"COLO 205人結(jié)腸癌復(fù)蘇細(xì)胞保種中心|帶STR證書(shū)
傳代比例:1:2-1:4(首次傳代建議1:2)
生長(zhǎng)特性:貼壁生長(zhǎng)
貼壁消化難題:1,先用PBS 把細(xì)胞洗兩遍,使瓶?jī)?nèi)沒(méi)有血清了,減少對(duì)胰酶的中和,然后用新配的0.25%的胰酶加入3ml左右,放在37度,然后可以在細(xì)胞有些消化下來(lái)時(shí),拿著瓶口,運(yùn)用手腕的力量輕輕震蕩瓶?jī)?nèi)體,這樣細(xì)胞很快就下來(lái)了,還不需要吹打,分散也均勻;2,成團(tuán)、絮狀:消化里加入eda可以減少細(xì)胞成團(tuán)的現(xiàn)象,血清可以終止胰酶的作用,如果是進(jìn)口血清的話也能終止eda的作用。用胰酶消化后胰酶可以倒掉,也可以不倒,直接加血清終止,如果消化中加入了eda的話,就要將消化倒干凈,如果細(xì)胞貼壁要求不是很?chē)?yán)格的話,一般不需要進(jìn)行離心。鼻咽癌細(xì)胞的貼壁能力很強(qiáng),用0.5%胰酶(含0.1%EDA)一般要消化12~15min。用PBS洗滌時(shí)要洗凈殘余的培養(yǎng)基,加入胰酶后在培養(yǎng)箱中消化(避免細(xì)胞室溫下受損以及在此溫度時(shí)胰酶活性Zui強(qiáng))至細(xì)胞收縮變圓(可顯微鏡下觀察)且有少許細(xì)胞脫落(有流下來(lái)的趨勢(shì)),隨后立即棄去胰酶(如果脫落的細(xì)胞很多且需要大量細(xì)胞實(shí)驗(yàn),則不能棄去胰酶),加入培養(yǎng)基仔細(xì)吹打(不能用無(wú)血清培養(yǎng)基或者PBS替代,否則細(xì)胞聚集成團(tuán)塊或絮狀)。一般我都離心一次棄去上清(去除殘留的胰酶及漂浮的死細(xì)胞或細(xì)胞碎片);消化過(guò)度:馬上用培養(yǎng)基中和,用吸管吹打細(xì)胞,收集全部的細(xì)胞到以無(wú)菌的離心管中800RPM 3分鐘。棄上清,用全培重懸,換新的培養(yǎng)瓶繼續(xù)培養(yǎng),狀態(tài)不HAO的細(xì)胞在培養(yǎng)的過(guò)程中會(huì)死亡脫落,在換的時(shí)候可以清除掉!
換液周期:每周2-3次
P3J.HR1K Cells;背景說(shuō)明:詳見(jiàn)相關(guān)文獻(xiàn)介紹;傳代方法:每2-3天換液;生長(zhǎng)特性:懸浮生長(zhǎng) ;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
FM-88 Cells;背景說(shuō)明:詳見(jiàn)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(zhǎng)特性:貼壁或懸浮,詳見(jiàn)產(chǎn)品說(shuō)明書(shū)部分;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:KM H-2細(xì)胞、MC26細(xì)胞、N1E115細(xì)胞
FBHE Cells;背景說(shuō)明:詳見(jiàn)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(zhǎng)特性:貼壁或懸浮,詳見(jiàn)產(chǎn)品說(shuō)明書(shū)部分;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:NCI-H1781細(xì)胞、A2780/CP細(xì)胞、MHCC97L細(xì)胞
COLO 205人結(jié)腸癌復(fù)蘇細(xì)胞保種中心|帶STR證書(shū)
背景信息:該細(xì)胞系是1957年由T.U.Sle等從患有結(jié)腸癌的70歲男性白人的腹水中分離的。該病人在取腹水樣前已用5-尿嘧啶治療4~6周。角蛋白免疫過(guò)氧化物酶染色陽(yáng)性;產(chǎn)生A、IL10。
【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(yíng)養(yǎng)液、細(xì)胞瓶的擺放位置、滅菌處理程序、開(kāi)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(lái)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(wèn)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(méi)。當(dāng)時(shí)可后悔沒(méi)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(guò)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。
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(lái)源說(shuō)明:細(xì)胞主要來(lái)源ATCC、ECACC、DSMZ、RIKEN等細(xì)胞庫(kù)
Mv 1 Lu Cells;背景說(shuō)明:詳見(jiàn)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(zhǎng)特性:貼壁或懸浮,詳見(jiàn)產(chǎn)品說(shuō)明書(shū)部分;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:Sf-21細(xì)胞、C4-1細(xì)胞、RL-65細(xì)胞
L-132 Cells;背景說(shuō)明:胚肺;女性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長(zhǎng)特性:貼壁;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:CAL851細(xì)胞、EVSA/T細(xì)胞、OCI/AML5細(xì)胞
AM-38 Cells;背景說(shuō)明:詳見(jiàn)相關(guān)文獻(xiàn)介紹;傳代方法:1:2傳代;生長(zhǎng)特性:貼壁生長(zhǎng);形態(tài)特性:上皮細(xì)胞;相關(guān)產(chǎn)品有:NRK52E細(xì)胞、EBNA-293細(xì)胞、HN-6細(xì)胞
Sf21 Cells;背景說(shuō)明:詳見(jiàn)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(zhǎng)特性:貼壁或懸浮,詳見(jiàn)產(chǎn)品說(shuō)明書(shū)部分;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:U-251_MG細(xì)胞、NHRF細(xì)胞、HT-3細(xì)胞
COLO 205人結(jié)腸癌復(fù)蘇細(xì)胞保種中心|帶STR證書(shū)
物種來(lái)源:人源、鼠源等其它物種來(lái)源
形態(tài)特性:上皮細(xì)胞樣
很多朋友討論細(xì)胞培養(yǎng)問(wèn)題,見(jiàn)到很多很HAO的經(jīng)驗(yàn)總結(jié),這里說(shuō)一些我個(gè)人的經(jīng)驗(yàn),因?yàn)橐恍┍容^殊的原因,我自己培養(yǎng)接觸過(guò)近300種細(xì)胞,常用于做實(shí)驗(yàn)的,累積有百余種,可以說(shuō)遇到過(guò)許多各式各樣古怪的細(xì)胞。這里挑細(xì)胞消化開(kāi)始做我的第一篇專題,并不是因?yàn)榧?xì)胞消化Zui重要,而是近期看到大家頻繁討論這個(gè)話題,我就拋磚引玉,下面幾點(diǎn)拙見(jiàn),可能與其它朋友總結(jié)的一些經(jīng)驗(yàn)有點(diǎn)出入,僅供大家參考。許多同學(xué)對(duì)細(xì)胞消化做了許多研究,得出了很多有價(jià)值的經(jīng)驗(yàn),也見(jiàn)到很多人的困惑。其實(shí)細(xì)胞培養(yǎng),尤其是細(xì)胞系的培養(yǎng),就消化而言,不是太難,做得多了,善于總結(jié)經(jīng)驗(yàn),就能把細(xì)胞越養(yǎng)越HAO。一般的程序步驟,細(xì)節(jié)操作,我這里就不講了,只講一些基本操作背后的知識(shí),如果不對(duì)之處,歡迎指正,總結(jié)下來(lái),細(xì)胞培養(yǎng)中消化很重要,但其實(shí)消化并不是細(xì)胞培養(yǎng)的關(guān)鍵所在(雖然很重要),關(guān)鍵所在是細(xì)胞來(lái)源,血清質(zhì)量和水源(自己配制溶的話)。我看到版上許多人養(yǎng)細(xì)胞遇到各種各樣的問(wèn)題,很多時(shí)候boleneck沒(méi)有找到,雖然通過(guò)其它方法有所改善,但仍然是事倍功半。因?yàn)槿藗兺⒁庾约旱牟僮鳎傆X(jué)得自己沒(méi)有經(jīng)驗(yàn),而忽視試劑,溶尤其是細(xì)胞的質(zhì)量,后者其實(shí)才是許多細(xì)胞培養(yǎng)實(shí)驗(yàn)室常見(jiàn)的問(wèn)題。
