"BT-474[BT474]人乳腺導(dǎo)管癌細(xì)胞代次低|培養(yǎng)基|送STR圖譜
傳代比例:1:2-1:4(首次傳代建議1:2)
生長特性:貼壁生長
【細(xì)胞培養(yǎng)經(jīng)驗(yàn)分享】啟蒙老師的重要性:一般進(jìn)實(shí)驗(yàn)室都有師兄師姐帶著做,他們就是你做細(xì)胞的啟蒙老師。他們的操作手法、細(xì)節(jié)、理論講解就成了你操作的準(zhǔn)則,如營養(yǎng)液、細(xì)胞瓶的擺放位置、滅菌處理程序、開蓋手法、細(xì)胞吹打手法等等。要學(xué)會(huì)他們的正確操作,在第一次的時(shí)候就要重視。像養(yǎng)孩子一樣養(yǎng)細(xì)胞,細(xì)胞有時(shí)真的很脆弱,最好每天都去看看它,以防止出現(xiàn)培養(yǎng)箱缺水、缺二氧化碳、停電、溫度不夠等異?,F(xiàn)象,也好及時(shí)解決這些意外,避免重復(fù)實(shí)驗(yàn)帶來的更大痛苦。好細(xì)胞要及時(shí)保種:細(xì)胞要分批傳代,這樣即使有一批出了問題,還有一批備用的。像后者一般人可能不容易做到。但這是我血的教訓(xùn),有一次細(xì)胞污染了,全軍覆沒。當(dāng)時(shí)可后悔沒有保種。細(xì)胞跟人一樣,不同的細(xì)胞,培養(yǎng)特性是不一樣的。培養(yǎng)過程中要細(xì)細(xì)體會(huì),不同細(xì)胞系使用不同的培養(yǎng)基和血清。
換液周期:每周2-3次
OVCAR3 Cells;背景說明:該細(xì)胞1982年由T.C. Hamilton等建系,源自一位60卵巢腺癌的腹水,是卵巢癌抗藥性研究的模型。;傳代方法:1:2—1:4傳代,每周換液2—3次;生長特性:貼壁生長;形態(tài)特性:上皮細(xì)胞樣;相關(guān)產(chǎn)品有:BLO-11細(xì)胞、SNB.19細(xì)胞、NCI-H711細(xì)胞
PLA801C Cells;背景說明:肺巨細(xì)胞癌;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:MBT-2細(xì)胞、CCD-19Lu細(xì)胞、Experimental Mammary Tumour-6細(xì)胞
KMS-11 Cells;背景說明:多發(fā)性骨髓瘤;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:懸浮;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:NOR10細(xì)胞、NCIH2106細(xì)胞、BT細(xì)胞
BT-474[BT474]人乳腺導(dǎo)管癌細(xì)胞代次低|培養(yǎng)基|送STR圖譜
背景信息:是由E·Lasfargues和W·G·Coutinho從一個(gè)實(shí)心的乳腺浸潤性導(dǎo)管癌中分離到的細(xì)胞系。最初分離自一名60歲白人女性的乳腺浸潤性導(dǎo)管癌組織。
┈訂┈購(技術(shù)服務(wù))┈熱┈線:1┈3┈6┈4┈1┈9┈3┈0┈7┈9┈1【微信同號】┈Q┈Q:3┈1┈8┈0┈8┈0┈7┈3┈2┈4;
貼壁細(xì)胞的傳代培養(yǎng),詳細(xì)步驟如下:首先倒掉培養(yǎng)基,在這一步驟可以收集一些細(xì)胞上清做支原體檢測;加入胰蛋白酶,一般T25是加2mL,蓋好瓶蓋,搖晃T25培養(yǎng)瓶,使胰蛋白酶均勻覆蓋在細(xì)胞表面,放入培養(yǎng)箱2-3min,期間可在顯微鏡下觀察,看到大部分細(xì)胞變圓,即可放入超凈臺(tái),加入2倍的完全培養(yǎng)基,這里就是加4mL培養(yǎng)基,終止消化;將含有胰蛋白酶,細(xì)胞和培養(yǎng)基一起轉(zhuǎn)移到離心管中,1000rpm/3min離心,去掉上清;新鮮的完全培養(yǎng)基重懸,根據(jù)細(xì)胞的生長特性和后續(xù)的實(shí)驗(yàn)需求進(jìn)行傳代,比如我養(yǎng)的Hepa1-6就長的比較快,不是著急用的話,我就會(huì)按1E6個(gè)細(xì)胞/T75培養(yǎng)瓶進(jìn)行傳代;但如果后兩天要用,就會(huì)適當(dāng)多傳一點(diǎn);還可通過顯微鏡計(jì)數(shù)后,直接用于細(xì)胞鋪板,繼續(xù)后續(xù)的實(shí)驗(yàn)。
產(chǎn)品包裝:復(fù)蘇發(fā)貨:T25培養(yǎng)瓶(一瓶)或凍存發(fā)貨:1ml凍存管(兩支)
來源說明:細(xì)胞主要來源ATCC、ECACC、DSMZ、RIKEN等細(xì)胞庫
BT-474[BT474]人乳腺導(dǎo)管癌細(xì)胞代次低|培養(yǎng)基|送STR圖譜
物種來源:人源、鼠源等其它物種來源
HS578 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁或懸浮,詳見產(chǎn)品說明書部分;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:CAMA-1細(xì)胞、SCCVII/St細(xì)胞、MT-3 [Human leukocytes]細(xì)胞
DLM8 Cells;背景說明:Dunn's骨肉瘤;雌性;C3H;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:TFH細(xì)胞、U-343細(xì)胞、CC-LP-1細(xì)胞
Clone 166 Cells;背景說明:血管內(nèi)皮;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:CCD-33Co細(xì)胞、COLO 320F細(xì)胞、SV40 MES 13細(xì)胞
MCF-12A Cells;背景說明:非致瘤性乳腺上皮細(xì)胞;女性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:LSC-1細(xì)胞、SKHEP-1細(xì)胞、EB-2細(xì)胞
┈訂┈購(技術(shù)服務(wù))┈熱┈線:1┈3┈6┈4┈1┈9┈3┈0┈7┈9┈1【微信同號】┈Q┈Q:3┈1┈8┈0┈8┈0┈7┈3┈2┈4;
形態(tài)特性:上皮細(xì)胞樣
細(xì)胞復(fù)蘇后貼壁細(xì)胞較少的問題分析:總結(jié)1:復(fù)蘇過程沒有問題,是否是從拿出直接放入溫水,還有培養(yǎng)箱,二氧化碳濃度,培養(yǎng)基、PH值等環(huán)節(jié)。要么加GAO濃度FBS 15-20%,看看能否幫助貼壁,當(dāng)然也需要考慮血清問題,還有確信拿來的細(xì)胞沒問題??偨Y(jié)2:首先應(yīng)該懷疑凍存,實(shí)際上復(fù)蘇出問題的可能非常小,因?yàn)椴僮骱唵?,而且死板。1、你凍存的時(shí)候是不是消化的時(shí)間過長,這是一般人所注意不到的,即使書上也不講這個(gè)問題,太長的消化時(shí)間會(huì)讓細(xì)胞復(fù)蘇時(shí)失去貼壁能力,表現(xiàn)為先貼后死,原因是在你復(fù)蘇的時(shí)候細(xì)胞已進(jìn)入凋亡程序,不可逆轉(zhuǎn)的死亡。2、你的凍存HAO不HAO,是什么,甘油還是DMSO,質(zhì)量非常重要,否則也會(huì)死亡。3、你的凍存的量加的是不是太多,AC推薦是不超過7%,大于5%,太多也不HAO。4、你在凍存的時(shí)候是不是把DMSO混均勻,這個(gè)有一些影響,但不算太大。5、你的凍存是否按部就班,就是所溫度梯度是不是把握嚴(yán)格,很多人容易忘卻這個(gè)事情,因?yàn)檫@個(gè)東西流程長。6、如果你細(xì)胞污染,你是否能很快看到,我比我的導(dǎo)師能早一天看到污染。從這個(gè)角度講建議去除離心這步。7、你的細(xì)胞在凍存前是否過密。還有,不贊成孵箱污染這個(gè)概念的,所有在一個(gè)孵箱里的細(xì)胞都污染一個(gè)細(xì)菌的話,這個(gè)細(xì)菌是源于孵箱的,但這不代表孵箱污染,因?yàn)榉跸錈o論你如何處理都有大量的細(xì)菌,問題在操作。每次污染的原因都要盡可能的找,以后就不犯同樣的問題,這個(gè)很重要,不能靠猜,否則你就有可能細(xì)胞養(yǎng)絕Zui后換課題,這個(gè)見得太多了,別不當(dāng)會(huì)事。
