"MDA-MB-468人乳腺癌細(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)胞系的選擇需要考慮到細(xì)胞系的功能特點、生長速率、鋪板效率、生長條件和生長特征、克隆效率、培養(yǎng)方式等因素,如果您想高產(chǎn)量表達(dá)重組蛋白,您可以選擇可以懸浮生長的快速生長細(xì)胞系。細(xì)胞培養(yǎng)的操作步驟主要包括傳代、換液、凍存和復(fù)蘇。這些步驟確保了細(xì)胞能夠在實驗室環(huán)境中長期存活并繼續(xù)增殖。傳代是將細(xì)胞從一個容器轉(zhuǎn)移到另一個容器的過程,以擴大細(xì)胞數(shù)量;換液是為了清除代謝廢物并補充新鮮培養(yǎng)基;凍存則是為了長期保存細(xì)胞,而復(fù)蘇則是重新激活冷凍保存的細(xì)胞使其恢復(fù)正常生長。
換液周期:每周2-3次
MOLP2 Cells;背景說明:骨髓瘤;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:MDA231細(xì)胞、Panc2.03細(xì)胞、PTK1細(xì)胞
293 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:NPA87細(xì)胞、HT-144細(xì)胞、A875細(xì)胞
SW 13 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:CCD18Co細(xì)胞、UMUC-14細(xì)胞、CAOV4細(xì)胞
MDA-MB-468人乳腺癌細(xì)胞代次低|培養(yǎng)基|送STR圖譜
背景信息:該細(xì)胞是1977年由CailleauR等從一位患有轉(zhuǎn)移性乳腺癌的51歲黑人女性的胸腔積中分離得到的。雖然供體組織的G6PD等位基因雜合,但此細(xì)胞株始終表現(xiàn)為G6表型。P53基因273位密碼子存在G→A突變,從而導(dǎo)致Arg→His替代。每個細(xì)胞上存在1×106個EGF受體。
┈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,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)的實驗需求進(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,我就會按1E6個細(xì)胞/T75培養(yǎng)瓶進(jìn)行傳代;但如果后兩天要用,就會適當(dāng)多傳一點;還可通過顯微鏡計數(shù)后,直接用于細(xì)胞鋪板,繼續(xù)后續(xù)的實驗。
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
MDA-MB-468人乳腺癌細(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
ROS17/28 Cells;背景說明:骨肉瘤;ACI 9935;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:Immortalized Human Hepatocytes細(xì)胞、MC57G細(xì)胞、IGROV-1細(xì)胞
OE-21 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:Colon26細(xì)胞、Jurkat E6.1細(xì)胞、H250細(xì)胞
WM115F Cells;背景說明: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:WIL2S細(xì)胞、KPL-1細(xì)胞、LLC PK1細(xì)胞
SNU-C2A Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:每周兩次換液;生長特性:松散附著、多單元的聚合;形態(tài)特性:上皮細(xì)胞樣;相關(guān)產(chǎn)品有:AAV293細(xì)胞、SNU-354細(xì)胞、SNU-5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)胞株(系)的使用,為醫(yī)學(xué)研究和測試工作帶來了大的方便。但細(xì)胞的傳代是有限制的,長期連續(xù)傳代的細(xì)胞,不僅消耗大量的人力和物力,而且細(xì)胞的生長與形態(tài)等會有一定退變或轉(zhuǎn)化,因而細(xì)胞失去原有的遺傳性,有時還會由于細(xì)胞污染而造成傳代中斷,種子丟失。因此,在實際工作中常需凍存一定數(shù)量的細(xì)胞,以備替換使用。細(xì)胞冷凍與復(fù)蘇是細(xì)胞培養(yǎng) 室的常規(guī)工作和通用技術(shù)。目前,細(xì)胞凍存Zui常用的技術(shù)是冷凍保存法,主要采用加適量保護(hù)劑的緩慢冷凍法凍存細(xì)胞。細(xì)胞在不加任何保護(hù)劑的情況下直接冷凍,細(xì)胞內(nèi)外的水分會很快形成冰晶,從而引起一系列不良反應(yīng)。如細(xì)胞脫水使局部電解質(zhì)濃度增GAO,pH值改變,部分蛋白質(zhì)由于上述原因而變性,引起細(xì)胞內(nèi)部空間結(jié)構(gòu)紊亂,溶酶體膜由此遭到損傷而釋放出溶酶體酶,使細(xì)胞內(nèi)結(jié)構(gòu)成分造成破壞,線粒體腫脹,功能丟失,并造成能量代謝障礙。