"Caco-2人結(jié)直腸腺癌細胞代次低|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
常見細胞貼壁較弱原因:在遇到運輸?shù)蜏丶罢鹗帯⑹覝仂o置太長時間、添加的培養(yǎng)基或其他試劑過冷、密度較高、聚集未吹散、加液吹打到細胞面等情況時會出現(xiàn)明顯的成片脫落現(xiàn)象,此時若脫落現(xiàn)象不嚴(yán)重應(yīng)盡快放回培養(yǎng)基繼續(xù)培養(yǎng),若呈大片脫落的情況時需要收集細胞重新消化吹散并接種;建議使用經(jīng)過包被或者高貼壁培養(yǎng)瓶培養(yǎng)細胞,盡量避免接觸低溫或密度過高。
換液周期:每周2-3次
NCI-322 Cells;背景說明:詳見相關(guān)文獻介紹;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:H-2171細胞、H226細胞、NCI-H460細胞
MD Anderson-Metastatic Breast-157 Cells;背景說明:該細胞源自一位患有乳腺髓樣癌的44歲黑人女性,表達WNT7B癌基因,細胞與細胞邊界處有細胞橋粒、微絨毛、張力細絲。;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:上皮樣;相關(guān)產(chǎn)品有:MDCKII細胞、NCI-HUT-596細胞、SK-ES細胞
OCI-Ly03 Cells;背景說明:彌漫大B淋巴瘤;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:L929細胞、A-253細胞、MC/9細胞
Caco-2人結(jié)直腸腺癌細胞代次低|培養(yǎng)基|送STR圖譜
背景信息:細胞株分離自一個原發(fā)性結(jié)腸癌。當(dāng)細胞長滿時,表現(xiàn)出典型的腸細胞分化的特征。Caco-2細胞表達維生素A結(jié)合蛋白I和視黃醇結(jié)合蛋白II,角蛋白陽性。
┈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;
懸浮細胞的傳代培養(yǎng):1)離心全換液法:通過離心(800-1000rpm,5min)去除全部舊的培養(yǎng)基,更換新鮮培養(yǎng)基;該方法適合“皮實“好養(yǎng)的懸浮細胞換液(如K562),或當(dāng)前細胞狀態(tài)良好、密度較高導(dǎo)致培養(yǎng)基消耗較大的情況;換液徹底,能去除部分細胞碎片,但會對細胞造成一定程度的機械損傷;2)離心半換液法:通過離心(800-1000rpm,5min)50%細胞懸液,更換50%體積的新鮮培養(yǎng)基。該方法適合比較“矯情“難養(yǎng)的細胞(如THP-1),或正在調(diào)整狀態(tài)中、密度較低但碎片較多需要去除的情況;3)沉降換液法:利用重力自然沉降,將培養(yǎng)基與細胞分離,達到全部或部分更換為新鮮培養(yǎng)基;只適合能成一定大小細胞團(否則無法自然沉降,只能低速離心)的細胞,尤其是處理依賴細胞聚集才能增殖的細胞,如NK-92、Jurkat;可最大限度避免離心過程造成的機械損傷,同時保留聚集的細胞團。
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:細胞主要來源ATCC、ECACC、DSMZ、RIKEN等細胞庫
Caco-2人結(jié)直腸腺癌細胞代次低|培養(yǎng)基|送STR圖譜
物種來源:人源、鼠源等其它物種來源
BJAB-1 Cells;背景說明:Burkitt's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:SF767細胞、SkMel31細胞、Hs739T細胞
EM-3 Cells;背景說明:髓系白血??;女性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:懸浮;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:WERI-Rb-1細胞、SUP T1細胞、CNE-2細胞
TE-9 Cells;背景說明:詳見相關(guān)文獻介紹;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:DMS-79細胞、MCF/Adr細胞、ECC10細胞
Karpas422 Cells;背景說明:詳見相關(guān)文獻介紹;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:CAL 12細胞、Hepa 1-6細胞、W133細胞
┈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:上皮細胞樣
細胞傳代培養(yǎng)實驗:體外培養(yǎng)的原代細胞或細胞株要在體外持續(xù)地培養(yǎng)就必須傳代,以便獲得穩(wěn)定的細胞株或得到大量的同種細胞,并維持細胞種的延續(xù)。培養(yǎng)的細胞形成單層匯合以后,由于密度過大生存空間不足而引起營養(yǎng)枯竭,將培養(yǎng)的細胞分散,從容器中取出,以1:2或1:3以上的比率轉(zhuǎn)移到另外的容器中進行培養(yǎng),即為傳代培養(yǎng);細胞“一代”指從細胞接種到分離再培養(yǎng)的一段期間,與細胞世代或倍增不同。在一代中,細胞培增3~6次。細胞傳代后,一般經(jīng)過三個階段:游離期、指數(shù)增生期和停止期。常用細胞分裂指數(shù)表示細胞增殖的旺盛程度,即細胞群的分裂相數(shù)/100個細胞。一般細胞分裂指數(shù)介于0.2%~0.5%,腫瘤細胞可達3~5%;細胞接種2~3天分裂增殖旺盛,是活力ZuiHAO時期,稱指數(shù)增生期(對數(shù)生長期),適宜進行各種試驗。實驗步驟:1.將長成的培養(yǎng)細胞從二氧化碳培養(yǎng)箱中取出,在超凈工作臺中倒掉瓶內(nèi)的培養(yǎng),加入少許消化。(以面蓋住細胞為宜),靜置5~10分鐘。2.在倒置鏡下觀察被消化的細胞,如果細胞變圓,相互之間不再連接成片,這時應(yīng)立即在超凈臺中將消化倒掉,加入3~5ml新鮮培養(yǎng),吹打,制成細胞懸。3.將細胞懸吸出2ml左右,加到另一個培養(yǎng)瓶中并向每個瓶中分別加3ml左右培養(yǎng),蓋HAO瓶塞,送回二氧化碳培養(yǎng)箱中,繼續(xù)進行培養(yǎng)。一般情況,傳代后的細胞在2小時左右就能附著在培養(yǎng)瓶壁上,2~4天就可在瓶內(nèi)形成單層,需要再次進行傳代。