Pa14C Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2傳代;生長特性:貼壁生長;形態(tài)特性:上皮樣;相關(guān)產(chǎn)品有:DLD 1細(xì)胞、HL7702細(xì)胞、RPMI no. 8226細(xì)胞
BHT-101 Cells;背景說明:甲狀腺癌;女性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:MSTO211H細(xì)胞、DV-90細(xì)胞、JeKo 1細(xì)胞
U-118-MG Cells;背景說明:注意: 據(jù)報(bào)道來自不同個(gè)體的膠質(zhì)母細(xì)胞瘤細(xì)胞株U-118 MG (HTB-15) 和 U-138 MG (HTB-16)有著一致的VNTR和相近的STR模式。 U-118 MG 和 U-138 MG細(xì)胞遺傳學(xué)上很相似并有至少六個(gè)衍生標(biāo)記染色體。 這是1966年至1969年間J. Ponten和同事從惡性神經(jīng)膠質(zhì)瘤中構(gòu)建的細(xì)胞株中的一株(其它包括ATCC HTB-14和 ATCC HTB-16 and ATCC HTB-17)。 1987年用BM-Cycline培養(yǎng)6周去除了支原體污染。 ;傳代方法: 消化3-5分鐘。1:2傳代。3天內(nèi)可長滿。;生長特性:貼壁生長;形態(tài)特性:混合型;相關(guān)產(chǎn)品有:KP4細(xì)胞、Hs611T細(xì)胞、NB-9細(xì)胞
Hs 274.T Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2傳代,每周換液2-3次。;生長特性:貼壁生長;形態(tài)特性:成纖維細(xì)胞;相關(guān)產(chǎn)品有:KU.812細(xì)胞、HECV細(xì)胞、NCIH23細(xì)胞
OCM1 Cells;背景說明:葡萄膜黑色素瘤;女性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:CTV-1細(xì)胞、hTERTHME1細(xì)胞、CL-11細(xì)胞
NCI-HUT-125 Cells;背景說明:腺鱗狀肺癌;男性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:Ramos.2G6.4C10細(xì)胞、Jurkat E6細(xì)胞、C33細(xì)胞
CORL105 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁或懸浮,詳見產(chǎn)品說明書部分;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:HT-29細(xì)胞、Ontario Cancer Institute-Acute Myeloid Leukemia-3細(xì)胞、MDA-MB 361細(xì)胞
CCFSTTG1 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:3—1:6傳代;每周換液2-3次;生長特性:貼壁生長;形態(tài)特性:星形膠質(zhì)細(xì)胞;相關(guān)產(chǎn)品有:CORL105細(xì)胞、HSAEC1-KT細(xì)胞、HCC2279細(xì)胞
SUDHL-8 Cells;背景說明:彌漫大B淋巴瘤;腹腔積液轉(zhuǎn)移;男性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:懸浮;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:SK-MEL-1細(xì)胞、OCI-Ly18細(xì)胞、LS123細(xì)胞
Namalva Cells;背景說明:這株細(xì)胞有EB病毒基因組。;傳代方法:1:2傳代。3天內(nèi)可長滿。;生長特性:懸浮生長 ;形態(tài)特性:淋巴母細(xì)胞樣;相關(guān)產(chǎn)品有:Nakata-1細(xì)胞、FF-WT-BJ細(xì)胞、Tca-83細(xì)胞
SUDHL2 Cells;背景說明:彌漫性大細(xì)胞淋巴瘤;胸腔積液轉(zhuǎn)移;女性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:懸浮;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:L-M (TK-)細(xì)胞、SV-HUC細(xì)胞、NCTC929細(xì)胞
NCI-H446 Cells;背景說明:該細(xì)胞是1982年由CarneyD和GazdarAF等從一位小細(xì)胞肺癌患者的胸腔積液中建立的。細(xì)胞的原始形態(tài)并不具有小細(xì)胞肺癌特征。這個(gè)細(xì)胞株是小細(xì)胞肺癌的生化和形態(tài)學(xué)上的變種,表達(dá)神經(jīng)元特有的烯醇酶和腦型肌酸激酶同工酶;左旋多巴脫羧酶、蠶素、抗利尿激素、催產(chǎn)素或胃泌激素釋放肽未達(dá)到可檢測水平。與正常細(xì)胞相比,該細(xì)胞c-mycDNA序列擴(kuò)增約20倍,RNA增加15倍。最初傳代培養(yǎng)基用含有5%FBS的RPMI1640,另外添加10nM化可的松、0.005mg/ml胰島素、0.01mg/ml轉(zhuǎn)鐵;傳代方法:1:2傳代;生長特性:貼壁/懸浮生長,混合;形態(tài)特性:上皮樣;相關(guān)產(chǎn)品有:WM 451-Lu細(xì)胞、TALL1細(xì)胞、H-226細(xì)胞
CHL/IU Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁或懸浮,詳見產(chǎn)品說明書部分;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:NCI-747細(xì)胞、DoTc2細(xì)胞、MOLP8細(xì)胞
NCI-H2126 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2-1:4傳代,每周2-3次。;生長特性:貼壁生長;形態(tài)特性:上皮細(xì)胞樣;相關(guān)產(chǎn)品有:NCIH1651細(xì)胞、BNL-HCC細(xì)胞、H-441細(xì)胞
P3J.HR1K Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:每2-3天換液;生長特性:懸浮生長 ;形態(tài)特性:淋巴母細(xì)胞樣;相關(guān)產(chǎn)品有:H-510A細(xì)胞、B16BL6細(xì)胞、SUSM1細(xì)胞
kms 11 Cells;背景說明:多發(fā)性骨髓瘤;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:懸浮;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:Hopkins-92細(xì)胞、293-EBNA1細(xì)胞、H-1155細(xì)胞
Human Lung Microvascular Endothelial Cell line-5a Cells;背景說明:肺微血管;內(nèi)皮細(xì)胞;SV40轉(zhuǎn)化;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:HS940細(xì)胞、S.B.細(xì)胞、Ca761細(xì)胞
2008/C13*5.25 Cells(提供STR鑒定圖譜)
Abcam HeLa NFATC1 KO Cells(提供STR鑒定圖譜)
AG24166 Cells(提供STR鑒定圖譜)
BayGenomics ES cell line RRG360 Cells(提供STR鑒定圖譜)
BayGenomics ES cell line XH056 Cells(提供STR鑒定圖譜)
C0920 Cells(提供STR鑒定圖譜)