胞膜上的類脂蛋白復(fù)合體也易破壞引起細(xì)胞膜通透性的改變,使細(xì)胞內(nèi)容物丟失。如果細(xì)胞內(nèi)冰晶形成較多,隨冷凍溫度的降低,冰晶體積膨脹造成細(xì)胞核DNA空間構(gòu)型發(fā)生不可逆的損傷,而致細(xì)胞死亡。因此,細(xì)胞冷凍技術(shù)的關(guān)鍵是盡可能地減少細(xì)胞內(nèi)水分,減少細(xì)胞內(nèi)冰晶的形成。采用甘油或二甲基亞砜作保護(hù)劑,這兩種物質(zhì)分子量小,溶解度大,易穿透細(xì)胞,可以使冰點下降,提GAO細(xì)胞膜對水的通透性,且對細(xì)胞無明顯毒性。慢速冷凍方法又可使細(xì)胞內(nèi)的水分滲出細(xì)胞外,減少胞內(nèi)形成冰結(jié)晶的機會,從而減少冰晶對細(xì)胞的損傷。
HPaSteC(HPSC) Cells;背景說明:胰腺星狀 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:C3H-10T1/2細(xì)胞、MyLa 2059細(xì)胞、HEL-92細(xì)胞
Sp 2817 Cells;背景說明:前列腺癌;左鎖骨上淋巴結(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:RPMI1846細(xì)胞、OUMS27細(xì)胞、NCI-BL6細(xì)胞
TE-7 Cells;背景說明:食管鱗癌;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:Human Intestinal Epithelial Cell-6細(xì)胞、MGH-UI細(xì)胞、H2291細(xì)胞
293H 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:SMC-1細(xì)胞、HEK (AD293)細(xì)胞、MSB-1細(xì)胞
U 937 Cells;背景說明:該細(xì)胞是由NilssonK實驗室于1974年從一名37歲的患有惡性組織細(xì)胞性淋巴瘤的白人男性的胸水中分離建立的。1979年來的研究顯示該細(xì)胞在人混合淋巴細(xì)胞培養(yǎng)物上清、佛波酯、VitD3、γ-IFN、TNF和維A酸的誘導(dǎo)下可以向終末單核細(xì)胞分化。該細(xì)胞不合成免疫球蛋白,EBV陰性;可產(chǎn)生溶菌酶、β-2-微球蛋白,受PMA刺激后可產(chǎn)生TNF-α;表達(dá)C3R;可作轉(zhuǎn)染宿主;表達(dá)Fas,對TNF和抗Fas的抗體敏感。;傳代方法:維持細(xì)胞濃度在1×105-2×106/ml;根據(jù)細(xì)胞濃度3-4換液1次。;生長特性:懸浮生長;形態(tài)特性:單核細(xì)胞;相關(guān)產(chǎn)品有:EAHY-926細(xì)胞、N1S1細(xì)胞、HBdSMC細(xì)胞
LUDLU1 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:OCILY3細(xì)胞、CT-26 WT細(xì)胞、K562細(xì)胞
SNU-638 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:Hu-P-T4細(xì)胞、VeroC1008細(xì)胞、Anip[973]細(xì)胞
OCI-Ly 10 Cells;背景說明:彌漫大B細(xì)胞淋巴瘤;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:IEC 18細(xì)胞、HLE B-3細(xì)胞、WILL-2細(xì)胞
HTori:3 Cells;背景說明:甲狀腺;SV40轉(zhuǎn)化;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:KBM-7/Hap8細(xì)胞、H4-II-E細(xì)胞、SCC7細(xì)胞
MONO-MAC 6 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:懸浮生長;形態(tài)特性:淋巴母細(xì)胞;相關(guān)產(chǎn)品有:H-2135細(xì)胞、P30/OHK細(xì)胞、EOC 20細(xì)胞
751-NA-15 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:SMA-560細(xì)胞、SW 480細(xì)胞、KYSE 70細(xì)胞
MRASMC 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:Tohoku Hospital Pediatrics-1細(xì)胞、EC9706細(xì)胞、CCD-18Co細(xì)胞
SC Cells;背景說明:急性單核細(xì)胞白血??;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:DU145細(xì)胞、HT 115細(xì)胞、H87細(xì)胞
HOP-62 Cells;背景說明:肺癌;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:LK2細(xì)胞、HUTU80細(xì)胞、T24細(xì)胞