RPMI No. 1846 Cells;背景說明:詳見相關(guān)文獻介紹;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-H2081細胞、MDA-MB-231 #4175細胞、SK-OV-3細胞
Japanese Tissue Culture-28 Cells;背景說明:詳見相關(guān)文獻介紹;傳代方法:1:2傳代。3天內(nèi)可長滿。;生長特性:貼壁生長;形態(tài)特性:上皮細胞;相關(guān)產(chǎn)品有:HuH-28細胞、Pa18C細胞、Molm14細胞
WIL2 Secreting Cells;背景說明:詳見相關(guān)文獻介紹;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:H-441細胞、SNU-1細胞、Human fetal lung fibroblast 1細胞
Caov-3 Cells;背景說明:該細胞1976年建系,源自一位54歲白人女性的卵巢腺癌組織。;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:BLO 11細胞、LUDLU 1細胞、SUM-52細胞
MES-SA/Dx5 Cells;背景說明:詳見相關(guān)文獻介紹;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:成纖維細胞樣 ;相關(guān)產(chǎn)品有:Glioma-261細胞、B16-F1細胞、HANK1細胞
QBC939 Cells;背景說明:詳見相關(guān)文獻介紹;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:HRA-19細胞、TE9細胞、C518細胞
MDA231 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:JURKAT E-61細胞、Panc813細胞、KU-812細胞
HLEpiC Cells;背景說明:晶狀體;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:Tca8113細胞、AAV293細胞、DHL5細胞
Hs840_T Cells;背景說明:詳見相關(guān)文獻介紹;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:成纖維細胞;相關(guān)產(chǎn)品有:LIXC002細胞、578T細胞、EoL-1 cell細胞
CEM/C1 Cells;背景說明:詳見相關(guān)文獻介紹;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:H-2106細胞、DH-82細胞、NK-92.05細胞
PLA801C Cells;背景說明:肺巨細胞癌;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細胞、CCD-19Lu細胞、Experimental Mammary Tumour-6細胞
RKOAS451 Cells;背景說明:詳見相關(guān)文獻介紹;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:T2(174 x CEM.T2)細胞、H-2141細胞、H-820細胞
MDA415 Cells;背景說明:這株細胞表達WNT7B癌基因。8168088].帶瘤患者來自巴拉圭,雖然填報的是白人,但細胞表型存在G6PDA型,顯示其屬于混血。細胞株形成平展延伸的上皮細胞樣,在電鏡下呈現(xiàn)結(jié)節(jié),伴隨著延伸的微管和微板。不容易用胰酶消化。;傳代方法:消化5-10分鐘。1:2。4-5天長滿。;生長特性:貼壁生長;形態(tài)特性:上皮細胞;相關(guān)產(chǎn)品有:H2135細胞、A 375細胞、HPDLF細胞
NCI-H1092 Cells;背景說明:詳見相關(guān)文獻介紹;傳代方法:隨細胞的密度而增加;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:RPMI 2650細胞、COR-L105細胞、KOSC-2細胞
THP1 Cells;背景說明:該細胞從一名1歲的患有急性單核細胞性白血病的男孩的外周血中分離建立。該細胞可以吞噬乳膠顆粒和激活的紅細胞,細胞膜和胞漿內(nèi)均沒有免疫球蛋白,表達C3R和FcR;可受佛波酯TPA誘導(dǎo)向單核系方向分化;可作為轉(zhuǎn)染宿主。;傳代方法:維持細胞濃度在2-4×105-8×105/ml,勿超過1×106/ml;2-3天換液1次。;生長特性:懸浮生長;形態(tài)特性:單核細胞;相關(guān)產(chǎn)品有:HBVP細胞、WM115-mel細胞、MUTZ3細胞
HCT_116 Cells;背景說明:結(jié)腸腺癌;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:RT4-D6P2T細胞、Hs-675-T細胞、WB F344細胞