Cx43KOM104-E4(+/-) Cells(提供STR鑒定圖譜)
DA04958 Cells(提供STR鑒定圖譜)
FY-hES-9 Cells(提供STR鑒定圖譜)
Vero C1008 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁或懸浮,詳見產(chǎn)品說明書部分;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:COLO 206F細(xì)胞、SU 86.86細(xì)胞、TW01細(xì)胞
BT-474[BT474]人乳腺導(dǎo)管癌細(xì)胞代次低|培養(yǎng)基|送STR圖譜
H-1581 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:每周換液2次。;生長特性:混合型;形態(tài)特性:上皮樣;相關(guān)產(chǎn)品有:NCI-H841細(xì)胞、HLE細(xì)胞、YH細(xì)胞
MC3T3, E1 subgroup-4 clone Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁或懸浮,詳見產(chǎn)品說明書部分;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:Ketr-3細(xì)胞、HAPI細(xì)胞、C-6細(xì)胞
2780CP Cells;背景說明:卵巢癌;女性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:KOPN8細(xì)胞、TFH細(xì)胞、CHP-100細(xì)胞
HRVEC Cells;背景說明:視網(wǎng)膜微血管;內(nèi)皮 Cells;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:CCK-81細(xì)胞、COLO_320DM細(xì)胞、L-6細(xì)胞
TCC Sup Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2-1:3傳代,2-3天換液1次。;生長特性:貼壁生長;形態(tài)特性:上皮細(xì)胞;相關(guān)產(chǎn)品有:Hs 695.T細(xì)胞、OCI-Ly01細(xì)胞、OCILY10細(xì)胞
145-2C11 Cells(提供STR鑒定圖譜)
Walker 256 Cells;背景說明:乳腺癌;雌性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:Centre Antoine Lacassagne-85-1細(xì)胞、GBC-SD細(xì)胞、BHP 10-3細(xì)胞
Panc4.03 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2傳代;生長特性:貼壁生長;形態(tài)特性:上皮樣;相關(guān)產(chǎn)品有:RMG-1細(xì)胞、EB2細(xì)胞、Melanoma 14細(xì)胞
SK-Hep1 Cells;背景說明:SK-HEP-1細(xì)胞系已被鑒定為內(nèi)皮來源。該細(xì)胞系為異倍體女性人(XX),染色體在亞三倍體范圍內(nèi)。在裸鼠中,它能形成與肝癌相一致的大細(xì)胞癌;傳代方法:1:3傳代,2-3天換液一次;生長特性:貼壁生長;形態(tài)特性:上皮樣;相關(guān)產(chǎn)品有:Hepatoma 22細(xì)胞、YH細(xì)胞、Mink Lung細(xì)胞
H1573 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2-1:3傳代,每周2-3次。;生長特性:貼壁生長;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:HUT 125細(xì)胞、OSK-1細(xì)胞、NK-10A細(xì)胞
FLC-7 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁或懸浮,詳見產(chǎn)品說明書部分;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:B16 F10細(xì)胞、B95-8細(xì)胞、Menschliche Und Tierische Zellkulture-1細(xì)胞
KNS-81 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2傳代;生長特性:貼壁生長;形態(tài)特性:上皮樣;相關(guān)產(chǎn)品有:H-1876細(xì)胞、RS1細(xì)胞、BRL 3A細(xì)胞
RCC 786-O Cells;背景說明:該細(xì)胞源自一位原發(fā)性腎透明細(xì)胞癌患者。該細(xì)胞有微絨毛和橋粒,能在軟瓊脂上生長。此細(xì)胞生成一種PTH(甲狀旁腺素)樣的多肽,與乳癌和肺癌中生成的肽相似,其N端序列與PTH相似,具有PTH樣活性,分子量為6000D。;傳代方法:1:2傳代;生長特性:貼壁生長;形態(tài)特性:上皮樣;相關(guān)產(chǎn)品有:IM95細(xì)胞、NCI-H1869細(xì)胞、T-84細(xì)胞
NCI-H1770 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:隨細(xì)胞的生長而換液;生長特性:懸浮生長;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:SKGIIIA細(xì)胞、HuH28細(xì)胞、TK.10細(xì)胞
GM28232 Cells(提供STR鑒定圖譜)
HAP1 PCGF2 (-) Cells(提供STR鑒定圖譜)
OV2008 Cells;背景說明:宮頸鱗癌;女性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:NS1-Ag4/1細(xì)胞、HRC-99細(xì)胞、NCI-H727細(xì)胞
SK-GT-4 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁或懸浮,詳見產(chǎn)品說明書部分;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:6-10B細(xì)胞、H1963細(xì)胞、M2-10B4細(xì)胞
KNS-62 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:每周換液2次。;生長特性:貼壁生長;形態(tài)特性:上皮細(xì)胞;相關(guān)產(chǎn)品有:UMNSAH-DF-1細(xì)胞、SK-N-BE(2)細(xì)胞、MNNG/HOS細(xì)胞
RMa-bm Cells;背景說明:骨髓巨噬 Cells;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:半懸浮;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:CT26WT細(xì)胞、HEL-92.1.7細(xì)胞、HCC2218細(xì)胞
Tu212 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2傳代;生長特性:貼壁生長 ;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:FOX-NY細(xì)胞、RT4P細(xì)胞、H-1436細(xì)胞
H-1299 Cells;背景說明:這株細(xì)胞來源于一個(gè)淋巴結(jié)轉(zhuǎn)移?;颊呓邮芰顺跗诜暖?。細(xì)胞均一性的部分缺失p53蛋白,并缺少p53蛋白表達(dá)。細(xì)胞可以合成0.1pmol/毫克蛋白的NMB蛋白,而不合成促胃液釋放肽(GRP)。;傳代方法:1:2傳代;3天傳代一次。;生長特性:貼壁生長;形態(tài)特性:上皮樣;多角形;相關(guān)產(chǎn)品有:T98G細(xì)胞、P116細(xì)胞、MFE 296細(xì)胞