Mc Coy Cells;背景說(shuō)明:成纖維 Cells;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長(zhǎng)特性:貼壁;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:FHs74 Int細(xì)胞、526細(xì)胞、KASUMI1細(xì)胞
KU 812F Cells;背景說(shuō)明:慢性粒細(xì)胞白血病;男性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長(zhǎng)特性:懸浮;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:RPMI-8226S細(xì)胞、MRC-9細(xì)胞、HCC1171細(xì)胞
VM-CUB1 Cells;背景說(shuō)明:詳見(jiàn)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(zhǎng)特性:貼壁或懸浮,詳見(jiàn)產(chǎn)品說(shuō)明書(shū)部分;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:HSC4細(xì)胞、MSCs(mUCMSCs)細(xì)胞、SW-948細(xì)胞
HLE-SRA-01/04 Cells;背景說(shuō)明:晶狀體;上皮細(xì)胞;SV40轉(zhuǎn)化;男性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長(zhǎng)特性:貼壁;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:Panc2.03細(xì)胞、CEMC7細(xì)胞、NTera 2細(xì)胞
NCI-H2444 Cells;背景說(shuō)明:詳見(jiàn)相關(guān)文獻(xiàn)介紹;傳代方法:1:3-1:4傳代;每周換液2次。;生長(zhǎng)特性:貼壁生長(zhǎng);形態(tài)特性:上皮樣;相關(guān)產(chǎn)品有:MPC-5細(xì)胞、NCI-H2009細(xì)胞、KPL4細(xì)胞
B16-F0 Cells;背景說(shuō)明:詳見(jiàn)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(zhǎng)特性:貼壁或懸浮,詳見(jiàn)產(chǎn)品說(shuō)明書(shū)部分;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:Hs737T細(xì)胞、AK細(xì)胞、HOEC細(xì)胞
KS-1 [Human glioblastoma] Cells;背景說(shuō)明:詳見(jiàn)相關(guān)文獻(xiàn)介紹;傳代方法:1:2傳代;生長(zhǎng)特性:貼壁生長(zhǎng);形態(tài)特性:成纖維細(xì)胞;相關(guān)產(chǎn)品有:BEL 7405細(xì)胞、BC-021細(xì)胞、TE-7細(xì)胞
SNU-423 Cells;背景說(shuō)明:詳見(jiàn)相關(guān)文獻(xiàn)介紹;傳代方法:1:2傳代;生長(zhǎng)特性:貼壁生長(zhǎng);形態(tài)特性:上皮樣;相關(guān)產(chǎn)品有:CNE-2細(xì)胞、SRA01/04 (HLE)細(xì)胞、CTLA4 Ig-24細(xì)胞
DSL-6A-C1 Cells;背景說(shuō)明:胰腺癌;雄性;Lewis;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長(zhǎng)特性:貼壁;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:HTh 74細(xì)胞、SW-1271細(xì)胞、HMEC細(xì)胞
WEHI-3 Cells;背景說(shuō)明:白血??;BALB/c;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長(zhǎng)特性:懸浮;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:BERH-2細(xì)胞、PC-12細(xì)胞、SKGT4細(xì)胞
H4-II-E Cells;背景說(shuō)明:詳見(jiàn)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(zhǎng)特性:貼壁或懸浮,詳見(jiàn)產(chǎn)品說(shuō)明書(shū)部分;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:Hmy.2 CIR細(xì)胞、PANC 203細(xì)胞、624細(xì)胞
H676B Cells;背景說(shuō)明:詳見(jiàn)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(zhǎng)特性:貼壁或懸浮,詳見(jiàn)產(chǎn)品說(shuō)明書(shū)部分;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:CEM T4細(xì)胞、AN3細(xì)胞、ROS1728細(xì)胞
Ishikawa Cells;背景說(shuō)明:詳見(jiàn)相關(guān)文獻(xiàn)介紹;傳代方法:1:3傳代,3-4天換液一次;生長(zhǎng)特性:貼壁生長(zhǎng);形態(tài)特性:上皮樣;相關(guān)產(chǎn)品有:C166細(xì)胞、CCD19Lu細(xì)胞、SUM-102PT細(xì)胞
RPMI.8226 Cells;背景說(shuō)明:來(lái)源于一位61歲的男性漿細(xì)胞瘤患者;可產(chǎn)生免疫球蛋白輕鏈,未檢測(cè)到重鏈。;傳代方法:按1:2傳代,5-6小時(shí)可以看到細(xì)胞分裂;生長(zhǎng)特性:懸浮生長(zhǎng);形態(tài)特性:淋巴母細(xì)胞樣;相關(guān)產(chǎn)品有:NCIH250細(xì)胞、KYSE 50細(xì)胞、KMB 17細(xì)胞
Acanthosis Nigricans 3rd attempt-CArcinoma Cells;背景說(shuō)明:AN3CA細(xì)胞建系于1964年。它衍生于子宮內(nèi)膜癌患者淋巴結(jié)轉(zhuǎn)移組織,具有癌細(xì)胞的基本特性,能在體外長(zhǎng)期傳代培養(yǎng),接種實(shí)驗(yàn)動(dòng)物產(chǎn)生明顯腫瘤。但細(xì)胞的生物學(xué)特性及超微結(jié)構(gòu)尚未深入研究,僅發(fā)現(xiàn)該細(xì)胞系促黑激素合成為陰性。細(xì)胞常用于人子宮內(nèi)膜癌細(xì)胞生物學(xué)及其相關(guān)特性研究。;傳代方法:1:2傳代;生長(zhǎng)特性:貼壁生長(zhǎng);形態(tài)特性:上皮樣;相關(guān)產(chǎn)品有:U251細(xì)胞、SNU1040細(xì)胞、MLFC細(xì)胞
OV2008 Cells;背景說(shuō)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(zhǎng)特性:貼壁;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:NS1-Ag4/1細(xì)胞、HRC-99細(xì)胞、NCI-H727細(xì)胞