H676 Cells;背景說明:詳見相關(guān)文獻介紹;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:HCC38細胞、SKMES-1細胞、BC-025細胞
Abcam HCT 116 PCK1 KO Cells(提供STR鑒定圖譜)
AG07988 Cells(提供STR鑒定圖譜)
BayGenomics ES cell line DTM092 Cells(提供STR鑒定圖譜)
BayGenomics ES cell line XA124 Cells(提供STR鑒定圖譜)
BLSC-KU-8 Cells(提供STR鑒定圖譜)
CMC-hiPSC-003 Cells(提供STR鑒定圖譜)
DA03542 Cells(提供STR鑒定圖譜)
EPG85-257RDB Cells(提供STR鑒定圖譜)
GM06094 Cells(提供STR鑒定圖譜)
HHUA Cells;背景說明:子宮內(nèi)膜癌;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:U266BL細胞、Hs-578Bst細胞、NK92-MI細胞
Caco-2人結(jié)直腸腺癌細胞代次低|培養(yǎng)基|送STR圖譜
RAW 264.7 Cells;背景說明:單核巨噬細胞白血?。恍坌?;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:NCI-H2172細胞、MFM-223細胞、SK-GT-4細胞
118 MG Cells;背景說明:注意: 據(jù)報道來自不同個體的膠質(zhì)母細胞瘤細胞株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細胞遺傳學(xué)上很相似并有至少六個衍生標(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:HNE3細胞、LK-2細胞、B16/F10細胞
ABC1 Cells;背景說明:詳見相關(guān)文獻介紹;傳代方法:每周換液2次。;生長特性:貼壁生長;形態(tài)特性:上皮細胞樣;相關(guān)產(chǎn)品有:Hs-852-T細胞、Sci-1細胞、R1800[RA]細胞
Rat Glomerular Endothelial Cells;背景說明:腎小球;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:NCIH747細胞、JeKo-1細胞、NCI747細胞
RPMI 8226/S Cells;背景說明:來源于一位61歲的男性漿細胞瘤患者;可產(chǎn)生免疫球蛋白輕鏈,未檢測到重鏈。;傳代方法:按1:2傳代,5-6小時可以看到細胞分裂;生長特性:懸浮生長;形態(tài)特性:淋巴母細胞樣;相關(guān)產(chǎn)品有:AC16 [Human hybrid]細胞、NCIH1650細胞、PANC-1細胞
ACK30 Cells(提供STR鑒定圖譜)
NCIH208 Cells;背景說明:詳見相關(guān)文獻介紹;傳代方法:1:2-1:4傳代;每周換液2次。;生長特性:懸浮生長,有少數(shù)細胞疏松貼壁;形態(tài)特性:上皮樣;相關(guān)產(chǎn)品有:L6565細胞、Murine Long bone Osteocyte-Y4細胞、M-G63細胞
KRC Y Cells;背景說明:腎透明細胞癌;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:L540細胞、B-95-8細胞、McG-1細胞
T_T_ Cells;背景說明:詳見相關(guān)文獻介紹;傳代方法:10^5 cells/60mm dish;生長特性:貼壁生長;形態(tài)特性:上皮細胞樣;相關(guān)產(chǎn)品有:BN-CL2細胞、NCIH82細胞、LP1細胞
697 Cells;背景說明:B淋巴細胞白血??;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:NUGC3細胞、CCD 841 CoN細胞、NCI-H841細胞
OVCAR 4 Cells;背景說明:詳見相關(guān)文獻介紹;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:TSCC1細胞、HIEC細胞、NPA-87細胞
Moorfields/Institute of Ophthalmology-Muller 1 Cells;背景說明:視網(wǎng)膜Muller細胞;自發(fā)永生;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:PC 12細胞、NCI-H810細胞、Hs 578.T細胞
Moorfields/Institute of Ophthalmology-Muller 1 Cells;背景說明:視網(wǎng)膜Muller細胞;自發(fā)永生;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:PC 12細胞、NCI-H810細胞、Hs 578.T細胞
Walker256-TC 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:WM239細胞、SW-954細胞、HN4細胞
GM11877 Cells(提供STR鑒定圖譜)
HAP1 DHTKD1 (-) 4 Cells(提供STR鑒定圖譜)
U-138-MG Cells;背景說明:星形細胞瘤;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:SK-GT-2細胞、HNSC細胞、RIN-m5F細胞