NMCG-1 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2傳代;生長特性:貼壁生長;形態(tài)特性:上皮細(xì)胞;相關(guān)產(chǎn)品有:GM00215細(xì)胞、TE-32細(xì)胞、CAL 62細(xì)胞
NGEC Cells;背景說明:胃黏膜;上皮 Cells;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:Duke University 145細(xì)胞、TCam-2細(xì)胞、SF-763細(xì)胞
HS362 Cells(提供STR鑒定圖譜)
KOLF2.1J LRRK2 R1441H SNV/SNV Cells(提供STR鑒定圖譜)
MNZTASi011-A Cells(提供STR鑒定圖譜)
NUIGi053-A Cells(提供STR鑒定圖譜)
RG-241 Cells(提供STR鑒定圖譜)
U-1231MG Cells(提供STR鑒定圖譜)
UM-SCV-1A Cells(提供STR鑒定圖譜)
HG01517 Cells(提供STR鑒定圖譜)
HGMC Cells;背景說明:腎小球系膜;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:MFE 296細(xì)胞、DSL-6A/C1細(xì)胞、OVCAR-8細(xì)胞
SKBR-3 Cells;背景說明:這株細(xì)胞源自胸水。沒有病毒顆粒。亞顯微結(jié)構(gòu)特征包括微絲和橋粒,肝糖原顆粒,大溶酶體,成束的細(xì)胞質(zhì)纖絲。SK-BR-3細(xì)胞株過表達(dá)HER2/c-erb-2基因產(chǎn)物。;傳代方法:消化3-5分鐘,1:2,3天內(nèi)可長滿;生長特性:貼壁生長;形態(tài)特性:上皮樣;相關(guān)產(chǎn)品有:RPMI 1846細(xì)胞、NCIH2085細(xì)胞、RT-BM-1細(xì)胞
SY5Y Cells;背景說明:據(jù)報(bào)道,該細(xì)胞的密度可高達(dá)1×106cells/cm2,具有中等水平的多巴胺β羥化酶的活性。;傳代方法:1:2傳代;生長特性:貼壁生長;形態(tài)特性:上皮樣;相關(guān)產(chǎn)品有:DBTRG-05MG細(xì)胞、BHT-101細(xì)胞、TE11細(xì)胞
SK-UT-1 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:4-1:12傳代,2天換液1次。;生長特性:貼壁生長;形態(tài)特性:上皮細(xì)胞;相關(guān)產(chǎn)品有:TE-14細(xì)胞、3-LL細(xì)胞、HPAEpiC細(xì)胞
Hs 839.T Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2傳代,2-3天換液1次。;生長特性:貼壁生長;形態(tài)特性:成纖維細(xì)胞;相關(guān)產(chǎn)品有:NCI-H661細(xì)胞、HEK 293細(xì)胞、HEK293-A細(xì)胞
Hs 839.T Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2傳代,2-3天換液1次。;生長特性:貼壁生長;形態(tài)特性:成纖維細(xì)胞;相關(guān)產(chǎn)品有:NCI-H661細(xì)胞、HEK 293細(xì)胞、HEK293-A細(xì)胞
OSRC2 Cells;背景說明:來源于日本人的腎臟腫瘤細(xì)胞。 可以移植到裸鼠。;傳代方法:1:2傳代;生長特性:貼壁生長;形態(tài)特性:上皮細(xì)胞樣;相關(guān)產(chǎn)品有:GL261細(xì)胞、Hep 3B2.1-7細(xì)胞、CA-OV-3細(xì)胞
L23/P Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁或懸浮,詳見產(chǎn)品說明書部分;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:ETCC007細(xì)胞、Mink細(xì)胞、Primary Liver Carcinoma/Poliomyelitis Research Foundation/5細(xì)胞
MAC1 Cells;背景說明:皮膚T淋巴瘤;女性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:懸浮;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:MuM-2B細(xì)胞、HCC-1428細(xì)胞、SACC-LM細(xì)胞
Fu97 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁或懸浮,詳見產(chǎn)品說明書部分;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:KRC/Y細(xì)胞、T 84細(xì)胞、LN 229細(xì)胞
Hs 636 T Cells;背景說明:宮頸鱗癌;女性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:SNG-M細(xì)胞、Hs.27細(xì)胞、A-101D細(xì)胞
Hs 870.T Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2—1:3傳代;每周換液2-3次;生長特性:貼壁生長;形態(tài)特性:成纖維細(xì)胞;相關(guān)產(chǎn)品有:RPVSMC細(xì)胞、MRC5細(xì)胞、KYSE510細(xì)胞
NCIH1355 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:每周換液2次。;生長特性:懸浮生長;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:HMSC細(xì)胞、D341細(xì)胞、T. T細(xì)胞
GA10 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:每周2-3次;生長特性:懸浮生長;形態(tài)特性:淋巴母細(xì)胞;相關(guān)產(chǎn)品有:H-322細(xì)胞、HCT116/L細(xì)胞、TK+/- (clone 3.7.2C)細(xì)胞
LK-2 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁或懸浮,詳見產(chǎn)品說明書部分;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:RAEC細(xì)胞、COLO 829細(xì)胞、A1847細(xì)胞
STBCi322-A-1 Cells(提供STR鑒定圖譜)
VMM-5A Cells;背景說明:黑色素瘤;神經(jīng)節(jié)轉(zhuǎn)移;男性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:CC-LP-I細(xì)胞、AtT20細(xì)胞、PL-9細(xì)胞
Porcine Kidney-13 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2—1:4傳代,每周換液2—3次;生長特性:貼壁生長;形態(tài)特性:上皮細(xì)胞樣;相關(guān)產(chǎn)品有:H-1048細(xì)胞、P3HRI細(xì)胞、HPAF II細(xì)胞
BHP10-3 Cells;背景說明:甲狀腺乳頭狀癌;女性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:A375-SM細(xì)胞、MES23.5細(xì)胞、SKGT2細(xì)胞
S3-HeLa Cells;背景說明:該細(xì)胞是1955年由PuckTT,MarcusPI和CieciuraSJ建系的,含HPV-18序列;角蛋白陽性;可用于與染色體突變、細(xì)胞營養(yǎng)、集落形成相關(guān)的哺乳動(dòng)物細(xì)胞的克隆分析。;傳代方法:1:2傳代;生長特性:貼壁生長;形態(tài)特性:上皮樣;相關(guān)產(chǎn)品有:Hi-five細(xì)胞、RPTEC/TERT 1細(xì)胞、HNTEC細(xì)胞