HEY-A8 Cells;背景說(shuō)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(zhǎng)特性:貼壁;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:H1395細(xì)胞、SNU520細(xì)胞、CHO cell clone K1細(xì)胞
COLO 205人結(jié)腸癌復(fù)蘇細(xì)胞保種中心|帶STR證書(shū)
Abcam HCT 116 TSC1 KO Cells(提供STR鑒定圖譜)
AG08543 Cells(提供STR鑒定圖譜)
BayGenomics ES cell line HMA455 Cells(提供STR鑒定圖譜)
BayGenomics ES cell line XB632 Cells(提供STR鑒定圖譜)
BoPr-49 Cells(提供STR鑒定圖譜)
CNS1-hiPSC5 Cells(提供STR鑒定圖譜)
DA03768 Cells(提供STR鑒定圖譜)
Ff-XT18s03 Cells(提供STR鑒定圖譜)
GM08776 Cells(提供STR鑒定圖譜)
MV4-11 Cells;背景說(shuō)明:詳見(jiàn)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(zhǎng)特性:貼壁或懸浮,詳見(jiàn)產(chǎn)品說(shuō)明書(shū)部分;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:EBTr (NBL-4)細(xì)胞、AC16 [Human hybrid]細(xì)胞、SKLU01細(xì)胞
HCC-2108 Cells;背景說(shuō)明:詳見(jiàn)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(zhǎng)特性:貼壁或懸浮,詳見(jiàn)產(chǎn)品說(shuō)明書(shū)部分;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:Human Embryonic Skin細(xì)胞、N-9細(xì)胞、KYSE-520細(xì)胞
COR-L279 Cells;背景說(shuō)明:詳見(jiàn)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(zhǎng)特性:貼壁或懸浮,詳見(jiàn)產(chǎn)品說(shuō)明書(shū)部分;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:NS1細(xì)胞、Caov-4細(xì)胞、HCC0015細(xì)胞
Centre Antoine Lacassagne-62 Cells;背景說(shuō)明:詳見(jiàn)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(zhǎng)特性:貼壁或懸浮,詳見(jiàn)產(chǎn)品說(shuō)明書(shū)部分;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:MESSA細(xì)胞、IHC-ST1細(xì)胞、CEM-CCRF (CAMR)細(xì)胞
SK-RC 42 Cells;背景說(shuō)明:詳見(jiàn)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(zhǎng)特性:貼壁或懸浮,詳見(jiàn)產(chǎn)品說(shuō)明書(shū)部分;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:SW 13細(xì)胞、Hs 870.T細(xì)胞、USMC細(xì)胞
BCaP-37 Cells;背景說(shuō)明:源自一位48歲女性乳癌患者。;傳代方法:消化3-5分鐘,1:2,3天內(nèi)可長(zhǎng)滿;生長(zhǎng)特性:貼壁生長(zhǎng);形態(tài)特性:上皮樣;相關(guān)產(chǎn)品有:HCT-FET細(xì)胞、High Five細(xì)胞、H22-H8D8細(xì)胞
Ba/F3 EGFR-L718V Cells(提供STR鑒定圖譜)
CEMC7 Cells;背景說(shuō)明:急性T淋巴細(xì)胞白血病;女性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長(zhǎng)特性:懸浮;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:HPDLF細(xì)胞、Jijoye細(xì)胞、H.Ep. #2細(xì)胞
MS 751 Cells;背景說(shuō)明:這株細(xì)胞是J. Sykes于1974年建立的(參考ATCC HTB-33)。有報(bào)告稱MS751細(xì)胞含有人乳頭狀瘤病毒18 (HPV-18)序列。[22995] [23180]后來(lái)發(fā)現(xiàn)MS751細(xì)胞包含HPV-45基因組的一部分,而其中E6/E7區(qū)域表達(dá)呈poly(A)+RNA的形式。[49721];傳代方法:1:2傳代;生長(zhǎng)特性:貼壁生長(zhǎng);形態(tài)特性:上皮細(xì)胞樣;相關(guān)產(chǎn)品有:OVCA5細(xì)胞、BALB 3T3 clone A31細(xì)胞、NCI-H520細(xì)胞
L929(NCTC) Cells;背景說(shuō)明:詳見(jiàn)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(zhǎng)特性:貼壁或懸浮,詳見(jiàn)產(chǎn)品說(shuō)明書(shū)部分;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:C-26細(xì)胞、GP-293細(xì)胞、AHH1細(xì)胞
HPAC Cells;背景說(shuō)明:詳見(jiàn)相關(guān)文獻(xiàn)介紹;傳代方法:1:2傳代;生長(zhǎng)特性:貼壁生長(zhǎng);形態(tài)特性:上皮樣;相關(guān)產(chǎn)品有:JVM-3細(xì)胞、H2198細(xì)胞、YES2細(xì)胞
A549 ATCC Cells;背景說(shuō)明:詳見(jiàn)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(zhǎng)特性:貼壁或懸浮,詳見(jiàn)產(chǎn)品說(shuō)明書(shū)部分;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:ECC1細(xì)胞、NCI-H2023細(xì)胞、NCIH2122細(xì)胞
H810 Cells;背景說(shuō)明:詳見(jiàn)相關(guān)文獻(xiàn)介紹;傳代方法:1:2-1:6傳代,每周2-3次。;生長(zhǎng)特性:貼壁生長(zhǎng);形態(tài)特性:上皮樣;相關(guān)產(chǎn)品有:C-6細(xì)胞、L-929細(xì)胞、SW 756細(xì)胞
UWB1.289+BRCA1 Cells;背景說(shuō)明:詳見(jiàn)相關(guān)文獻(xiàn)介紹;傳代方法:1:2傳代;生長(zhǎng)特性:貼壁生長(zhǎng) ;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:Capan 1細(xì)胞、MDA-MB-435細(xì)胞、SUM149細(xì)胞
MDA-453 Cells;背景說(shuō)明:該細(xì)胞系由CailleauR在1976年從一名48歲的患有轉(zhuǎn)移性乳腺癌的白人女性的心包滲出液中分離建立的。該細(xì)胞表達(dá)FGF的受體。;傳代方法:1:2-1:4傳代;2-3天換液1次;生長(zhǎng)特性:貼壁生長(zhǎng);形態(tài)特性:上皮樣;多角形;相關(guān)產(chǎn)品有:JCA1細(xì)胞、CHP-100細(xì)胞、Caco-2/BBe 1細(xì)胞