HCT 8 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:KNS42細(xì)胞、P-388D1細(xì)胞、WEHI 231細(xì)胞
MDA MB231 Cells;背景說明:MDA-MB-231來自患有轉(zhuǎn)移乳腺腺癌的51歲女病人的胸水。在裸鼠和ALS處理的BALB/c小鼠中,它能形成低分化腺癌(III級)。;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:GS-9L細(xì)胞、T-ALL1細(xì)胞、KMST-6細(xì)胞
PFSK-1 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:GT38細(xì)胞、Tu-212細(xì)胞、Roswell Park Memorial Institute 8402細(xì)胞
Abcam HEK293T PTTG1 KO Cells(提供STR鑒定圖譜)
AG12070 Cells(提供STR鑒定圖譜)
BayGenomics ES cell line RRB053 Cells(提供STR鑒定圖譜)
BayGenomics ES cell line XE347 Cells(提供STR鑒定圖譜)
BY00290 Cells(提供STR鑒定圖譜)
CS28iALS-C9n2 Cells(提供STR鑒定圖譜)
DA04419 Cells(提供STR鑒定圖譜)
FD-1-iPSC Cells(提供STR鑒定圖譜)
GM08278 Cells(提供STR鑒定圖譜)
TE-14 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:消化3-5分鐘。1:2。3天內(nèi)可長滿。;生長特性:貼壁生長;形態(tài)特性:上皮樣;相關(guān)產(chǎn)品有:A-20細(xì)胞、C33A細(xì)胞、HEC1A細(xì)胞
MDA-MB-468人乳腺癌細(xì)胞代次低|培養(yǎng)基|送STR圖譜
D283MED Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:每周換液2-3次。;生長特性: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:Lu99A細(xì)胞、HEK293S細(xì)胞、DoTc2細(xì)胞
SK-MEL-28 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:3-1:8傳代,2-3天換液1次。;生長特性:貼壁生長;形態(tài)特性:星形的;相關(guān)產(chǎn)品有:HSF細(xì)胞、AQ-Mel細(xì)胞、4-1st細(xì)胞
HPMEC Cells;背景說明: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。;生長特性:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:Hela-mock細(xì)胞、GEO細(xì)胞、FAK+/+細(xì)胞
NCI-H1522 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:H441細(xì)胞、GM03671細(xì)胞、SK-HEP-1細(xì)胞
JIMT Cells;背景說明:乳腺癌;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:HECV細(xì)胞、OCILY19細(xì)胞、SUPB15細(xì)胞
B6ft-1 Cells(提供STR鑒定圖譜)
MJ Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:每周換液兩次;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:RN細(xì)胞、NCI-SNU-119細(xì)胞、Jurkat-FHCRC細(xì)胞
CCD-841CoN Cells;背景說明:結(jié)腸上皮細(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:HPF細(xì)胞、Tsup-1細(xì)胞、hTERT-RPE細(xì)胞
HLE B-3 Cells;背景說明:晶狀體;Ad12-SV40轉(zhuǎn)化;男性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:M.D. Anderson-Prostate Cancer-2b細(xì)胞、Ly1細(xì)胞、CZ-1細(xì)胞
WERI-Rb 1 Cells;背景說明:WERI-Rb-I細(xì)胞株是1974年R.M. McFall 和 T.W. Sery建立的兩株人眼癌細(xì)胞系中的一株。 細(xì)胞能在Difco Bacto-Agar中存活但不形成克隆。 掃描電鏡顯示在表面囊泡,板狀偽足和微絨毛在數(shù)量上和頻率上的改變。 細(xì)胞分化研究,腫瘤治療的動物模型和生化評價都涉及這株細(xì)胞。;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:圓形細(xì)胞聚集成葡萄狀;相關(guān)產(chǎn)品有:C4-2細(xì)胞、RK13細(xì)胞、Y3-Ag1,2,3細(xì)胞