J-774 Cells;背景說明:巨噬細(xì)胞;BALB/c;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:IMR 90細(xì)胞、A9細(xì)胞、Rat-1細(xì)胞
University of Michigan-Renal Carcinoma-2 Cells;背景說明:腎透明細(xì)胞癌;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:HT 1376.T細(xì)胞、OVCAR 433細(xì)胞、PANC 1005細(xì)胞
BT-474[BT474]人乳腺導(dǎo)管癌細(xì)胞代次低|培養(yǎng)基|送STR圖譜
hTERT-HME1 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁或懸浮,詳見產(chǎn)品說明書部分;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:A-673細(xì)胞、COLO 320 HSR細(xì)胞、NL-20細(xì)胞
P-19 Cells;背景說明:P19細(xì)胞株是從C3H/He小鼠中誘導(dǎo)的惡性畸胎瘤中建立的。該細(xì)胞在含有0.1mM的培養(yǎng)基中可高效率地克隆。該細(xì)胞具有多能性,在500nM維A酸誘導(dǎo)下可以分化成神經(jīng)和神經(jīng)膠質(zhì)樣細(xì)胞;在0.5%~1.0%二甲亞砜(DMSO)存在下,分化形成心臟和骨骼肌樣細(xì)胞,但不形成神經(jīng)或神經(jīng)膠質(zhì)樣細(xì)胞;在DMSO和維A酸同時(shí)存在時(shí),細(xì)胞的分化與只有維A酸一樣。;傳代方法:1:2傳代;生長特性:貼壁生長;形態(tài)特性:上皮樣;相關(guān)產(chǎn)品有:HPAF/CD18細(xì)胞、184A1細(xì)胞、Spodoptera frugiperda clone 9細(xì)胞
GM05384 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁或懸浮,詳見產(chǎn)品說明書部分;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:RWPE1細(xì)胞、MCF10-A細(xì)胞、SW403細(xì)胞
SK-N-BE(2)-M17 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁或懸浮,詳見產(chǎn)品說明書部分;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:MAntle cell VERona-1細(xì)胞、SNU398細(xì)胞、YH細(xì)胞
OV90 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2-1:3傳代,3-4天換液1次。;生長特性:貼壁生長;形態(tài)特性:上皮細(xì)胞;相關(guān)產(chǎn)品有:McG-1細(xì)胞、CHP 212細(xì)胞、rUCMSCs細(xì)胞
H-2030 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:3-1:4傳代;每周換液2-3次。;生長特性:貼壁生長;形態(tài)特性:上皮細(xì)胞樣;相關(guān)產(chǎn)品有:OCIAML4細(xì)胞、COLO-680N細(xì)胞、Helacyton gartleri細(xì)胞
KYSE 510 Cells;背景說明:食管鱗癌;女性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:MCA-38細(xì)胞、HMrSV5細(xì)胞、JIMT1細(xì)胞
CAL-62 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁或懸浮,詳見產(chǎn)品說明書部分;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:SUSM1細(xì)胞、MGHU1細(xì)胞、QBC-939細(xì)胞
BayGenomics ES cell line LST053 Cells(提供STR鑒定圖譜)
BayGenomics ES cell line XC295 Cells(提供STR鑒定圖譜)
CPTC-CDH1-3 Cells(提供STR鑒定圖譜)
MANSMA7-1B12 Cells(提供STR鑒定圖譜)
SC-3 A1b Cells(提供STR鑒定圖譜)
HP-mock (neo/puro) Cells(提供STR鑒定圖譜)
" "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=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=7842014; DOI=10.1038/ng1094-155
Guan X.-Y., Meltzer P.S., Dalton W.S., Trent J.M.
Identification of cryptic sites of DNA sequence amplification in human breast cancer by chromosome microdissection.
Nat. Genet. 8:155-161(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=11343771; DOI=10.1016/S0165-4608(00)00387-3
Rummukainen J., Kytola S., Karhu R., Farnebo F., Larsson C., Isola J.J.
Aberrations of chromosome 8 in 16 breast cancer cell lines by comparative genomic hybridization, fluorescence in situ hybridization, and spectral karyotyping.
Cancer Genet. Cytogenet. 126:1-7(2001)
PubMed=11687795; DOI=10.1038/ng754
Snijders A.M., Nowak N.J., Segraves R., Blackwood S., Brown N., Conroy J., Hamilton G., Hindle A.K., Huey B., Kimura K., Law S., Myambo K., Palmer J., Ylstra B., Yue J.P., Gray J.W., Jain A.N., Pinkel D., Albertson D.G.
Assembly of microarrays for genome-wide measurement of DNA copy number.
Nat. Genet. 29:263-264(2001)
PubMed=12353263; DOI=10.1002/gcc.10107
Popovici C., Basset C., Bertucci F., Orsetti B., Adelaide J., Mozziconacci M.-J., Conte N., Murati A., Ginestier C., Charafe-Jauffret E., Ethier S.P., Lafage-Pochitaloff M., Theillet C., Birnbaum D., Chaffanet M.
Reciprocal translocations in breast tumor cell lines: cloning of a t(3;20) that targets the FHIT gene.