NCIH2029 Cells;背景說明:詳見相關(guān)文獻介紹;傳代方法:1:3-1:5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:16-HBE細胞、CFPAC1細胞、Transformed Human Liver Epithelial-3細胞
WSU-DLCL(2) Cells;背景說明:彌漫大B淋巴瘤;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:MDCK細胞、V 79-4細胞、HCV 29細胞
H-2052 Cells;背景說明:詳見相關(guān)文獻介紹;傳代方法:1:3-1:6傳代;生長特性:貼壁生長;形態(tài)特性:上皮細胞;相關(guān)產(chǎn)品有:SUM149-PT細胞、SCL II細胞、Hs 863.T細胞
HCC70 Cells;背景說明:詳見相關(guān)文獻介紹;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:上皮樣;相關(guān)產(chǎn)品有:NCIH1819細胞、KHYG-1細胞、MCF-10 Attached細胞
Bronchial Epithelium transformed with Ad12-SV40 2B Cells;背景說明:從一位非癌個體的正常人支氣管上皮病理切片分離出上皮細胞。這些細胞用腺病毒12-SV40病毒雜交病毒感染并克隆。DEAS-2B細胞保留了對血清反應(yīng)進行鱗關(guān)分化的能力,并有用于篩選誘導(dǎo)或影響分化及致癌的化學(xué)或生物制劑。細胞角蛋白及SV40抗原染色陽性。;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:上皮細胞樣;相關(guān)產(chǎn)品有:QBC(939)細胞、JB 6細胞、HIT T15細胞
D-283 Cells;背景說明:詳見相關(guān)文獻介紹;傳代方法:每周換液2-3次。;生長特性:懸浮細胞的多細胞聚集體,和一些貼壁 Cells;形態(tài)特性:上皮細胞;相關(guān)產(chǎn)品有:NP69細胞、NCIH2023細胞、Vero-E6細胞
OS-732 Cells;背景說明:骨肉瘤;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:6T-CEM細胞、H-EMC-SS細胞、M-1細胞
HHUi003-C Cells(提供STR鑒定圖譜)
IOSE-592F Cells(提供STR鑒定圖譜)
Ma-53 Cells(提供STR鑒定圖譜)
ND07948 Cells(提供STR鑒定圖譜)
PF8-2-177-1 Cells(提供STR鑒定圖譜)
Ubigene A-549 DGKD KO Cells(提供STR鑒定圖譜)
UOMi006-A Cells(提供STR鑒定圖譜)
HCT116-SLC35E2A-KO-c10 Cells(提供STR鑒定圖譜)
PAa Cells;背景說明:肺腺癌;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:ML2細胞、HCC2218細胞、C-8161細胞
Ketr3 Cells;背景說明:詳見相關(guān)文獻介紹;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:HRA19細胞、VE細胞、RPMI7666細胞
GalK 1 Cells;背景說明:詳見相關(guān)文獻介紹;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:Homo sapiens No. 578, breast cells細胞、HEB細胞、WiDr細胞
HOP 92 Cells;背景說明:詳見相關(guān)文獻介紹;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:WiDr/S細胞、624mel細胞、DI-TNC1細胞
CAL-85-1 Cells;背景說明:詳見相關(guān)文獻介紹;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:SW837細胞、WIL2 Secreting細胞、NCI-H1688細胞
CAL-85-1 Cells;背景說明:詳見相關(guān)文獻介紹;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:SW837細胞、WIL2 Secreting細胞、NCI-H1688細胞
T HEECs Cells;背景說明:食管;上皮細胞;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:N1E-115細胞、NALM 6細胞、SHG-44細胞
IMR-90 Cells;背景說明:W.W. Nichols及其同事從一位16周女嬰的肺中取材,建立了人二倍體成纖維細胞株IMR-90。分裂潛能,病毒感受性和其它性質(zhì)都得到了充分研究,因而這株細胞可以作為WI-38或其它標(biāo)準(zhǔn)人肺細胞株的替代株。有報道稱這株細胞在表現(xiàn)出衰老前可倍增58次。;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:LC1細胞、WILL2細胞、MIN6細胞
HONE-1 Cells;背景說明:鼻咽癌;男性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:PG-4 S+L-細胞、GM05372E細胞、H1522細胞
