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NCI-H1155人非小细胞肺癌细胞

英文名:NCI-H1155
货号:ZQ1151
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NCI-H1155人非小细胞肺癌细胞

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产品名称

NCI-H1155人非小细胞肺癌细胞

货号

ZQ1151

产品介绍

NCI-H1155细胞是一种人类非小细胞肺癌(Non-Small Cell Lung Cancer, NSCLC)细胞系。从一名 36 岁白人男性癌患者的肺部分离出来的,非小细胞肺癌是肺癌中最常见的类型,占所有肺癌病例的大约85%,包括鳞状细胞癌、腺癌和其他几种亚型。这些细胞在癌症研究中非常有用,尤其是在研究肺腺癌的生物学特性、疾病进展、药物反应以及潜在的治疗靶点方面。

种属

白人

性别/年龄

男/36岁

组织

疾病

非小细胞癌

细胞类型

肿瘤细胞

形态学

上皮

生长方式

以悬浮的团簇形式生长

倍增时间

大约23.2 小时

培养基和添加剂

BEGM(Lonza CC-3170)+10%胎牛血清(中乔新舟  货号:ZQ500-A

推荐完全培养基货号

ZM1151

生物安全等级

BSL-1

培养条件

95%空气,5%二氧化碳;37℃

STR位点信息

Amelogenin: X

D3S1358: 15

TH01: 6

D21S11: 32.2

D18S51: 16

Penta_E: 10

D5S818: 10

D13S317: 14

D7S820: 8

D16S539: 9

CSF1PO: 12

Penta_D: 9

vWA: 15

D8S1179: 14,16

TPOX: 8

FGA: 26

D19S433: 16.2

D2S1338: 17

抗原表达/受体表达

*** 

基因表达

*** 

保藏机构

ATCC; CRL-5818  BCRJ; 0360

供应限制

仅供科研使用



货号

ZQ1151

发货规格

活细胞:T25培养瓶*1瓶或者1ml 冻存管*1支(细胞量约为5 x 10^5 cells/vial)二选一

发货形式

活细胞:常温运输;冻存管:干冰运输

储存温度

活细胞:培养箱;冻存管:液氮罐

产地

中国

供应限制

仅供科研使用

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PubMed=16187286; DOI=10.1002/ijc.21491
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PubMed=19472407; DOI=10.1002/humu.21028
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A gene-alteration profile of human lung cancer cell lines.
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PubMed=20164919; DOI=10.1038/nature08768
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Signatures of mutation and selection in the cancer genome.
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PubMed=20215515; DOI=10.1158/0008-5472.CAN-09-3458
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A genome-wide screen for microdeletions reveals disruption of polarity complex genes in diverse human cancers.
Cancer Res. 70:2158-2164(2010)

PubMed=20557307; DOI=10.1111/j.1349-7006.2010.01622.x
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Prevalence of human papillomavirus 16/18/33 infection and p53 mutation in lung adenocarcinoma.
Cancer Sci. 101:1891-1896(2010)

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The Cancer Cell Line Encyclopedia enables predictive modelling of anticancer drug sensitivity.
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Proteomic profiling identifies dysregulated pathways in small cell lung cancer and novel therapeutic targets including PARP1.
Cancer Discov. 2:798-811(2012)

PubMed=24135919; DOI=10.1038/ncomms3617
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PubMed=25877200; DOI=10.1038/nature14397
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PubMed=28196595; DOI=10.1016/j.ccell.2017.01.005
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PubMed=29681454; DOI=10.1016/j.cell.2018.03.028
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PubMed=30038707; DOI=10.18632/oncotarget.25642
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LMO1 functions as an oncogene by regulating TTK expression and correlates with neuroendocrine differentiation of lung cancer.
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PubMed=30894373; DOI=10.1158/0008-5472.CAN-18-2747
Dutil J., Chen Z.-H., Monteiro A.N.A., Teer J.K., Eschrich S.A.
An interactive resource to probe genetic diversity and estimated ancestry in cancer cell lines.
Cancer Res. 79:1263-1273(2019)

