SK-BR-3/SK-BR-3/SK-BR-3/人乳腺癌细胞
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SK-BR-3/SK-BR-3/SK-BR-3/人乳腺癌细胞

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    • 详细信息
    • 文献和实验
    • 技术资料
    • 英文名

      SK-BR-3

    • 库存

      1x10^6/瓶/支

    • 供应商

      上海酶研

    • 肿瘤类型

      详询

    • 细胞类型

      人乳腺癌细胞

    • ATCC Number

      详询

    • 品系

      SK-BR-3

    • 组织来源

      人乳腺癌细胞

    • 相关疾病

      SK-BR-3

    • 物种来源

      哺乳动物

    • 免疫类型

      详询

    • 细胞形态

      贴壁/悬浮

    • 是否是肿瘤细胞

      详询

    • 器官来源

      人乳腺癌细胞

    • 运输方式

      顺丰快递

    • 年限

      5年

    • 生长状态

      生长良好

    SK-BR-3/SK-BR-3细胞系/SK-BR-3细胞株/SK-BR-3人乳腺癌细胞

    Cell line name SK-BR-3

    Synonyms SK-Br-3; Sk-Br-3; SK BR 03; SKBR-3; SKBr-3; SK-BR3; SKBr3; SkBr3; SKBR3

    Accession CVCL_0033

    Resource Identification Initiative To cite this cell line use: SK-BR-3 (RRID:CVCL_0033)

    Comments Part of: Cancer Dependency Map project (DepMap) (includes Cancer Cell Line Encyclopedia - CCLE).

    Part of: JWGray breast cancer cell line panel.

    Part of: ICBP43 breast cancer cell line panel.

    Part of: KuDOS 95 cell line panel.

    Part of: MD Anderson Cell Lines Project.

    From: Memorial Sloan Kettering Cancer Center; New York; USA.

    Registration: Memorial Sloan Kettering Cancer Center Office of Technology Development; SK 808.

    Population: Caucasian.

    Doubling time: 37.4 hours (PubMed=24389870); ~30 hours (CLS=300333); ~2-3 days (DSMZ=ACC-736); 56.19 hours (JWGray panel).

    Microsatellite instability: Stable (MSS) (PubMed=23671654).

    Omics: Array-based CGH.

    Omics: CNV analysis.

    Omics: Deep antibody staining analysis.

    Omics: Deep exome analysis.

    Omics: Deep proteome analysis.

    Omics: Deep quantitative proteome analysis.

    Omics: Exosome proteome analysis.

    Omics: Genome sequenced.

    Omics: Glycoproteome analysis by proteomics.

    Omics: H2BK120ub ChIP-seq epigenome analysis.

    Omics: H3K23ac ChIP-seq epigenome analysis.

    Omics: H3K27ac ChIP-seq epigenome analysis.

    Omics: H3K27me3 ChIP-seq epigenome analysis.

    Omics: H3K36me3 ChIP-seq epigenome analysis.

    Omics: H3K4me1 ChIP-seq epigenome analysis.

    Omics: H3K4me3 ChIP-seq epigenome analysis.

    Omics: H3K79me2 ChIP-seq epigenome analysis.

    Omics: H3K9ac ChIP-seq epigenome analysis.

    Omics: H3K9me3 ChIP-seq epigenome analysis.

    Omics: H4K8ac ChIP-seq epigenome analysis.

    Omics: miRNA expression profiling.

    Omics: N-glycan profiling.

    Omics: Protein expression by reverse-phase protein arrays.

    Omics: SNP array analysis.

    Omics: Transcriptome analysis by microarray.

    Omics: Transcriptome analysis by RNAseq.

    Anecdotal: Used in a study utilising the fruit fly's olfactory system to detect cancer cells (PubMed=24389870).

    Misspelling: SKBR3B; PubMed=26378940.

    Derived from site: Metastatic; Pleural effusion; UBERON=UBERON_0000175.

    PubMed=6582512; DOI=10.1073/pnas.81.2.568; PMCID=PMC344720

    Mattes M.J., Cordon-Cardo C., Lewis J.L. Jr., Old L.J., Lloyd K.O.

    Cell surface antigens of human ovarian and endometrial carcinoma defined by mouse monoclonal antibodies.

    Proc. Natl. Acad. Sci. U.S.A. 81:568-572(1984)

     

    PubMed=3518877; DOI=10.3109/07357908609038260

    Fogh J.

    Human tumor lines for cancer research.

    Cancer Invest. 4:157-184(1986)

     

    PubMed=1961733; DOI=10.1073/pnas.88.23.10657; PMCID=PMC52989

    Runnebaum I.B., Nagarajan M., Bowman M., Soto D., Sukumar S.

    Mutations in p53 as potential molecular markers for human breast cancer.

    Proc. Natl. Acad. Sci. U.S.A. 88:10657-10661(1991)

     

    DOI=10.1016/B978-0-12-333530-2.50009-5

    Leibovitz A.

    Cell lines from human breast.

    (In book chapter) Atlas of human tumor cell lines; Hay R.J., Park J.-G., Gazdar A.F. (eds.); pp.161-184; Academic Press; New York; USA (1994)

     

    PubMed=9671407; DOI=10.1038/sj.onc.1201814

    Sweeney K.J., Swarbrick A., Sutherland R.L., Musgrove E.A.

    Lack of relationship between CDK activity and G1 cyclin expression in breast cancer cells.

    Oncogene 16:2865-2878(1998)

     

    PubMed=10862037; DOI=10.1002/1098-2264(200007)28:3<308::AID-GCC9>3.0.CO;2-B

    Kytola S., Rummukainen J., Nordgren A., Karhu R., Farnebo F., Isola J.J., Larsson C.

    Chromosomal alterations in 15 breast cancer cell lines by comparative genomic hybridization and spectral karyotyping.

    Genes Chromosomes Cancer 28:308-317(2000)

     

    PubMed=10969801

    Forozan F., Mahlamaki E.H., Monni O., Chen Y.-D., Veldman R., Jiang Y., Gooden G.C., Ethier S.P., Kallioniemi A.H., Kallioniemi O.-P.

    Comparative genomic hybridization analysis of 38 breast cancer cell lines: a basis for interpreting complementary DNA microarray data.

    Cancer Res. 60:4519-4525(2000)

     

    PubMed=11044355; DOI=10.1054/bjoc.2000.1458; PMCID=PMC2408781

    Davidson J.M., Gorringe K.L., Chin S.-F., Orsetti B., Besret C., Courtay-Cahen C., Roberts I., Theillet C., Caldas C., Edwards P.A.W.

    Molecular cytogenetic analysis of breast cancer cell lines.

    Br. J. Cancer 83:1309-1317(2000)

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