HCC15 Cells;背景說明:詳見相關(guān)文獻介紹;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:FRO81-2細胞、YD-38細胞、MOLT.4細胞
Calf Pulmonary Artery Endothelial Cells;背景說明:肺血管;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:GTL16細胞、T47-D細胞、MDA-468細胞
Calu3 Cells;背景說明:該細胞是從一名25歲的白人男性肺腺癌患者的胸水中分離建立的;該患者曾使用過環(huán)磷酰胺、博來霉素、阿霉素進行治療。該細胞接種至裸鼠可成瘤;可作轉(zhuǎn)染宿主。;傳代方法:消化20分鐘。1:2。5-6天長滿。;生長特性:貼壁生長;形態(tài)特性:上皮樣;相關(guān)產(chǎn)品有:PY8119細胞、CV1細胞、TM3細胞
Hs934T Cells;背景說明:詳見相關(guān)文獻介紹;傳代方法:1:2-1:3傳代,;生長特性:貼壁或懸浮,詳見產(chǎn)品說明書部分;形態(tài)特性:成纖維細胞;相關(guān)產(chǎn)品有:Kit-225-K6細胞、hRPTC細胞、HEK293F細胞
Sol8 Cells;背景說明:骨骼?。籆3H;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:RAW2647細胞、Oregon J-111細胞、U-118MG細胞
MD Anderson-Metastatic Breast-330 Cells;背景說明:詳見相關(guān)文獻介紹;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:RINm-5F細胞、3T3-Swiss albino細胞、EBC1細胞
SES-MaBr-4 Cells(提供STR鑒定圖譜)
Ketr3 Cells;背景說明:詳見相關(guān)文獻介紹;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:HRA19細胞、VE細胞、RPMI7666細胞
Rat Skin 1 Cells;背景說明:該細胞系來源于一大鼠的皮膚組織。2007年由中國科學(xué)院昆明細胞庫建立。;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:UCLA SO M21細胞、B16BL-6細胞、CAL39細胞
SCC4 Cells;背景說明:詳見相關(guān)文獻介紹;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:COLO 201細胞、SMA 560細胞、Pt K2細胞
Tn5 B1-4 Cells;背景說明:詳見相關(guān)文獻介紹;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:CORL51細胞、UCLA-RO 81細胞、B-3細胞
253J-Bladder-V Cells;背景說明:膀胱癌;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:LA 4細胞、KMST-6細胞、PAI細胞
MOLT3 Cells;背景說明:急性T淋巴細胞白血病;男性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:懸浮;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:NCI-H660細胞、P3 (Jiyoye)細胞、293 c18細胞
Caco-2人結(jié)直腸腺癌細胞代次低|培養(yǎng)基|送STR圖譜
SCLC21H Cells;背景說明:小細胞肺癌;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:OCM-1A細胞、Balb/c3T3細胞、MDA-MB-231 #4175細胞
H2029 Cells;背景說明:詳見相關(guān)文獻介紹;傳代方法:1:3-1:5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:CAL27細胞、Panc08.13細胞、Hs 274細胞
87MG Cells;背景說明:詳見相關(guān)文獻介紹;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:BJA-B-1細胞、SK-RC 42細胞、GA10細胞
CAL33 Cells;背景說明:詳見相關(guān)文獻介紹;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:RPMI-1846細胞、SNU-520細胞、NCIH2066細胞
JKT1 Cells;背景說明:精原瘤;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:Hi-5細胞、HCGC細胞、BJ1細胞
Hep 3B2_1-7 Cells;背景說明:肝癌;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:SMMC 7721細胞、SUM-149細胞、PK-13細胞
P3/X63-Ag8 Cells;背景說明:詳見相關(guān)文獻介紹;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:H2171細胞、H2170細胞、GM-215細胞
3T3-A31 Cells;背景說明:胚胎;成纖維;自發(fā)永生;雄性;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:B95.8細胞、COR-L51細胞、LS-123細胞