GM19485 Cells(提供STR鑒定圖譜)
HAP1 INPP5A (-) 2 Cells(提供STR鑒定圖譜)
TE-1 Cells;背景說(shuō)明:詳見(jiàn)相關(guān)文獻(xiàn)介紹;傳代方法:消化3-5分鐘。1:2。3天內(nèi)可長(zhǎng)滿。;生長(zhǎng)特性:貼壁生長(zhǎng);形態(tài)特性:上皮樣;相關(guān)產(chǎn)品有:OC316細(xì)胞、Sf-21細(xì)胞、HCC-1395細(xì)胞
NRK49F Cells;背景說(shuō)明:腎;成纖維細(xì)胞;自發(fā)永生;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長(zhǎng)特性:貼壁;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:SN4741細(xì)胞、GM04678細(xì)胞、3T3-L1 ad細(xì)胞
NIH:OVCAR-5 Cells;背景說(shuō)明:卵巢癌;腹水轉(zhuǎn)移;女性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長(zhǎng)特性:貼壁;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:Ca9-22細(xì)胞、HCT-GEO細(xì)胞、Hs870T細(xì)胞
Mv1.Lu Cells;背景說(shuō)明:詳見(jiàn)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(zhǎng)特性:貼壁或懸浮,詳見(jiàn)產(chǎn)品說(shuō)明書(shū)部分;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:MDA-MB-361細(xì)胞、H1975細(xì)胞、P3X63細(xì)胞
Clone M-3 Cells;背景說(shuō)明:黑色素瘤;雄性;DBA;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長(zhǎng)特性:貼壁;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:MDA-MB435細(xì)胞、MOPC細(xì)胞、SNU-368細(xì)胞
Mel RM Cells;背景說(shuō)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(zhǎng)特性:貼壁;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:MFC細(xì)胞、HEK-293-F細(xì)胞、H2135細(xì)胞
DMS273 Cells;背景說(shuō)明:詳見(jiàn)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(zhǎng)特性:貼壁或懸浮,詳見(jiàn)產(chǎn)品說(shuō)明書(shū)部分;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:CF PAC-1細(xì)胞、CC-LP-I細(xì)胞、P-815細(xì)胞
Huh7.5.1 Cells;背景說(shuō)明:肝癌;男性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長(zhǎng)特性:貼壁;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:H716細(xì)胞、MM96L細(xì)胞、LoMeT-ccRcc細(xì)胞
HPS0680 Cells(提供STR鑒定圖譜)
JMAR Cells(提供STR鑒定圖譜)
MDCC-BO1(T) Cells(提供STR鑒定圖譜)
ND40077 Cells(提供STR鑒定圖譜)
PSALBV245 Cells(提供STR鑒定圖譜)
Ubigene A-549 LAMC1 KO Cells(提供STR鑒定圖譜)
US/VOT-E36 Cells(提供STR鑒定圖譜)
HG01954 Cells(提供STR鑒定圖譜)
130 T Cells;背景說(shuō)明:詳見(jiàn)相關(guān)文獻(xiàn)介紹;傳代方法:1:2-1:4傳代,3-4天換液1次。;生長(zhǎng)特性:貼壁生長(zhǎng);形態(tài)特性:梭型和大的多核細(xì)胞;相關(guān)產(chǎn)品有:H2106細(xì)胞、3396細(xì)胞、MDAMB231細(xì)胞
D-283MED Cells;背景說(shuō)明:詳見(jiàn)相關(guān)文獻(xiàn)介紹;傳代方法:每周換液2-3次。;生長(zhǎng)特性:懸浮細(xì)胞的多細(xì)胞聚集體,和一些貼壁 Cells;形態(tài)特性:上皮細(xì)胞;相關(guān)產(chǎn)品有:293 Ad5細(xì)胞、KMS-18細(xì)胞、P3-NS1/1-Ag4-1細(xì)胞
OV-90 Cells;背景說(shuō)明:詳見(jiàn)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(zhǎng)特性:貼壁生長(zhǎng);形態(tài)特性:上皮細(xì)胞;相關(guān)產(chǎn)品有:P3JHR-1細(xì)胞、RK-13細(xì)胞、OK-WT細(xì)胞
CaEs17 Cells;背景說(shuō)明:詳見(jiàn)相關(guān)文獻(xiàn)介紹;傳代方法:1:2傳代;生長(zhǎng)特性:貼壁生長(zhǎng);形態(tài)特性:上皮細(xì)胞樣;相關(guān)產(chǎn)品有:X63Ag8-653細(xì)胞、SU-DHL-4細(xì)胞、B16/BL6細(xì)胞
HNE2 Cells;背景說(shuō)明:鼻咽癌;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長(zhǎng)特性:貼壁;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:SKN-AS細(xì)胞、Panc-05.04細(xì)胞、HPAEC細(xì)胞
HNE2 Cells;背景說(shuō)明:鼻咽癌;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長(zhǎng)特性:貼壁;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:SKN-AS細(xì)胞、Panc-05.04細(xì)胞、HPAEC細(xì)胞
HPF Cells;背景說(shuō)明:肺;成纖維 Cells;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長(zhǎng)特性:貼壁;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:2B4-L細(xì)胞、SVHUC細(xì)胞、Hepatoma-22細(xì)胞
HONE-1 Cells;背景說(shuō)明:鼻咽癌;男性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長(zhǎng)特性:貼壁;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:PG-4 S+L-細(xì)胞、GM05372E細(xì)胞、H1522細(xì)胞
IPLB-SF 21AE Cells;背景說(shuō)明:詳見(jiàn)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(zhǎng)特性:貼壁或懸浮,詳見(jiàn)產(chǎn)品說(shuō)明書(shū)部分;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:SKO3細(xì)胞、Intestinal Porcine Epithelial Cell line-J2細(xì)胞、HCC-2108細(xì)胞