C-4-I 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:Capan2細(xì)胞、beta-TC6細(xì)胞、Jijoye細(xì)胞
Pt K2 (NBL-5) 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:NP69SV40T細(xì)胞、Cor L88細(xì)胞、NCIH1650細(xì)胞
Pt K2 (NBL-5) 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:NP69SV40T細(xì)胞、Cor L88細(xì)胞、NCIH1650細(xì)胞
NIH:OVCAR-5 Cells;背景說明: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。;生長特性:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:Ca9-22細(xì)胞、HCT-GEO細(xì)胞、Hs870T細(xì)胞
GM10225 Cells(提供STR鑒定圖譜)
HAP1 C9orf72 (-) SMCR8 (-) 4 Cells(提供STR鑒定圖譜)
H35 Cells;背景說明:在糖皮質(zhì)激素、胰島素或cAMP衍生物的誘導(dǎo)下可以產(chǎn)生酪酸基轉(zhuǎn)移酶;可被逆轉(zhuǎn)錄病毒感染;可產(chǎn)生白蛋白、轉(zhuǎn)鐵蛋白、凝血酶原;在AxC大鼠中可以成瘤。;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:OV 2008細(xì)胞、6T-CEM細(xì)胞、OVCAR8細(xì)胞
MES-SA/Dx5 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:2-1:8傳代;每周2-3次。;生長特性:貼壁生長;形態(tài)特性:成纖維細(xì)胞樣 ;相關(guān)產(chǎn)品有:Glioma-261細(xì)胞、B16-F1細(xì)胞、HANK1細(xì)胞
L-6TG Cells;背景說明:肌母 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:P-2003細(xì)胞、A875細(xì)胞、GS-9L細(xì)胞
MX1 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:BXPC3細(xì)胞、ASH-3細(xì)胞、Lu-65細(xì)胞
KYSE510 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:Eph4 1424細(xì)胞、AE1201細(xì)胞、Ramos 2G6.4C10細(xì)胞
LS-123 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:4—1:8傳代,每周換液2—3次;生長特性:貼壁生長;形態(tài)特性:上皮樣;相關(guān)產(chǎn)品有:Hs 739.T細(xì)胞、HEK293-F細(xì)胞、H2330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
HFL-1 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:消化3-5分鐘。1:2。3天內(nèi)可長滿。;生長特性:貼壁生長;形態(tài)特性:成纖維細(xì)胞樣;相關(guān)產(chǎn)品有:CCRF-SB細(xì)胞、RCC10RGB細(xì)胞、H196細(xì)胞
HG03649 Cells(提供STR鑒定圖譜)
IEC-CF7 Cells(提供STR鑒定圖譜)
LRo0022 Cells(提供STR鑒定圖譜)
NCKDi004-A Cells(提供STR鑒定圖譜)
PB32-4 Cells(提供STR鑒定圖譜)
Ubigene HEK293 GSTP1 KO Cells(提供STR鑒定圖譜)
WG1531 Cells(提供STR鑒定圖譜)
HAP1 STAT3 (-) 1 Cells(提供STR鑒定圖譜)
293 H 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:RGC5細(xì)胞、NCI-H2291細(xì)胞、H-125細(xì)胞
H-23 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:3傳代;3-4天1次。;生長特性:貼壁生長;形態(tài)特性:上皮樣;相關(guān)產(chǎn)品有:L 363細(xì)胞、SK-N-BE(2C)細(xì)胞、NCI-H187細(xì)胞
PZ-HPV-7 Cells;背景說明:前列腺上皮細(xì)胞;HPV18轉(zhuǎn)化;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:NCI-SNU-216細(xì)胞、174xCEM.T2細(xì)胞、HEK-293FT細(xì)胞
H-1734 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:4-1:6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:JM-1細(xì)胞、3T3NIH細(xì)胞、HBL-100細(xì)胞