BayGenomics ES cell line RRF021 Cells(提供STR鑒定圖譜)
BayGenomics ES cell line XG188 Cells(提供STR鑒定圖譜)
E10.3 Cells(提供STR鑒定圖譜)
MOC2-7 Cells(提供STR鑒定圖譜)
TG-5 Cells(提供STR鑒定圖譜)
M-OS Cells(提供STR鑒定圖譜)
" "PubMed=7459858
Rousset M., Zweibaum A., Fogh J.
Presence of glycogen and growth-related variations in 58 cultured human tumor cell lines of various tissue origins.
Cancer Res. 41:1165-1170(1981)
PubMed=3518877; DOI=10.3109/07357908609038260
Fogh J.
Human tumor lines for cancer research.
Cancer Invest. 4:157-184(1986)
PubMed=3349466
Chantret I., Barbat A., Dussaulx E., Brattain M.G., Zweibaum A.
Epithelial polarity, villin expression, and enterocytic differentiation of cultured human colon carcinoma cells: a survey of twenty cell lines.
Cancer Res. 48:1936-1942(1988)
PubMed=2914637; DOI=10.1016/0016-5085(89)90897-4
Hidalgo I.J., Raub T.J., Borchardt R.T.
Characterization of the human colon carcinoma cell line (Caco-2) as a model system for intestinal epithelial permeability.
Gastroenterology 96:736-749(1989)
PubMed=7764660; DOI=10.1007/BF00749813
Hashimoto K., Shimizu M.
Epithelial properties of human intestinal Caco-2 cells cultured in a serum-free medium.
Cytotechnology 13:175-184(1993)
PubMed=8253353; DOI=10.1016/0016-5085(93)91076-t
Chastre E., Empereur S., Di Gioia Y., El Mahdani N., Mareel M.M., Vleminckx K.L., Van Roy F.M., Bex V., Emami S., Spandidos D.A., Gespach C.
Neoplastic progression of human and rat intestinal cell lines after transfer of the ras and polyoma middle T oncogenes.
Gastroenterology 105:1776-1789(1993)
PubMed=8508948; DOI=10.1111/j.1432-0436.1993.tb00645.x
de Bruine A.P., de Vries J.E., Dinjens W.N.M., Moerkerk P.T.M., van der Linden E.P.M., Pijls M.M.J., ten Kate J., Bosman F.T.
Human Caco-2 cells transfected with c-Ha-Ras as a model for endocrine differentiation in the large intestine.
Differentiation 53:51-60(1993)
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=10092214; DOI=10.1002/(SICI)1097-4652(199812)177:4<618::AID-JCP12>3.0.CO;2-R
Levy P., Robin H., Kornprobst M., Capeau J., Cherqui G.
Enterocytic differentiation of the human Caco-2 cell line correlates with alterations in integrin signaling.
J. Cell. Physiol. 177:618-627(1998)
PubMed=10612807; DOI=10.1002/(SICI)1098-2264(200002)27:2<183::AID-GCC10>3.0.CO;2-P; PMCID=PMC4721570
Ghadimi B.M., Sackett D.L., Difilippantonio M.J., Schrock E., Neumann T., Jauho A., Auer G., Ried T.
Centrosome amplification and instability occurs exclusively in aneuploid, but not in diploid colorectal cancer cell lines, and correlates with numerical chromosomal aberrations.