VERO76 Cells;背景說(shuō)明:詳見(jiàn)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(zhǎng)特性:貼壁或懸浮,詳見(jiàn)產(chǎn)品說(shuō)明書(shū)部分;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:AN3CA細(xì)胞、SCC090細(xì)胞、CAKI.1細(xì)胞
HLMVEC Cells;背景說(shuō)明:肺微血管;內(nèi)皮 Cells;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長(zhǎng)特性:貼壁;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:MKN 7細(xì)胞、ML-2細(xì)胞、HPaSteC(HPSC)細(xì)胞
HN4 Cells;背景說(shuō)明:喉鱗癌;男性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長(zhǎng)特性:貼壁;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:LA4細(xì)胞、MDA361細(xì)胞、H-1618細(xì)胞
SKG-IIIa Cells;背景說(shuō)明:詳見(jiàn)相關(guān)文獻(xiàn)介紹;傳代方法:2x10^4 cells/ml;生長(zhǎng)特性:貼壁生長(zhǎng);形態(tài)特性:上皮細(xì)胞樣;相關(guān)產(chǎn)品有:IOSE80細(xì)胞、BC-019細(xì)胞、H-2196細(xì)胞
OCI/AML-5 Cells;背景說(shuō)明:急性髓系白血病細(xì)胞;男性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長(zhǎng)特性:懸浮;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:EC-GI-10細(xì)胞、253J-Bladder-V細(xì)胞、MHCC97-H細(xì)胞
RA Cells;背景說(shuō)明:詳見(jiàn)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(zhǎng)特性:貼壁或懸浮,詳見(jiàn)產(chǎn)品說(shuō)明書(shū)部分;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:T47D細(xì)胞、NCIH2291細(xì)胞、MV522細(xì)胞
SMBCi019-A Cells(提供STR鑒定圖譜)
CORL105 Cells;背景說(shuō)明:詳見(jiàn)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(zhǎng)特性:貼壁或懸浮,詳見(jiàn)產(chǎn)品說(shuō)明書(shū)部分;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);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
50.B1 Cells;背景說(shuō)明:角膜上皮;Ad12-SV40;男性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長(zhǎng)特性:貼壁;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:TOV21G細(xì)胞、WIL2 S細(xì)胞、SW579細(xì)胞
SUD6 Cells;背景說(shuō)明:詳見(jiàn)相關(guān)文獻(xiàn)介紹;傳代方法:1:3—1:6傳代,3—4天換液1次;生長(zhǎng)特性:懸浮生長(zhǎng) ;形態(tài)特性:淋巴母細(xì)胞樣;相關(guān)產(chǎn)品有:NCI-H1623細(xì)胞、RCS細(xì)胞、Walker-256-TC細(xì)胞
SU-DHL6 Cells;背景說(shuō)明:詳見(jiàn)相關(guān)文獻(xiàn)介紹;傳代方法:1:3—1:6傳代,3—4天換液1次;生長(zhǎng)特性:懸浮生長(zhǎng) ;形態(tài)特性:淋巴母細(xì)胞樣;相關(guān)產(chǎn)品有:HuT78細(xì)胞、NCI-H661細(xì)胞、IOSE-29細(xì)胞
TI-73 Cells;背景說(shuō)明:詳見(jiàn)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(zhǎng)特性:貼壁生長(zhǎng);形態(tài)特性:成纖維細(xì)胞;相關(guān)產(chǎn)品有:Hep 3B2.1-7細(xì)胞、KS-SLK細(xì)胞、P3J.HR1K細(xì)胞
UMNSAH/DF-1 Cells;背景說(shuō)明:詳見(jiàn)相關(guān)文獻(xiàn)介紹;傳代方法:1:2傳代;生長(zhǎng)特性:貼壁生長(zhǎng);形態(tài)特性:成纖維母細(xì)胞樣;相關(guān)產(chǎn)品有:NCM-460細(xì)胞、NCIH1666細(xì)胞、H-1993細(xì)胞
OCI AML4 Cells;背景說(shuō)明:急性髓系白血??;女性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長(zhǎng)特性:懸浮;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:CCRF細(xì)胞、H-1770細(xì)胞、T-HEECs細(xì)胞
SKN-SH Cells;背景說(shuō)明:SK-N-SH細(xì)胞系由J.L.Bieder建系,它與SK-N-MC所不同的是倍增時(shí)間較長(zhǎng)且多巴胺-β-羥基酶水平較高。 SK-N-SH在細(xì)胞介導(dǎo)的細(xì)胞毒性試驗(yàn)中用作靶細(xì)胞系。;傳代方法:1:2傳代;生長(zhǎng)特性:懸浮生長(zhǎng);形態(tài)特性:上皮細(xì)胞樣;相關(guān)產(chǎn)品有:Hs606細(xì)胞、GOS-3細(xì)胞、B16-F0細(xì)胞
H-196 Cells;背景說(shuō)明:詳見(jiàn)相關(guān)文獻(xiàn)介紹;傳代方法:1:4-1:6傳代;每周換液2-3次。;生長(zhǎng)特性:貼壁生長(zhǎng);形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:HCC941122細(xì)胞、NCIH510細(xì)胞、X63Ag8-653細(xì)胞
373 MG Cells;背景說(shuō)明:膠質(zhì)瘤;男性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長(zhǎng)特性:貼壁;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:OEC19細(xì)胞、A-875細(xì)胞、HRC-99細(xì)胞
P3J-HR-1 Cells;背景說(shuō)明:詳見(jiàn)相關(guān)文獻(xiàn)介紹;傳代方法:每2-3天換液;生長(zhǎng)特性:懸浮生長(zhǎng) ;形態(tài)特性:淋巴母細(xì)胞樣;相關(guān)產(chǎn)品有:HFF1細(xì)胞、Co320細(xì)胞、Statens Seruminstitut Rabbit Cornea細(xì)胞
NCI-H1437 Cells;背景說(shuō)明:詳見(jiàn)相關(guān)文獻(xiàn)介紹;傳代方法:1:2-1:6傳代,每周換液2次。;生長(zhǎng)特性:貼壁生長(zhǎng);形態(tài)特性:上皮樣;相關(guān)產(chǎn)品有:H2141細(xì)胞、C57 Mouse Tumor 93細(xì)胞、TW01細(xì)胞
293H Cells;背景說(shuō)明:詳見(jiàn)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(zhǎng)特性:貼壁或懸浮,詳見(jiàn)產(chǎn)品說(shuō)明書(shū)部分;形態(tài)特性:詳見(jiàn)產(chǎn)品說(shuō)明書(shū);相關(guān)產(chǎn)品有:AR42J細(xì)胞、PC 61-5-3細(xì)胞、HFLS細(xì)胞