2E8 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:2-4天換液1次。;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:HCT 8細(xì)胞、U-87細(xì)胞、SKUT1細(xì)胞
2E8 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:2-4天換液1次。;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:HCT 8細(xì)胞、U-87細(xì)胞、SKUT1細(xì)胞
HCT GEO Cells;背景說明:結(jié)腸癌;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:ISHI細(xì)胞、Rainbow Trout Embryo細(xì)胞、T_T_細(xì)胞
MCF-7B Cells;背景說明:浸潤性導(dǎo)管癌;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:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:Jurkat E6.1細(xì)胞、TFK-1細(xì)胞、NCIH1703細(xì)胞
HOS-MNNG Cells;背景說明:骨肉瘤;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:GB1細(xì)胞、HUC細(xì)胞、H187細(xì)胞
CAL-148 Cells;背景說明:乳腺癌;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:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:253J-Bladder-V細(xì)胞、T-47-D細(xì)胞、COLO680N細(xì)胞
293S 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:CL-34細(xì)胞、LC1sq細(xì)胞、RBL-2H3細(xì)胞
293S 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:CL-34細(xì)胞、LC1sq細(xì)胞、RBL-2H3細(xì)胞
UMC11 Cells;背景說明:肺腫瘤;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:U-373-MG細(xì)胞、KRC/Y細(xì)胞、NTERA-2 cl.D1細(xì)胞
EFM-192A Cells;背景說明:乳腺癌;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:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:H524細(xì)胞、Anip 973細(xì)胞、Mv1Lu細(xì)胞
NCI-H-295 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:KM932細(xì)胞、LN-229細(xì)胞、NCCIT細(xì)胞
SCA3.A8 Cells(提供STR鑒定圖譜)
OCI-Ly19 Cells;背景說明:彌漫大B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:T84細(xì)胞、K-1735細(xì)胞、TNC-1B12B4細(xì)胞
COLO-824 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:Med 341細(xì)胞、Rat Skin 1細(xì)胞、M1細(xì)胞
GM2219C Cells;背景說明:MOLT-4與MOLT-3來源于一名19歲的男性急性淋巴細(xì)胞性白血病的復(fù)發(fā)患者,該患者前期接受過多種藥物聯(lián)合化療。MOLT-4細(xì)胞系為T淋巴細(xì)胞起源,p53基因的第248位密碼子有一個G→A突變,不表達(dá)p53,不表達(dá)免疫球蛋白或EB病毒;可產(chǎn)生高水平的末端脫氧核糖轉(zhuǎn)移酶;表達(dá)CD1(49%),CD2(35%),CD3A(26%)B(33%)C(34%),CD4(55%),CD5(72%),CD6(22%),CD7(77%)。;傳代方法:1:2傳代;生長特性:懸浮生長;形態(tài)特性:淋巴母細(xì)胞樣;圓形;相關(guān)產(chǎn)品有:AK細(xì)胞、HEK 293-EBNA細(xì)胞、Loucy細(xì)胞
H-1563 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:NCI-H2023細(xì)胞、MIN6細(xì)胞、NCIH1568細(xì)胞
Tn-5 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:MHCC97H細(xì)胞、AG06814-M細(xì)胞、16-HBE細(xì)胞