Genes Chromosomes Cancer 35:204-218(2002)
PubMed=12800145; DOI=10.1002/gcc.10218
Adelaide J., Huang H.-E., Murati A., Alsop A.E., Orsetti B., Mozziconacci M.-J., Popovici C., Ginestier C., Letessier A., Basset C., Courtay-Cahen C., Jacquemier J., Theillet C., Birnbaum D., Edwards P.A.W., Chaffanet M.
A recurrent chromosome translocation breakpoint in breast and pancreatic cancer cell lines targets the neuregulin/NRG1 gene.
Genes Chromosomes Cancer 37:333-345(2003)
PubMed=16142302; DOI=10.3892/ijo.27.4.881
de Longueville F., Lacroix M., Barbuto A.-M., Bertholet V., Gallo D., Larsimont D., Marcq L., Zammatteo N., Boffe S., Leclercq G., Remacle J.
Molecular characterization of breast cancer cell lines by a low-density microarray.
Int. J. Oncol. 27:881-892(2005)
PubMed=16397213; DOI=10.1158/0008-5472.CAN-05-2853
Elstrodt F., Hollestelle A., Nagel J.H.A., Gorin M., Wasielewski M., van den Ouweland A.M.W., Merajver S.D., Ethier S.P., Schutte M.
BRCA1 mutation analysis of 41 human breast cancer cell lines reveals three new deleterious mutants.
Cancer Res. 66:41-45(2006)
PubMed=16195238; DOI=10.1093/carcin/bgi231
Hussain-Hakimjee E.A., Peng X.-J., Mehta R.R., Mehta R.G.
Growth inhibition of carcinogen-transformed MCF-12F breast epithelial cells and hormone-sensitive BT-474 breast cancer cells by 1alpha-hydroxyvitamin D5.
Carcinogenesis 27:551-559(2006)
PubMed=16417655; DOI=10.1186/bcr1370; PMCID=PMC1413994
Shadeo A., Lam W.L.
Comprehensive copy number profiles of breast cancer cell model genomes.
Breast Cancer Res. 8:R9.1-R9.14(2006)
PubMed=16541312; DOI=10.1007/s10549-006-9186-z
Wasielewski M., Elstrodt F., Klijn J.G.M., Berns E.M.J.J., Schutte M.
Thirteen new p53 gene mutants identified among 41 human breast cancer cell lines.
Breast Cancer Res. Treat. 99:97-101(2006)
PubMed=17157791; DOI=10.1016/j.ccr.2006.10.008; PMCID=PMC2730521
Neve R.M., Chin K., Fridlyand J., Yeh J., Baehner F.L., Fevr T., Clark L., Bayani N., Coppe J.-P., Tong F., Speed T., Spellman P.T., DeVries S., Lapuk A., Wang N.J., Kuo W.-L., Stilwell J.L., Pinkel D., Albertson D.G., Waldman F.M., McCormick F., Dickson R.B., Johnson M.D., Lippman M.E., Ethier S.P., Gazdar A.F., Gray J.W.
A collection of breast cancer cell lines for the study of functionally distinct cancer subtypes.
Cancer Cell 10:515-527(2006)
PubMed=17334996; DOI=10.1002/gcc.20438
Jonsson G., Staaf J., Olsson E., Heidenblad M., Vallon-Christersson J., Osoegawa K., de Jong P.J., Oredsson S.M., Ringner M., Hoglund M., Borg A.
High-resolution genomic profiles of breast cancer cell lines assessed by tiling BAC array comparative genomic hybridization.
Genes Chromosomes Cancer 46:543-558(2007)
PubMed=18516279; DOI=10.1016/j.molonc.2007.02.004; PMCID=PMC2391005
Kenny P.A., Lee G.Y., Myers C.A., Neve R.M., Semeiks J.R., Spellman P.T., Lorenz K., Lee E.H., Barcellos-Hoff M.H., Petersen O.W., Gray J.W., Bissell M.J.
The morphologies of breast cancer cell lines in three-dimensional assays correlate with their profiles of gene expression.
Mol. Oncol. 1:84-96(2007)
PubMed=18386134; DOI=10.1007/s10585-008-9169-z
Hughes L., Malone C., Chumsri S., Burger A.M., McDonnell S.
Characterisation of breast cancer cell lines and establishment of a novel isogenic subclone to study migration, invasion and tumourigenicity.
Clin. Exp. Metastasis 25:549-557(2008)
PubMed=19582160; DOI=10.1371/journal.pone.0006146; PMCID=PMC2702084
Kao J., Salari K., Bocanegra M., Choi Y.-L., Girard L., Gandhi J., Kwei K.A., Hernandez-Boussard T., Wang P., Gazdar A.F., Minna J.D., Pollack J.R.
Molecular profiling of breast cancer cell lines defines relevant tumor models and provides a resource for cancer gene discovery.
PLoS ONE 4:E6146-E6146(2009)
PubMed=19671800; DOI=10.1158/0008-5472.CAN-08-4490
Liu L., Greger J.G., Shi H., Liu Y., Greshock J., Annan R., Halsey W., Sathe G.M., Martin A.-M., Gilmer T.M.
Novel mechanism of l resistance in HER2-positive breast tumor cells: activation of AXL.
Cancer Res. 69:6871-6878(2009)
PubMed=19727395; DOI=10.1371/journal.pone.0006888; PMCID=PMC2731225
Wadlow R.C., Wittner B.S., Finley S.A., Bergquist H., Upadhyay R., Finn S.P., Loda M., Mahmood U., Ramaswamy S.
Systems-level modeling of cancer-fibroblast interaction.
PLoS ONE 4:E6888-E6888(2009)
DOI=10.25904/1912/1434
Morrison B.J.
Breast cancer stem cells: tumourspheres and implications for therapy.
Thesis PhD (2010); Griffith University; Brisbane; Australia
PubMed=19593635; DOI=10.1007/s10549-009-0460-8
Hollestelle A., Nagel J.H.A., Smid M., Lam S., Elstrodt F., Wasielewski M., Ng S.S., French P.J., Peeters J.K., Rozendaal M.J., Riaz M., Koopman D.G., ten Hagen T.L.M., de Leeuw B.H.C.G.M., Zwarthoff E.C., Teunisse A.F.A.S., van der Spek P.J., Klijn J.G.M., Dinjens W.N.M., Ethier S.P., Clevers H.C., Jochemsen A.G., den Bakker M.A., Foekens J.A., Martens J.W.M., Schutte M.
Distinct gene mutation profiles among luminal-type and basal-type breast cancer cell lines.
Breast Cancer Res. Treat. 121:53-64(2010)
PubMed=20070913; DOI=10.1186/1471-2407-10-15; PMCID=PMC2836299
Tsuji K., Kawauchi S., Saito S., Furuya T., Ikemoto K., Nakao M., Yamamoto S., Oka M., Hirano T., Sasaki K.
