相关产品推荐更多 >
万千商家帮你免费找货
0 人在求购买到急需产品
- 详细信息
- 文献和实验
- 技术资料
- 英文名:
KYSE140
- 库存:
1x10^6/瓶/支
- 供应商:
上海酶研
- 肿瘤类型:
详询
- 细胞类型:
人食道癌肿瘤细胞
- ATCC Number:
详询
- 品系:
KYSE140
- 组织来源:
人食道癌肿瘤细胞
- 相关疾病:
KYSE140
- 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:
是
- 器官来源:
人食道癌肿瘤细胞
- 运输方式:
顺丰快递
- 年限:
5年
- 生长状态:
生长良好
KYSE140/KYSE140细胞系/KYSE140细胞株/KYSE140人食道癌肿瘤细胞
Cell line name KYSE-140
Synonyms KYSE 140; Kyse-140; KYSE140; Kyse140
Accession CVCL_1347
Resource Identification Initiative To cite this cell line use: KYSE-140 (RRID:CVCL_1347)
Comments Part of: Cancer Dependency Map project (DepMap) (includes Cancer Cell Line Encyclopedia - CCLE).
Part of: COSMIC cell lines project.
Population: Japanese.
Doubling time: 27.4 hours (PubMed=1728357); ~24 hours (DSMZ=ACC-348).
Microsatellite instability: Stable (MSS) (Sanger).
Omics: CRISPR phenotypic screen.
Omics: Deep exome analysis.
Omics: Deep quantitative proteome analysis.
Omics: DNA methylation analysis.
Omics: SNP array analysis.
Omics: Transcriptome analysis by microarray.
Omics: Transcriptome analysis by RNAseq.
Derived from site: In situ; Esophagus; UBERON=UBERON_0001043.
PubMed=9033652; DOI=10.1002/(SICI)1097-0215(19970207)70:4<437::AID-IJC11>3.0.CO;2-C
Tanaka H., Shimada Y., Imamura M., Shibagaki I., Ishizaki K.
Multiple types of aberrations in the p16 (INK4a) and the p15(INK4b) genes in 30 esophageal squamous-cell-carcinoma cell lines.
Int. J. Cancer 70:437-442(1997)
PubMed=11092977; DOI=10.1111/j.1349-7006.2000.tb00895.x; PMCID=PMC5926289
Pimkhaokham A., Shimada Y., Fukuda Y., Kurihara N., Imoto I., Yang Z.-Q., Imamura M., Nakamura Y., Amagasa T., Inazawa J.
Nonrandom chromosomal imbalances in esophageal squamous cell carcinoma cell lines: possible involvement of the ATF3 and CENPF genes in the 1q32 amplicon.
Jpn. J. Cancer Res. 91:1126-1133(2000)
PubMed=15172977; DOI=10.1158/0008-5472.CAN-04-0172
Sonoda I., Imoto I., Inoue J., Shibata T., Shimada Y., Chin K., Imamura M., Amagasa T., Gray J.W., Hirohashi S., Inazawa J.
Frequent silencing of low density lipoprotein receptor-related protein 1B (LRP1B) expression by genetic and epigenetic mechanisms in esophageal squamous cell carcinoma.
Cancer Res. 64:3741-3747(2004)
PubMed=16045545; DOI=10.1111/j.0959-9673.2005.00431.x; PMCID=PMC2517430
Ban S., Michikawa Y., Ishikawa K.-i., Sagara M., Watanabe K., Shimada Y., Inazawa J., Imai T.
Radiation sensitivities of 31 human oesophageal squamous cell carcinoma cell lines.
Int. J. Exp. Pathol. 86:231-240(2005)
PubMed=20164919; DOI=10.1038/nature08768; PMCID=PMC3145113
Bignell G.R., Greenman C.D., Davies H.R., Butler A.P., Edkins S., Andrews J.M., Buck G., Chen L., Beare D., Latimer C., Widaa S., Hinton J., Fahey C., Fu B.-Y., Swamy S., Dalgliesh G.L., Teh B.T., Deloukas P., Yang F.-T., Campbell P.J., Futreal P.A., Stratton M.R.
Signatures of mutation and selection in the cancer genome.
Nature 463:893-898(2010)
PubMed=20215515; DOI=10.1158/0008-5472.CAN-09-3458; PMCID=PMC2881662
Rothenberg S.M., Mohapatra G., Rivera M.N., Winokur D., Greninger P., Nitta M., Sadow P.M., Sooriyakumar G., Brannigan B.W., Ulman M.J., Perera R.M., Wang R., Tam A., Ma X.-J., Erlander M., Sgroi D.C., Rocco J.W., Lingen M.W., Cohen E.E.W., Louis D.N., Settleman J., Haber D.A.
A genome-wide screen for microdeletions reveals disruption of polarity complex genes in diverse human cancers.
Cancer Res. 70:2158-2164(2010)
PubMed=22460905; DOI=10.1038/nature11003; PMCID=PMC3320027
Barretina J.G., Caponigro G., Stransky N., Venkatesan K., Margolin A.A., Kim S., Wilson C.J., Lehar J., Kryukov G.V., Sonkin D., Reddy A., Liu M., Murray L., Berger M.F., Monahan J.E., Morais P., Meltzer J., Korejwa A., Jane-Valbuena J., Mapa F.A., Thibault J., Bric-Furlong E., Raman P., Shipway A., Engels I.H., Cheng J., Yu G.-Y.K., Yu J.-J., Aspesi P. Jr., de Silva M., Jagtap K., Jones M.D., Wang L., Hatton C., Palescandolo E., Gupta S., Mahan S., Sougnez C., Onofrio R.C., Liefeld T., MacConaill L.E., Winckler W., Reich M., Li N.-X., Mesirov J.P., Gabriel S.B., Getz G., Ardlie K., Chan V., Myer V.E., Weber B.L., Porter J., Warmuth M., Finan P., Harris J.L., Meyerson M.L., Golub T.R., Morrissey M.P., Sellers W.R., Schlegel R., Garraway L.A.
The Cancer Cell Line Encyclopedia enables predictive modelling of anticancer drug sensitivity.
Nature 483:603-607(2012)
风险提示:丁香通仅作为第三方平台,为商家信息发布提供平台空间。用户咨询产品时请注意保护个人信息及财产安全,合理判断,谨慎选购商品,商家和用户对交易行为负责。对于医疗器械类产品,请先查证核实企业经营资质和医疗器械产品注册证情况。
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.
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
2-4 selectin分子的结构模式图 表2-3 selectin 家族的组成、分布及其相应配体 selectin家族成员 分布 分子量(kDa) 配体 L-selectin(CD62L,LECAM-1) 白细胞 75~80 PNAd LAM Mel14(小鼠) S-Lewis x P-selectin 血管内皮细胞,血小板 140 S-Lewis x (CD62P,GMP-140,PADGEM) (凝血酶、组胺、白三烯刺激后从α颗粒内与质膜融合而表达
xCELLigence 系统是一种灵敏的、可靠的检测系统,用于持续内源性 GPCR 功能测定。研究中我们对涉及 24 个治疗相关受体家族的一组 43 个配体(参见表 1)进行了测定,并生成了相关GPCR功能图谱。实验涉及通用的肿瘤细胞系、HeLa、U2OS、SH-SY5Y 与 CHO-K1,以及 疾病相关的原代细胞:人血管内皮细胞与混合肾上皮细胞。 = 最大细胞指数值超出缓冲液对照的3倍标准差 = 最小细胞指数值低于缓冲液对照的3倍标准差 表 1:GPCR 功能图概述 材料与方法
技术资料