SP2 Cells;背景說(shuō)明:該細(xì)胞是由綿羊紅細(xì)胞免疫的BALB/c小鼠脾細(xì)胞和P3X63Ag8骨髓瘤細(xì)胞融合得到的。該細(xì)胞不分泌免疫球蛋白,對(duì)20μg/ml的8-氮鳥(niǎo)嘌呤有抗性,對(duì)HAT比較敏感;該細(xì)胞可以作為細(xì)胞融合時(shí)的B細(xì)胞組分用于制備雜交瘤;鼠痘病毒陰性。;傳代方法:1:2傳代;生長(zhǎng)特性:懸浮生長(zhǎng);形態(tài)特性:淋巴母細(xì)胞樣;圓形;相關(guān)產(chǎn)品有:RL95細(xì)胞、NCI-H2405細(xì)胞、NCIH1355細(xì)胞
COLO 205人結(jié)腸癌復(fù)蘇細(xì)胞保種中心|帶STR證書(shū)
BayGenomics ES cell line CSA089 Cells(提供STR鑒定圖譜)
BayGenomics ES cell line RRS388 Cells(提供STR鑒定圖譜)
BayGenomics ES cell line YTA589 Cells(提供STR鑒定圖譜)
IE-3 Cells(提供STR鑒定圖譜)
PCRP-PRDM7-3D3 Cells(提供STR鑒定圖譜)
KRC-7 [Rat hepatoma] Cells(提供STR鑒定圖譜)
" "PubMed=3335022
Alley M.C., Scudiero D.A., Monks A., Hursey M.L., Czerwinski M.J., Fine D.L., Abbott B.J., Mayo J.G., Shoemaker R.H., Boyd M.R.
Feasibility of drug screening with panels of human tumor cell lines using a microculture tetrazolium assay.
Cancer Res. 48:589-601(1988)
PubMed=2041050; DOI=10.1093/jnci/83.11.757
Monks A., Scudiero D.A., Skehan P., Shoemaker R.H., Paull K.D., Vistica D.T., Hose C.D., Langley J., Cronise P., Vaigro-Wolff A., Gray-Goodrich M., Campbell H., Mayo J.G., Boyd M.R.
Feasibility of a high-flux anticancer drug screen using a diverse panel of cultured human tumor cell lines.
J. Natl. Cancer Inst. 83:757-766(1991)
PubMed=7651727
Kastrinakis W.V., Ramchurren N., Rieger K.M., Hess D.T., Loda M., Steele G., Summerhayes I.C.
Increased incidence of p53 mutations is associated with hepatic metastasis in colorectal neoplastic progression.
Oncogene 11:647-652(1995)
PubMed=9023415; DOI=10.1006/cimm.1996.1062
Seki N., Hoshino T., Kikuchi M., Hayashi A., Itoh K.
HLA-A locus-restricted and tumor-specific CTLs in tumor-infiltrating lymphocytes of patients with non-small cell lung cancer.
Cell. Immunol. 175:101-110(1997)
PubMed=9294210; DOI=10.1073/pnas.94.19.10330; PMCID=PMC23362
Ilyas M., Tomlinson I.P.M., Rowan A.J., Pignatelli M., Bodmer W.F.
Beta-catenin mutations in cell lines established from human colorectal cancers.
Proc. Natl. Acad. Sci. U.S.A. 94:10330-10334(1997)
PubMed=10051639; DOI=10.1073/pnas.96.5.2316; PMCID=PMC26781
Efstathiou J.A., Liu D., Wheeler J.M.D., Kim H.C., Beck N.E., Ilyas M., Karayiannakis A.J., Mortensen N.J., Kmiot W.A.W., Playford R.J., Pignatelli M., Bodmer W.F.
Mutated epithelial cadherin is associated with increased tumorigenicity and loss of adhesion and of responsiveness to the motogenic trefoil factor 2 in colon carcinoma cells.
Proc. Natl. Acad. Sci. U.S.A. 96:2316-2321(1999)
PubMed=10674020; DOI=10.1016/S0959-8049(99)00206-3
Ku J.-L., Yoon K.-A., Kim D.-Y., Park J.-G.
Mutations in hMSH6 alone are not sufficient to cause the microsatellite instability in colorectal cancer cell lines.
Eur. J. Cancer 35:1724-1729(1999)
PubMed=10700174; DOI=10.1038/73432
Ross D.T., Scherf U., Eisen M.B., Perou C.M., Rees C., Spellman P.T., Iyer V.R., Jeffrey S.S., van de Rijn M., Waltham M.C., Pergamenschikov A., Lee J.C.F., Lashkari D., Shalon D., Myers T.G., Weinstein J.N., Botstein D., Brown P.O.
Systematic variation in gene expression patterns in human cancer cell lines.
Nat. Genet. 24:227-235(2000)
PubMed=10737795; DOI=10.1073/pnas.97.7.3352; PMCID=PMC16243
Rowan A.J., Lamlum H., Ilyas M., Wheeler J.M.D., Straub J., Papadopoulou A., Bicknell D.C., Bodmer W.F., Tomlinson I.P.M.
APC mutations in sporadic colorectal tumors: a mutational 'hotspot' and interdependence of the 'two hits'.
Proc. Natl. Acad. Sci. U.S.A. 97:3352-3357(2000)
PubMed=11414198; DOI=10.1007/s004320000207
Lahm H., Andre S., Hoeflich A., Fischer J.R., Sordat B., Kaltner H., Wolf E., Gabius H.-J.
Comprehensive galectin fingerprinting in a panel of 61 human tumor cell lines by RT-PCR and its implications for diagnostic and therapeutic procedures.