Breast cancer cell lines carry cell line-specific genomic alterations that are distinct from aberrations in breast cancer tissues: comparison of the CGH profiles between cancer cell lines and primary cancer tissues.
BMC Cancer 10:15.1-15.10(2010)
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=21247443; DOI=10.1186/gb-2011-12-1-r6; PMCID=PMC3091304
Edgren H., Murumagi A., Kangaspeska S., Nicorici D., Hongisto V., Kleivi K., Rye I.H., Nyberg S., Wolf M., Borresen-Dale A.-L., Kallioniemi O.-P.
Identification of fusion genes in breast cancer by paired-end RNA-sequencing.
Genome Biol. 12:R6.1-R6.13(2011)
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)
PubMed=22585861; DOI=10.1158/2159-8290.CD-11-0224; PMCID=PMC5057396
Marcotte R., Brown K.R., Suarez Saiz F.J., Sayad A., Karamboulas K., Krzyzanowski P.M., Sircoulomb F., Medrano M., Fedyshyn Y., Koh J.L.-Y., van Dyk D., Fedyshyn B., Luhova M., Brito G.C., Vizeacoumar F.J., Vizeacoumar F.S., Datti A., Kasimer D., Buzina A., Mero P., Misquitta C., Normand J., Haider M., Ketela T., Wrana J.L., Rottapel R., Neel B.G., Moffat J.
Essential gene profiles in breast, pancreatic, and ovarian cancer cells.
Cancer Discov. 2:172-189(2012)
PubMed=23151021; DOI=10.1186/1471-2164-13-619; PMCID=PMC3546428
Grigoriadis A., Mackay A., Noel E., Wu P.-J., Natrajan R., Frankum J., Reis-Filho J.S., Tutt A.
Molecular characterisation of cell line models for triple-negative breast cancers.
BMC Genomics 13:619.1-619.14(2012)
PubMed=23601657; DOI=10.1186/bcr3415; PMCID=PMC3672661
Riaz M., van Jaarsveld M.T.M., Hollestelle A., Prager-van der Smissen W.J.C., Heine A.A.J., Boersma A.W.M., Liu J.-J., Helmijr J.C.A., Ozturk B., Smid M., Wiemer E.A.C., Foekens J.A., Martens J.W.M.
miRNA expression profiling of 51 human breast cancer cell lines reveals subtype and driver mutation-specific miRNAs.
Breast Cancer Res. 15:R33.1-R33.17(2013)
PubMed=23671654; DOI=10.1371/journal.pone.0063056; PMCID=PMC3646030
Lu Y.-H., Soong T.D., Elemento O.
A novel approach for characterizing microsatellite instability in cancer cells.
PLoS ONE 8:E63056-E63056(2013)
PubMed=24094812; DOI=10.1016/j.ccr.2013.08.020; PMCID=PMC3931310
Timmerman L.A., Holton T., Yuneva M., Louie R.J., Padro M., Daemen A., Hu M., Chan D.A., Ethier S.P., van 't Veer L.J., Polyak K., McCormick F., Gray J.W.
Glutamine sensitivity analysis identifies the xCT antiporter as a common triple-negative breast tumor therapeutic target.
Cancer Cell 24:450-465(2013)
PubMed=24162158; DOI=10.1007/s10549-013-2743-3; PMCID=PMC3832776
Prat A., Karginova O., Parker J.S., Fan C., He X.-P., Bixby L.M., Harrell J.C., Roman E., Adamo B., Troester M.A., Perou C.M.
Characterization of cell lines derived from breast cancers and normal mammary tissues for the study of the intrinsic molecular subtypes.
Breast Cancer Res. Treat. 142:237-255(2013)
PubMed=24176112; DOI=10.1186/gb-2013-14-10-r110; PMCID=PMC3937590
Daemen A., Griffith O.L., Heiser L.M., Wang N.J., Enache O.M., Sanborn Z., Pepin F., Durinck S., Korkola J.E., Griffith M., Hur J.S., Huh N., Chung J., Cope L., Fackler M.J., Umbricht C.B., Sukumar S., Seth P., Sume V.P., Jakkula L.R., Lu Y.-L., Mills G.B., Cho R.J., Collisson E.A., van 't Veer L.J., Spellman P.T., Gray J.W.
Modeling precision treatment of breast cancer.
Genome Biol. 14:R110.1-R110.14(2013)
PubMed=24389870; DOI=10.1038/srep03576; PMCID=PMC3880960
Strauch M., Ludke A., Munch D., Laudes T., Galizia C.G., Martinelli E., Lavra L., Paolesse R., Ulivieri A., Catini A., Capuano R., Di Natale C.
More than apples and oranges -- detecting cancer with a fruit fly's antenna.
Sci. Rep. 4:3576-3576(2014)
PubMed=24456987; DOI=10.1186/1755-8166-7-8; PMCID=PMC3914704
Rondon-Lagos M., Verdun Di Cantogno L., Marchio C., Rangel N., Payan-Gomez C., Gugliotta P., Botta C., Bussolati G., Ramirez-Clavijo S.R., Pasini B., Sapino A.
Differences and homologies of chromosomal alterations within and between breast cancer cell lines: a clustering analysis.
Mol. Cytogenet. 7:8.1-8.14(2014)
PubMed=25960936; DOI=10.4161/21624011.2014.954893; PMCID=PMC4355981
Boegel S., Lower M., Bukur T., Sahin U., Castle J.C.
A catalog of HLA type, HLA expression, and neo-epitope candidates in human cancer cell lines.
OncoImmunology 3:e954893.1-e954893.12(2014)
PubMed=25984343; DOI=10.1038/sdata.2014.35; PMCID=PMC4432652
Cowley G.S., Weir B.A., Vazquez F., Tamayo P., Scott J.A., Rusin S., East-Seletsky A., Ali L.D., Gerath W.F.J., Pantel S.E., Lizotte P.H., Jiang G.-Z., Hsiao J., Tsherniak A., Dwinell E., Aoyama S., Okamoto M., Harrington W., Gelfand E.T., Green T.M., Tomko M.J., Gopal S., Wong T.C., Li H.-B., Howell S., Stransky N., Liefeld T., Jang D., Bistline J., Meyers B.H., Armstrong S.A., Anderson K.C., Stegmaier K., Reich M., Pellman D., Boehm J.S., Mesirov J.P., Golub T.R., Root D.E., Hahn W.C.
Parallel genome-scale loss of function screens in 216 cancer cell lines for the identification of context-specific genetic dependencies.