HLEB3 Cells;背景說明:晶狀體;Ad12-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-RH 7777細(xì)胞、2780CP細(xì)胞、NRK-52E細(xì)胞
MDA-MB-468人乳腺癌細(xì)胞代次低|培養(yǎng)基|送STR圖譜
Jiyoye 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:ABC-1細(xì)胞、LNCaP C4-2細(xì)胞、3AO細(xì)胞
NCI-H196 Cells;背景說明:詳見相關(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:NIE-115細(xì)胞、Centre Antoine Lacassagne-12T細(xì)胞、L615細(xì)胞
Z138 Cells;背景說明:詳見相關(guān)文獻(xiàn)介紹;傳代方法:1:5-1:15傳代;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:NCI-H520細(xì)胞、HeLa 229細(xì)胞、KATOIII細(xì)胞
T-ALL1 Cells;背景說明:該細(xì)胞源于一名復(fù)發(fā)T-ALL(急性T淋巴細(xì)胞性白血?。┑膬和耐庵苎痪哂泻軓姷募?xì)胞毒性,體內(nèi)體外實驗中都能破壞腫瘤細(xì)胞;IL-2可使細(xì)胞更好地生長;α/β TCR陽性,γ/δ TCR陰性;可產(chǎn)生IFNγ、TNF-α和GM-CSF。;傳代方法:維持細(xì)胞密度在4×105-1×106 cells/ml之間,2-3天換液1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:RS(4;11)細(xì)胞、CATH.a細(xì)胞、1.1B4細(xì)胞
Ly8 Cells;背景說明:彌漫大B淋巴瘤;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:Vx-2細(xì)胞、HR1K細(xì)胞、3T3-Swiss albino細(xì)胞
C8D1A Cells;背景說明:該永生化細(xì)胞系源自出生8天小鼠小腦組織,由B Pessac, D Trisler建立。該細(xì)胞具有小神經(jīng)膠質(zhì)細(xì)胞特征。該細(xì)胞為GFAP陽性細(xì)胞,除此之外,沒有檢測到其它神經(jīng)膠質(zhì)神經(jīng)元或小神經(jīng)膠質(zhì)細(xì)胞的分子標(biāo)記。;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:NCIH1930細(xì)胞、EFM-192A細(xì)胞、MCF7/WT細(xì)胞
WEHI-164 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:K7M2細(xì)胞、BCP1細(xì)胞、HuH7細(xì)胞
NCIH196 Cells;背景說明:詳見相關(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:DU 145細(xì)胞、HEK-293-EBNA細(xì)胞、SK-NMC細(xì)胞
BayGenomics ES cell line CSD368 Cells(提供STR鑒定圖譜)
BayGenomics ES cell line RRT115 Cells(提供STR鑒定圖譜)
BayGenomics ES cell line YTC281 Cells(提供STR鑒定圖譜)
ISOS-1 Cells(提供STR鑒定圖譜)
PCRP-STAT5B-1B10 Cells(提供STR鑒定圖譜)
LO-HRP-15 Cells(提供STR鑒定圖譜)
" "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=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=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=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=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=15153330; DOI=10.1593/neo.3292; PMCID=PMC1502105
Watts G.S., Oshiro M.M., Junk D.J., Wozniak R.J., Watterson S.J., Domann F.E., Futscher B.W.
The acetyltransferase p300/CBP-associated factor is a p53 target gene in breast tumor cells.
Neoplasia 6:187-194(2004)
PubMed=15677628; DOI=10.1093/carcin/bgi032
Gorringe K.L., Chin S.-F., Pharoah P.D.P., Staines J.M., Oliveira C., Edwards P.A.W., Caldas C.
