis: -log 10 (p-value). Blue: significantly upregulated genes in LOY; orange: downregulated in LOY. (C) Dot plot showing the top 2 Hallmark gene sets with FDR<0.25 from preranked GSEA of RNA-seq data comparing A549 LOY and ROY under glutamine deprivation. X-axis: normalized enrichment score (NES); y-axis: gene sets. Dot size indicates gene count; color represents -log 10 (FDR). (D) Volcano plots of differentially abundant proteins under glucose (left) and glutamine (right) deprivation. Blue: significantly upregulated in LOY; orange: downregulated in LOY. X-axis: log2 fold change; y-axis: -log 10 (p-value). (E) 10-day colony formation assay of four LOY (blue) and four ROY (orange) clones, standard growth conditions. Left: boxplot of mean colony number (n=3 technical replicates/clone). Right: representative images. (F) Normalized growth curves of four LOY (blue) and four ROY (orange) clones over 5 days following 10 Gy irradiation, fitted using non-linear regression. (G) Boxplot quantifying the area occupied by colonies after 10 Gy irradiation (experiment 1). (H) Boxplot quantifying the area occupied by non-irradiated controls (left) and representative images (right) from experiment 1. Box plots as in .

    Article Snippet: The sorted CD45 + and CD45 neg cells derived from paired distal normal lung and lung adenocarcinoma samples were used for single-cell RNA sequencing analysis (10X Genomics, Single Cell 3′ Gene Expression v3.1).

    Techniques: Enzyme-linked Immunosorbent Assay, Clone Assay, RNA Sequencing, Colony Assay, Irradiation