Sci. Data 1:140035-140035(2014)
PubMed=25485619; DOI=10.1038/nbt.3080
Klijn C., Durinck S., Stawiski E.W., Haverty P.M., Jiang Z.-S., Liu H.-B., Degenhardt J., Mayba O., Gnad F., Liu J.-F., Pau G., Reeder J., Cao Y., Mukhyala K., Selvaraj S.K., Yu M.-M., Zynda G.J., Brauer M.J., Wu T.D., Gentleman R.C., Manning G., Yauch R.L., Bourgon R., Stokoe D., Modrusan Z., Neve R.M., de Sauvage F.J., Settleman J., Seshagiri S., Zhang Z.-M.
A comprehensive transcriptional portrait of human cancer cell lines.
Nat. Biotechnol. 33:306-312(2015)
PubMed=25877200; DOI=10.1038/nature14397
Yu M., Selvaraj S.K., Liang-Chu M.M.Y., Aghajani S., Busse M., Yuan J., Lee G., Peale F.V., Klijn C., Bourgon R., Kaminker J.S., Neve R.M.
A resource for cell line authentication, annotation and quality control.
Nature 520:307-311(2015)
PubMed=25892236; DOI=10.1016/j.celrep.2015.03.050; PMCID=PMC4425736
Lawrence R.T., Perez E.M., Hernandez D., Miller C.P., Haas K.M., Irie H.Y., Lee S.-I., Blau C.A., Villen J.
The proteomic landscape of triple-negative breast cancer.
Cell Rep. 11:630-644(2015)
PubMed=26218769; DOI=10.1016/j.jchromb.2015.07.021
Willmann L., Schlimpert M., Halbach S., Erbes T., Stickeler E., Kammerer B.
Metabolic profiling of breast cancer: differences in central metabolism between subtypes of breast cancer cell lines.
J. Chromatogr. B 1000:95-104(2015)
PubMed=26589293; DOI=10.1186/s13073-015-0240-5; PMCID=PMC4653878
Scholtalbers J., Boegel S., Bukur T., Byl M., Goerges S., Sorn P., Loewer M., Sahin U., Castle J.C.
TCLP: an online cancer cell line catalogue integrating HLA type, predicted neo-epitopes, virus and gene expression.
Genome Med. 7:118.1-118.7(2015)
PubMed=26865974; DOI=10.1186/s13742-016-0113-x; PMCID=PMC4748558
Ciotlos S., Mao Q., Zhang R.Y., Li Z.-Y., Chin R., Gulbahce N., Liu S.J., Drmanac R., Peters B.A.
Whole genome sequence analysis of BT-474 using Complete Genomics' standard and long fragment read technologies.
GigaScience 5:8.1-8.17(2016)
PubMed=27362937; DOI=10.1371/journal.pone.0157290; PMCID=PMC4928811
Carrier M., Joint M., Lutzing R., Page A., Rochette-Egly C.
Phosphoproteome and transcriptome of RA-responsive and RA-resistant breast cancer cell lines.
PLoS ONE 11:E0157290-E0157290(2016)
PubMed=27378269; DOI=10.1186/s12885-016-2452-5; PMCID=PMC4932681
Kangaspeska S., Hultsch S., Jaiswal A., Edgren H., Mpindi J.P., Eldfors S., Bruck O., Aittokallio T., Kallioniemi O.-P.
Systematic drug screening reveals specific vulnerabilities and co-resistance patterns in endocrine-resistant breast cancer.
BMC Cancer 16:378.1-378.17(2016)
PubMed=27397505; DOI=10.1016/j.cell.2016.06.017; PMCID=PMC4967469
Iorio F., Knijnenburg T.A., Vis D.J., Bignell G.R., Menden M.P., Schubert M., Aben N., Goncalves E., Barthorpe S., Lightfoot H., Cokelaer T., Greninger P., van Dyk E., Chang H., de Silva H., Heyn H., Deng X.-M., Egan R.K., Liu Q.-S., Miroo T., Mitropoulos X., Richardson L., Wang J.-H., Zhang T.-H., Moran S., Sayols S., Soleimani M., Tamborero D., Lopez-Bigas N., Ross-Macdonald P., Esteller M., Gray N.S., Haber D.A., Stratton M.R., Benes C.H., Wessels L.F.A., Saez-Rodriguez J., McDermott U., Garnett M.J.
A landscape of pharmacogenomic interactions in cancer.
Cell 166:740-754(2016)
PubMed=28196595; DOI=10.1016/j.ccell.2017.01.005; PMCID=PMC5501076
Li J., Zhao W., Akbani R., Liu W.-B., Ju Z.-L., Ling S.-Y., Vellano C.P., Roebuck P., Yu Q.-H., Eterovic A.K., Byers L.A., Davies M.A., Deng W.-L., Gopal Y.N.V., Chen G., von Euw E.M., Slamon D.J., Conklin D., Heymach J.V., Gazdar A.F., Minna J.D., Myers J.N., Lu Y.-L., Mills G.B., Liang H.
Characterization of human cancer cell lines by reverse-phase protein arrays.
Cancer Cell 31:225-239(2017)
PubMed=28287265; DOI=10.1021/acs.jproteome.6b00470; PMCID=PMC5557415
Yen T.-Y., Bowen S., Yen R., Piryatinska A., Macher B.A., Timpe L.C.
Glycoproteins in claudin-low breast cancer cell lines have a unique expression profile.
J. Proteome Res. 16:1391-1400(2017)
PubMed=28889351; DOI=10.1007/s10549-017-4496-x
Saunus J.M., Smart C.E., Kutasovic J.R., Johnston R.L., Kalita-de Croft P., Miranda M., Rozali E.N., Vargas A.C., Reid L.E., Lorsy E., Cocciardi S., Seidens T., McCart Reed A.E., Dalley A.J., Wockner L.F., Johnson J., Sarkar D., Askarian-Amiri M.E., Simpson P.T., Khanna K.K., Chenevix-Trench G., Al-Ejeh F., Lakhani S.R.
Multidimensional phenotyping of breast cancer cell lines to guide preclinical research.
Breast Cancer Res. Treat. 167:289-301(2018)
PubMed=30894373; DOI=10.1158/0008-5472.CAN-18-2747; PMCID=PMC6445675
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)"
關(guān)鍵字: BT-474[BT474]人乳腺導(dǎo)管癌細(xì);復(fù)蘇細(xì)胞系;細(xì)胞STR鑒定報(bào)告;細(xì)胞STR鑒定圖譜;ATCC|DSMZ細(xì)胞庫;
公司提供ATCC、DSMZ、ECACC、NCI-DTP、RCB(Riken)等細(xì)胞系