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- 技术资料
- 英文名:
RBE
- 库存:
1x10^6/瓶/支
- 供应商:
上海酶研
- 肿瘤类型:
详询
- 细胞类型:
人胆管癌细胞
- ATCC Number:
详询
- 品系:
RBE
- 组织来源:
人胆管癌细胞
- 相关疾病:
RBE
- 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:
人胆管癌细胞
- 运输方式:
顺丰快递
- 年限:
5年
- 生长状态:
生长良好
RBE/RBE细胞系/RBE细胞株/RBE人胆管癌细胞
Cell line name RBE
Accession CVCL_4896
Resource Identification Initiative To cite this cell line use: RBE (RRID:CVCL_4896)
Comments Part of: Cancer Dependency Map project (DepMap) (includes Cancer Cell Line Encyclopedia - CCLE).
Part of: JFCR45 cancer cell line panel.
Population: Japanese.
Doubling time: 45 hours (PubMed=9358283).
Omics: Deep exome analysis.
Omics: Transcriptome analysis by microarray.
Misspelling: RBA; CelloPub=CLPUB00275.
Derived from site: In situ; Liver; UBERON=UBERON_0002107.
Sequence variations
Mutation; HGNC; 5382; IDH1; Simple; p.Arg132Ser (c.394C>A); ClinVar=VCV000375893; Zygosity=Unspecified (PubMed=27231123; DepMap=ACH-001856).
Mutation; HGNC; 6407; KRAS; Simple; p.Gly12Val (c.35G>T); ClinVar=VCV000012583; Zygosity=Unspecified (DepMap=ACH-001856).
Disease Intrahepatic cholangiocarcinoma (NCIt: C35417)
Cholangiocarcinoma (ORDO: Orphanet_70567)
Species of origin Homo sapiens (Human) (NCBI Taxonomy: 9606)
Hierarchy Children:
CVCL_A9CU (RBE-Luc2-tdT)
Sex of cell Female
Age at sampling 64Y
Category Cancer cell line
STR profile Source(s): CCRID; DepMap=ACH-001856; RCB=RCB1292
Markers:
Amelogenin X
CSF1PO 12
D2S1338 17,24
D3S1358 14,15
D5S818 11,12
D7S820 8,11
D8S1179 13,14
D13S317 9
D16S539 10,11
D18S51 13,15
D19S433 14,15.2
D21S11 29
FGA 19,24
Penta D 12
Penta E 18
TH01 6
TPOX 8
vWA 20
Run an STR similarity search on this cell line
Publications
PubMed=9358283; DOI=10.1007/s11626-997-0125-z
Enjoji M., Sakai H., Nawata H., Kajiyama K., Tsuneyoshi M.
Sarcomatous and adenocarcinoma cell lines from the same nodule of cholangiocarcinoma.
In Vitro Cell. Dev. Biol. Anim. 33:681-683(1997)
PubMed=15767549; DOI=10.1158/1535-7163.MCT-04-0234
Nakatsu N., Yoshida Y., Yamazaki K., Nakamura T., Dan S., Fukui Y., Yamori T.
Chemosensitivity profile of cancer cell lines and identification of genes determining chemosensitivity by an integrated bioinformatical approach using cDNA arrays.
Mol. Cancer Ther. 4:399-412(2005)
CLPUB00275
Zach S., Birgin E., Ruckert F.
Primary cholangiocellular carcinoma cell lines.
J. Stem Cell Res. Transplant. 2:1013-1013(2015)
PubMed=27231123; DOI=10.1158/2159-8290.CD-15-1442; PMCID=PMC5458737
Saha S.K., Gordan J.D., Kleinstiver B.P., Vu P., Najem M.S., Yeo J.-C., Shi L., Kato Y., Levin R.S., Webber J.T., Damon L.J., Egan R.K., Greninger P., McDermott U., Garnett M.J., Jenkins R.L., Rieger-Christ K.M., Sullivan T.B., Hezel A.F., Liss A.S., Mizukami Y., Goyal L., Ferrone C.R., Zhu A.X.-X., Joung J.K., Shokat K.M., Benes C.H., El-Bardeesy N.
Isocitrate dehydrogenase mutations confer dasatinib hypersensitivity and SRC dependence in intrahepatic cholangiocarcinoma.
Cancer Discov. 6:727-739(2016)
PubMed=31077409; DOI=10.1002/hep.30704
Sittithumcharee G., Suppramote O., Vaeteewoottacharn K., Sirisuksakun C., Jamnongsong S., Laphanuwat P., Suntiparpluacha M., Matha A., Chusorn P., Buraphat P., Kakanaporn C., Charngkaew K., Silsirivanit A., Korphaisarn K., Limsrichamrern S., Tripatara P., Pairojkul C., Wongkham S., Sampattavanich S., Okada S., Jirawatnotai S.
Dependency of cholangiocarcinoma on cyclin D-dependent kinase activity.
Hepatology 70:1614-1630(2019)
PubMed=35640676; DOI=10.1016/j.ajpath.2022.05.007; PMCID=PMC9472155
Isidan A., Yenigun A., Soma D., Aksu E., Lopez K., Park Y., Cross-Najafi A., Li P., Kundu D., House M.G., Chakraborty S., Glaser S., Kennedy L., Francis H., Zhang W.-J., Alpini G.D., Ekser B.
Development and characterization of human primary cholangiocarcinoma cell lines.
Am. J. Pathol. 192:1200-1217(2022)
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文献和实验*发表【中文论文】请标注:由上海酶研生物科技有限公司提供;
*发表【英文论文】请标注:From Shanghai EK-Bioscience Biotechnology Co., Ltd.
a look from the following website just by clicking "Tyrosine Phosphorylation and Dimerization" http://www.sciencedirect.com/science?_ob=ArticleURL&_udi=B6WSN-43F85YV-2&_user=1111158&_coverDate=06%2F29%2F2001&_rdoc=1&_fmt=full&_orig=search
扫描仪中,都采用机械式的二维X,Y线性扫描技术实现,即X,Y方向都采用直线驱动器和直线导轨实现往复运动。此类装置,由于驱动系统的频率限制,驱动器的扫描惯性大,使得扫描效率低,分析时间相当长;并且往复行程长,对直线导轨的精度要求相当高。二、光机结合的二维扫描系统为同样实现生物芯片的二维扫描,我们的实验装置设计如图2,采用了振镜和大数值孔径的远心f-è物镜相结合实现X方向扫描,Y方向的运动仍采用直线驱动器和直线导轨实现。 系统中,对于f-è物镜,满足x=2fè(è为振镜的摆动角度,f为物镜焦距)的线性
Analysis of RB Action in DNA Damage Checkpoint Response
checkpoint response: (1) transcriptional repression of E2F-regulated genes (cyclin A reporter assay); (2) induction of cell cycle arrest (Brd-U incorporation assay); and (3) inhibition of DNA double-strand break accumulation (phosphorylated-histone H2A.X
技术资料