PubMed=30971826; DOI=10.1038/s41586-019-1103-9
Behan F.M., Iorio F., Picco G., Goncalves E., Beaver C.M., Migliardi G., Santos R., Rao Y., Sassi F., Pinnelli M., Ansari R., Harper S., Jackson D.A., McRae R., Pooley R., Wilkinson P., van der Meer D.J., Dow D., Buser-Doepner C.A., Bertotti A., Trusolino L., Stronach E.A., Saez-Rodriguez J., Yusa K., Garnett M.J.
Prioritization of cancer therapeutic targets using CRISPR-Cas9 screens.
Nature 568:511-516(2019)

PubMed=31068700; DOI=10.1038/s41586-019-1186-3
Ghandi M., Huang F.W., Jane-Valbuena J., Kryukov G.V., Lo C.C., McDonald E.R. III, Barretina J.G., Gelfand E.T., Bielski C.M., Li H.-X., Hu K., Andreev-Drakhlin A.Y., Kim J., Hess J.M., Haas B.J., Aguet F., Weir B.A., Rothberg M.V., Paolella B.R., Lawrence M.S., Akbani R., Lu Y.-L., Tiv H.L., Gokhale P.C., de Weck A., Mansour A.A., Oh C., Shih J., Hadi K., Rosen Y., Bistline J., Venkatesan K., Reddy A., Sonkin D., Liu M., Lehar J., Korn J.M., Porter D.A., Jones M.D., Golji J., Caponigro G., Taylor J.E., Dunning C.M., Creech A.L., Warren A.C., McFarland J.M., Zamanighomi M., Kauffmann A., Stransky N., Imielinski M., Maruvka Y.E., Cherniack A.D., Tsherniak A., Vazquez F., Jaffe J.D., Lane A.A., Weinstock D.M., Johannessen C.M., Morrissey M.P., Stegmeier F., Schlegel R., Hahn W.C., Getz G., Mills G.B., Boehm J.S., Golub T.R., Garraway L.A., Sellers W.R.
Next-generation characterization of the Cancer Cell Line Encyclopedia.
Nature 569:503-508(2019)

PubMed=31803961; DOI=10.1002/jcb.29564
Mulshine J.L., Ujhazy P., Antman M., Burgess C.M., Kuzmin I.A., Bunn P.A. Jr., Johnson B.E., Roth J.A., Pass H.I., Ross S.M., Aldige C.R., Wistuba I.I., Minna J.D.
From clinical specimens to human cancer preclinical models -- a journey the NCI-cell line database-25 years later.
J. Cell. Biochem. 121:3986-3999(2020)

PubMed=31978347; DOI=10.1016/j.cell.2019.12.023
Nusinow D.P., Szpyt J., Ghandi M., Rose C.M., McDonald E.R. III, Kalocsay M., Jane-Valbuena J., Gelfand E.T., Schweppe D.K., Jedrychowski M.P., Golji J., Porter D.A., Rejtar T., Wang Y.K., Kryukov G.V., Stegmeier F., Erickson B.K., Garraway L.A., Sellers W.R., Gygi S.P.
Quantitative proteomics of the Cancer Cell Line Encyclopedia.
Cell 180:387-402.e16(2020)

PubMed=35839778; DOI=10.1016/j.ccell.2022.06.010
Goncalves E., Poulos R.C., Cai Z.-X., Barthorpe S., Manda S.S., Lucas N., Beck A., Bucio-Noble D., Dausmann M., Hall C., Hecker M., Koh J., Lightfoot H., Mahboob S., Mali I., Morris J., Richardson L., Seneviratne A.J., Shepherd R., Sykes E., Thomas F., Valentini S., Williams S.G., Wu Y.-X., Xavier D., MacKenzie K.L., Hains P.G., Tully B., Robinson P.J., Zhong Q., Garnett M.J., Reddel R.R.
Pan-cancer proteomic map of 949 human cell lines.
Cancer Cell 40:835-849.e8(2022)
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