J. Cancer Res. Clin. Oncol. 127:375-386(2001)
PubMed=12068308; DOI=10.1038/nature00766
Davies H.R., Bignell G.R., Cox C., Stephens P.J., Edkins S., Clegg S., Teague J.W., Woffendin H., Garnett M.J., Bottomley W., Davis N., Dicks E., Ewing R., Floyd Y., Gray K., Hall S., Hawes R., Hughes J., Kosmidou V., Menzies A., Mould C., Parker A., Stevens C., Watt S., Hooper S., Wilson R., Jayatilake H., Gusterson B.A., Cooper C.S., Shipley J.M., Hargrave D., Pritchard-Jones K., Maitland N.J., Chenevix-Trench G., Riggins G.J., Bigner D.D., Palmieri G., Cossu A., Flanagan A.M., Nicholson A., Ho J.W.C., Leung S.Y., Yuen S.T., Weber B.L., Seigler H.F., Darrow T.L., Paterson H.F., Marais R., Marshall C.J., Wooster R., Stratton M.R., Futreal P.A.
Mutations of the BRAF gene in human cancer.
Nature 417:949-954(2002)
PubMed=12584437; DOI=10.1159/000068544
Melcher R., Koehler S., Steinlein C., Schmid M., Mueller C.R., Luehrs H., Menzel T., Scheppach W., Moerk H., Scheurlen M., Koehrle J., Al-Taie O.
Spectral karyotype analysis of colon cancer cell lines of the tumor suppressor and mutator pathway.
Cytogenet. Genome Res. 98:22-28(2002)
PubMed=15748285; DOI=10.1186/1479-5876-3-11; PMCID=PMC555742
Adams S., Robbins F.-M., Chen D., Wagage D., Holbeck S.L., Morse H.C. 3rd, Stroncek D., Marincola F.M.
HLA class I and II genotype of the NCI-60 cell lines.
J. Transl. Med. 3:11.1-11.8(2005)
PubMed=17088437; DOI=10.1158/1535-7163.MCT-06-0433; PMCID=PMC2705832
Ikediobi O.N., Davies H.R., Bignell G.R., Edkins S., Stevens C., O'Meara S., Santarius T., Avis T., Barthorpe S., Brackenbury L., Buck G., Butler A.P., Clements J., Cole J., Dicks E., Forbes S., Gray K., Halliday K., Harrison R., Hills K., Hinton J., Hunter C., Jenkinson A., Jones D., Kosmidou V., Lugg R., Menzies A., Miroo T., Parker A., Perry J., Raine K.M., Richardson D., Shepherd R., Small A., Smith R., Solomon H., Stephens P.J., Teague J.W., Tofts C., Varian J., Webb T., West S., Widaa S., Yates A., Reinhold W.C., Weinstein J.N., Stratton M.R., Futreal P.A., Wooster R.
Mutation analysis of 24 known cancer genes in the NCI-60 cell line set.
Mol. Cancer Ther. 5:2606-2612(2006)
PubMed=19372543; DOI=10.1158/1535-7163.MCT-08-0921; PMCID=PMC4020356
Lorenzi P.L., Reinhold W.C., Varma S., Hutchinson A.A., Pommier Y., Chanock S.J., Weinstein J.N.
DNA fingerprinting of the NCI-60 cell line panel.
Mol. Cancer Ther. 8:713-724(2009)
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=20570890; DOI=10.1158/0008-5472.CAN-10-0192; PMCID=PMC2943514
Janakiraman M., Vakiani E., Zeng Z.-S., Pratilas C.A., Taylor B.S., Chitale D., Halilovic E., Wilson M., Huberman K., Ricarte Filho J.C.M., Persaud Y., Levine D.A., Fagin J.A., Jhanwar S.C., Mariadason J.M., Lash A., Ladanyi M., Saltz L.B., Heguy A., Paty P.B., Solit D.B.
Genomic and biological characterization of exon 4 KRAS mutations in human cancer.
Cancer Res. 70:5901-5911(2010)
PubMed=22068913; DOI=10.1073/pnas.1111840108; PMCID=PMC3219108
Gillet J.-P., Calcagno A.M., Varma S., Marino M., Green L.J., Vora M.I., Patel C., Orina J.N., Eliseeva T.A., Singal V., Padmanabhan R., Davidson B., Ganapathi R., Sood A.K., Rueda B.R., Ambudkar S.V., Gottesman M.M.
Redefining the relevance of established cancer cell lines to the study of mechanisms of clinical anti-cancer drug resistance.
Proc. Natl. Acad. Sci. U.S.A. 108:18708-18713(2011)
PubMed=22347499; DOI=10.1371/journal.pone.0031628; PMCID=PMC3276511
Ruan X.-Y., Kocher J.-P.A., Pommier Y., Liu H.-F., Reinhold W.C.
Mass homozygotes accumulation in the NCI-60 cancer cell lines as compared to HapMap trios, and relation to fragile site location.
PLoS ONE 7:E31628-E31628(2012)
PubMed=22384151; DOI=10.1371/journal.pone.0032096; PMCID=PMC3285665
Lee J.-S., Kim Y.K., Kim H.J., Hajar S., Tan Y.L., Kang N.-Y., Ng S.H., Yoon C.N., Chang Y.-T.
Identification of cancer cell-line origins using fluorescence image-based phenomic screening.
PLoS ONE 7:E32096-E32096(2012)
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=22628656; DOI=10.1126/science.1218595; PMCID=PMC3526189
Jain M., Nilsson R., Sharma S., Madhusudhan N., Kitami T., Souza A.L., Kafri R., Kirschner M.W., Clish C.B., Mootha V.K.
Metabolite profiling identifies a key role for glycine in rapid cancer cell proliferation.
Science 336:1040-1044(2012)
PubMed=23272949; DOI=10.1186/1755-8794-5-66; PMCID=PMC3543849
Schlicker A., Beran G., Chresta C.M., McWalter G., Pritchard A., Weston S., Runswick S., Davenport S., Heathcote K., Castro D.A., Orphanides G., French T., Wessels L.F.A.
Subtypes of primary colorectal tumors correlate with response to targeted treatment in colorectal cell lines.
BMC Med. Genomics 5:66.1-66.15(2012)
PubMed=23631600; DOI=10.1021/pr400260h
Loftus N.J., Lai L., Wilkinson R.W., Odedra R., Wilson I.D., Barnes A.J.
Global metabolite profiling of human colorectal cancer xenografts in mice using HPLC-MS/MS.
J. Proteome Res. 12:2980-2986(2013)
PubMed=23856246; DOI=10.1158/0008-5472.CAN-12-3342; PMCID=PMC4893961
Abaan O.D., Polley E.C., Davis S.R., Zhu Y.-L.J., Bilke S., Walker R.L., Pineda M.A., Gindin Y., Jiang Y., Reinhold W.C., Holbeck S.L., Simon R.M., Doroshow J.H., Pommier Y., Meltzer P.S.