Evidence that both genetic instability and selection contribute to the accumulation of chromosome alterations in cancer.
Carcinogenesis 26:923-930(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=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=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=18262045; DOI=10.1016/j.cancergencyto.2007.05.030
Xu J., Chambers A.F., Tuck A.B., Rodenhiser D.I.
Molecular cytogenetic characterization of human breast cancer cell line MDA-MB-468 and its variant 468LN, which displays aggressive lymphatic metastasis.
Cancer Genet. Cytogenet. 181:1-7(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)
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=21778573; DOI=10.3233/BD-2010-0307; PMCID=PMC3532890
Chavez K.J., Garimella S.V., Lipkowitz S.
Triple negative breast cancer cell lines: one tool in the search for better treatment of triple negative breast cancer.
Breast Dis. 32:35-48(2010)
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=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=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=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=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=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=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=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=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=25699542; DOI=10.15252/msb.20145664; PMCID=PMC4358660
Muellner M.K., Mair B., Ibrahim Y., Kerzendorfer C., Lechtermann H., Trefzer C., Klepsch F., Muller A.C., Leitner E., Macho-Maschler S., Superti-Furga G., Bennett K.L., Baselga J., Rix U., Kubicek S., Colinge J., Serra V., Nijman S.M.B.
Targeting a cell state common to triple-negative breast cancers.
Mol. Syst. Biol. 11:789-789(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=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=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=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=29273624; DOI=10.1101/gr.226019.117; PMCID=PMC5793780
Franco H.L., Nagari A., Malladi V.S., Li W.-Q., Xi Y.-X., Richardson D., Allton K.L., Tanaka K., Li J., Murakami S., Keyomarsi K., Bedford M.T., Shi X.-B., Li W., Barton M.C., Dent S.Y.R., Kraus W.L.
Enhancer transcription reveals subtype-specific gene expression programs controlling breast cancer pathogenesis.
Genome Res. 28:159-170(2018)
PubMed=30613774; DOI=10.1126/sciadv.aau7314; PMCID=PMC6314821
Vande Voorde J., Ackermann T., Pfetzer N., Sumpton D., Mackay G., Kalna G., Nixon C., Blyth K., Gottlieb E., Tardito S.
Improving the metabolic fidelity of cancer models with a physiological cell culture medium.
Sci. Adv. 5:eaau7314.1-eaau7314.14(2019)
PubMed=30787054; DOI=10.1158/1055-9965.EPI-18-1132; PMCID=PMC6548687
Hooker S.E. Jr., Woods-Burnham L., Bathina M., Lloyd S., Gorjala P., Mitra R., Nonn L., Kimbro K.S., Kittles R.A.
Genetic ancestry analysis reveals misclassification of commonly used cancer cell lines.
Cancer Epidemiol. Biomarkers Prev. 28:1003-1009(2019)
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)
PubMed=31068700; DOI=10.1038/s41586-019-1186-3; PMCID=PMC6697103
Ghandi M., Huang F.W., Jane-Valbuena J., Kryukov G.V., Lo C.C., McDonald E.R. 3rd, 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=31978347; DOI=10.1016/j.cell.2019.12.023; PMCID=PMC7339254
Nusinow D.P., Szpyt J., Ghandi M., Rose C.M., McDonald E.R. 3rd, 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=32576280; DOI=10.1186/s13058-020-01300-y; PMCID=PMC7310532
Finlay-Schultz J., Jacobsen B.M., Riley D., Paul K.V., Turner S., Ferreira-Gonzalez A., Harrell J.C., Kabos P., Sartorius C.A.
New generation breast cancer cell lines developed from patient-derived xenografts.
Breast Cancer Res. 22:68.1-68.12(2020)"
關(guān)鍵字: MDA-MB-468人乳腺癌細(xì)胞代次低|;復(fù)蘇細(xì)胞系;細(xì)胞STR鑒定報告;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