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code atcc crl  (ATCC)


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    Structured Review

    ATCC code atcc crl
    Code Atcc Crl, supplied by ATCC, used in various techniques. Bioz Stars score: 95/100, based on 315 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/code atcc crl/product/ATCC
    Average 95 stars, based on 315 article reviews
    code atcc crl - by Bioz Stars, 2026-03
    95/100 stars

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    ATCC cho dhfr
    Module eigengene plots of the three datasets. The y‐axes represent the eigengene expression levels. (a) serum‐sensitive modules, (b) cell line modules, (c) temperature‐sensitive modules, (d) differences in <t>CHO</t> <t>dhFr‐</t> expression, (e) differences in glucose samples expression. Dashed lines delineate the serum adaptation, glucose, and temperature datasets, respectively. Diagonal filled bars represents CHO dhFr‐, solid filled bars represents rCHO DP‐12, and cross‐hatched bars represents CHO K1‐PF. Number of genes within respective module provided in lower right corner. Error bars represent standard deviation of module eigengenes ( N = 2).
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    ATCC chinese hamster ovary cells
    Module eigengene plots of the three datasets. The y‐axes represent the eigengene expression levels. (a) serum‐sensitive modules, (b) cell line modules, (c) temperature‐sensitive modules, (d) differences in <t>CHO</t> <t>dhFr‐</t> expression, (e) differences in glucose samples expression. Dashed lines delineate the serum adaptation, glucose, and temperature datasets, respectively. Diagonal filled bars represents CHO dhFr‐, solid filled bars represents rCHO DP‐12, and cross‐hatched bars represents CHO K1‐PF. Number of genes within respective module provided in lower right corner. Error bars represent standard deviation of module eigengenes ( N = 2).
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    Image Search Results


    Module eigengene plots of the three datasets. The y‐axes represent the eigengene expression levels. (a) serum‐sensitive modules, (b) cell line modules, (c) temperature‐sensitive modules, (d) differences in CHO dhFr‐ expression, (e) differences in glucose samples expression. Dashed lines delineate the serum adaptation, glucose, and temperature datasets, respectively. Diagonal filled bars represents CHO dhFr‐, solid filled bars represents rCHO DP‐12, and cross‐hatched bars represents CHO K1‐PF. Number of genes within respective module provided in lower right corner. Error bars represent standard deviation of module eigengenes ( N = 2).

    Journal: Biotechnology Journal

    Article Title: Transcriptomic Insights Into Serum‐Free Medium Adaptation and Temperature Reduction in Chinese Hamster Ovary Cell Cultures

    doi: 10.1002/biot.70055

    Figure Lengend Snippet: Module eigengene plots of the three datasets. The y‐axes represent the eigengene expression levels. (a) serum‐sensitive modules, (b) cell line modules, (c) temperature‐sensitive modules, (d) differences in CHO dhFr‐ expression, (e) differences in glucose samples expression. Dashed lines delineate the serum adaptation, glucose, and temperature datasets, respectively. Diagonal filled bars represents CHO dhFr‐, solid filled bars represents rCHO DP‐12, and cross‐hatched bars represents CHO K1‐PF. Number of genes within respective module provided in lower right corner. Error bars represent standard deviation of module eigengenes ( N = 2).

    Article Snippet: The recombinant cell line rCHO DP‐12 clone #1934 (ATCC CRL‐12445) produces a human monoclonal antibody (IgG 1 ) against Interluekin‐8 (IL‐8); CHO dhFr‐ (ATCC CRL‐9096) is a non‐recombinant host cell line and the parental cell line of rCHO DP‐12, and; CHO K1‐PF (Sigma 00102307) is a non‐recombinant host cell line derived from CHO‐K1 and previously adapted to the Sigma CHO protein‐free medium [ , ].

    Techniques: Expressing, Standard Deviation

    Relative gene expression levels for the product genes and the selection gene. Normalized counts of the transfected heavy chain (HC), light chain (LC), and dhfr genes in the rCHO DP‐12 clone, shown for the three CHO cell lines across the 11 unique conditions. Dashed lines delineate the serum adaptation, glucose, and temperature datasets, respectively. Error bars represent standard deviation of biological replicates ( N = 2).

    Journal: Biotechnology Journal

    Article Title: Transcriptomic Insights Into Serum‐Free Medium Adaptation and Temperature Reduction in Chinese Hamster Ovary Cell Cultures

    doi: 10.1002/biot.70055

    Figure Lengend Snippet: Relative gene expression levels for the product genes and the selection gene. Normalized counts of the transfected heavy chain (HC), light chain (LC), and dhfr genes in the rCHO DP‐12 clone, shown for the three CHO cell lines across the 11 unique conditions. Dashed lines delineate the serum adaptation, glucose, and temperature datasets, respectively. Error bars represent standard deviation of biological replicates ( N = 2).

    Article Snippet: The recombinant cell line rCHO DP‐12 clone #1934 (ATCC CRL‐12445) produces a human monoclonal antibody (IgG 1 ) against Interluekin‐8 (IL‐8); CHO dhFr‐ (ATCC CRL‐9096) is a non‐recombinant host cell line and the parental cell line of rCHO DP‐12, and; CHO K1‐PF (Sigma 00102307) is a non‐recombinant host cell line derived from CHO‐K1 and previously adapted to the Sigma CHO protein‐free medium [ , ].

    Techniques: Gene Expression, Selection, Transfection, Standard Deviation