The exomes of the NCI-60 panel: a genomic resource for cancer biology and systems pharmacology.
Cancer Res. 73:4372-4382(2013)
PubMed=23933261; DOI=10.1016/j.celrep.2013.07.018
Moghaddas Gholami A., Hahne H., Wu Z.-X., Auer F.J., Meng C., Wilhelm M., Kuster B.
Global proteome analysis of the NCI-60 cell line panel.
Cell Rep. 4:609-620(2013)
PubMed=24279929; DOI=10.1186/2049-3002-1-20; PMCID=PMC4178206
Dolfi S.C., Chan L.L.-Y., Qiu J., Tedeschi P.M., Bertino J.R., Hirshfield K.M., Oltvai Z.N., Vazquez A.
The metabolic demands of cancer cells are coupled to their size and protein synthesis rates.
Cancer Metab. 1:20.1-20.13(2013)
PubMed=24670534; DOI=10.1371/journal.pone.0092047; PMCID=PMC3966786
Varma S., Pommier Y., Sunshine M., Weinstein J.N., Reinhold W.C.
High resolution copy number variation data in the NCI-60 cancer cell lines from whole genome microarrays accessible through CellMiner.
PLoS ONE 9:E92047-E92047(2014)
PubMed=24755471; DOI=10.1158/0008-5472.CAN-14-0013
Mouradov D., Sloggett C., Jorissen R.N., Love C.G., Li S., Burgess A.W., Arango D., Strausberg R.L., Buchanan D., Wormald S., O'Connor L., Wilding J.L., Bicknell D.C., Tomlinson I.P.M., Bodmer W.F., Mariadason J.M., Sieber O.M.
Colorectal cancer cell lines are representative models of the main molecular subtypes of primary cancer.
Cancer Res. 74:3238-3247(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=25841592; DOI=10.1016/j.jprot.2015.03.019
Piersma S.R., Knol J.C., de Reus I., Labots M., Sampadi B.K., Pham T.V., Ishihama Y., Verheul H.M.W., Jimenez C.R.
Feasibility of label-free phosphoproteomics and application to base-line signaling of colorectal cancer cell lines.
J. Proteomics 127:247-258(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=25926053; DOI=10.1038/ncomms8002
Medico E., Russo M., Picco G., Cancelliere C., Valtorta E., Corti G., Buscarino M., Isella C., Lamba S., Martinoglio B., Veronese S., Siena S., Sartore-Bianchi A., Beccuti M., Mottolese M., Linnebacher M., Cordero F., Di Nicolantonio F., Bardelli A.
The molecular landscape of colorectal cancer cell lines unveils clinically actionable kinase targets.
Nat. Commun. 6:7002.1-7002.10(2015)
PubMed=25944804; DOI=10.1158/1078-0432.CCR-14-2457
Bazzocco S., Dopeso H., Carton-Garcia F., Macaya I., Andretta E., Chionh F., Rodrigues P., Garrido M., Alazzouzi H., Nieto R., Sanchez A., Schwartz S. Jr., Bilic J., Mariadason J.M., Arango D.
Highly expressed genes in rapidly proliferating tumor cells as new targets for colorectal cancer treatment.
Clin. Cancer Res. 21:3695-3704(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=26537799; DOI=10.1074/mcp.M115.051235; PMCID=PMC4762531
Holst S., Deuss A.J.M., van Pelt G.W., van Vliet S.J., Garcia-Vallejo J.J., Koeleman C.A.M., Deelder A.M., Mesker W.E., Tollenaar R.A.E.M., Rombouts Y., Wuhrer M.
N-glycosylation profiling of colorectal cancer cell lines reveals association of fucosylation with differentiation and caudal type homebox 1 (CDX1)/villin mRNA expression.
Mol. Cell. Proteomics 15:124-140(2016)
PubMed=27377824; DOI=10.1038/sdata.2016.52; PMCID=PMC4932877
Mestdagh P., Lefever S., Volders P.-J., Derveaux S., Hellemans J., Vandesompele J.
Long non-coding RNA expression profiling in the NCI60 cancer cell line panel using high-throughput RT-qPCR.
Sci. Data 3:160052-160052(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=27807467; DOI=10.1186/s13100-016-0078-4; PMCID=PMC5087121
Zampella J.G., Rodic N., Yang W.R., Huang C.R.L., Welch J., Gnanakkan V.P., Cornish T.C., Boeke J.D., Burns K.H.
A map of mobile DNA insertions in the NCI-60 human cancer cell panel.
Mob. DNA 7:20.1-20.11(2016)
PubMed=28192450; DOI=10.1371/journal.pone.0171435; PMCID=PMC5305277
Fasterius E., Raso C., Kennedy S.A., Rauch N., Lundin P., Kolch W., Uhlen M., Al-Khalili Szigyarto C.
A novel RNA sequencing data analysis method for cell line authentication.
PLoS ONE 12:E0171435-E0171435(2017)
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=28683746; DOI=10.1186/s12943-017-0691-y; PMCID=PMC5498998
Berg K.C.G., Eide P.W., Eilertsen I.A., Johannessen B., Bruun J., Danielsen S.A., Bjornslett M., Meza-Zepeda L.A., Eknaes M., Lind G.E., Myklebost O., Skotheim R.I., Sveen A., Lothe R.A.
Multi-omics of 34 colorectal cancer cell lines -- a resource for biomedical studies.
Mol. Cancer 16:116.1-116.16(2017)
PubMed=28854368; DOI=10.1016/j.celrep.2017.08.010; PMCID=PMC5583477
Roumeliotis T.I., Williams S.P., Goncalves E., Alsinet C., Del Castillo Velasco-Herrera M., Aben N., Ghavidel F.Z., Michaut M., Schubert M., Price S., Wright J.C., Yu L., Yang M., Dienstmann R., Guinney J.H., Beltrao P., Brazma A., Pardo M., Stegle O., Adams D.J., Wessels L.F.A., Saez-Rodriguez J., McDermott U., Choudhary J.S.
Genomic determinants of protein abundance variation in colorectal cancer cells.
Cell Rep. 20:2201-2214(2017)
PubMed=29718670; DOI=10.1021/acs.jproteome.8b00165; PMCID=PMC6670293
Clark D.J., Hu Y.-W., Bocik W., Chen L.-J., Schnaubelt M., Roberts R.R., Shah P., Whiteley G.R., Zhang H.
Evaluation of NCI-7 cell line panel as a reference material for clinical proteomics.
J. Proteome Res. 17:2205-2215(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)
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)"
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