Genes Chromosomes Cancer 27:183-190(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=11416159; DOI=10.1073/pnas.121616198; PMCID=PMC35459
Masters J.R.W., Thomson J.A., Daly-Burns B., Reid Y.A., Dirks W.G., Packer P., Toji L.H., Ohno T., Tanabe H., Arlett C.F., Kelland L.R., Harrison M., Virmani A.K., Ward T.H., Ayres K.L., Debenham P.G.
Short tandem repeat profiling provides an international reference standard for human cell lines.
Proc. Natl. Acad. Sci. U.S.A. 98:8012-8017(2001)
PubMed=11668190; DOI=10.1177/002215540104901105
Quentmeier H., Osborn M., Reinhardt J., Zaborski M., Drexler H.G.
Immunocytochemical analysis of cell lines derived from solid tumors.
J. Histochem. Cytochem. 49:1369-1378(2001)
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=14599474; DOI=10.1016/S0887-2333(03)00095-X
Ranaldi G., Consalvo R., Sambuy Y., Scarino M.L.
Permeability characteristics of parental and clonal human intestinal Caco-2 cell lines differentiated in serum-supplemented and serum-free media.
Toxicol. In Vitro 17:761-767(2003)
PubMed=15316659; DOI=10.1007/s00018-004-4222-9; PMCID=PMC7079841
Cinatl J. Jr., Hoever G., Morgenstern B., Preiser W., Vogel J.-U., Hofmann W.-K., Bauer G., Michaelis M., Rabenau H.F., Doerr H.-W.
Infection of cultured intestinal epithelial cells with .
Cell. Mol. Life Sci. 61:2100-2112(2004)
PubMed=15731278; DOI=10.1128/JVI.79.6.3846-3850.2005; PMCID=PMC1075706
Mossel E.C., Huang C., Narayanan K., Makino S., Tesh R.B., Peters C.J.
Exogenous ACE2 expression allows refractory cell lines to support replication.
J. Virol. 79:3846-3850(2005)
PubMed=15868485; DOI=10.1007/s10565-005-0085-6
Sambuy Y., De Angelis I., Ranaldi G., Scarino M.L., Stammati A., Zucco F.
The Caco-2 cell line as a model of the intestinal barrier: influence of cell and culture-related factors on Caco-2 cell functional characteristics.
Cell Biol. Toxicol. 21:1-26(2005)
PubMed=16418264; DOI=10.1073/pnas.0510146103; PMCID=PMC1327731
Liu Y., Bodmer W.F.
Analysis of p53 mutations and their expression in 56 colorectal cancer cell lines.
Proc. Natl. Acad. Sci. U.S.A. 103:976-981(2006)
PubMed=16854228; DOI=10.1186/1476-4598-5-29; PMCID=PMC1550420
Bandres Elizalde E.M., Cubedo E., Agirre X., Malumbres R., Zarate R., Ramirez N., Abajo A., Navarro A., Moreno I., Monzo M., Garcia-Foncillas J.
Identification by real-time PCR of 13 mature microRNAs differentially expressed in colorectal cancer and non-tumoral tissues.
Mol. Cancer 5:29.1-29.10(2006)
PubMed=18258742; DOI=10.1073/pnas.0712176105; PMCID=PMC2268141
Emaduddin M., Bicknell D.C., Bodmer W.F., Feller S.M.
Cell growth, global phosphotyrosine elevation, and c-Met phosphorylation through Src family kinases in colorectal cancer cells.
Proc. Natl. Acad. Sci. U.S.A. 105:2358-2362(2008)
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=20606684; DOI=10.1038/sj.bjc.6605780; PMCID=PMC2920028
Bracht K., Nicholls A.M., Liu Y., Bodmer W.F.
5-fluorouracil response in a large panel of colorectal cancer cell lines is associated with mismatch repair deficiency.
Br. J. Cancer 103:340-346(2010)
PubMed=20831567; DOI=10.1111/j.1582-4934.2010.01170.x; PMCID=PMC3918049
Ma Y.-L., Zhang P., Wang F., Moyer M.P., Yang J.-J., Liu Z.-H., Peng J.-Y., Chen H.-Q., Zhou Y.-K., Liu W.-J., Qin H.-L.
Human embryonic stem cells and metastatic colorectal cancer cells shared the common endogenous human microRNA-26b.
J. Cell. Mol. Med. 15:1941-1954(2011)
PubMed=21607810; DOI=10.1208/s12248-011-9283-8; PMCID=PMC3160153
Borchardt R.T.
Hidalgo, I.J., Raub, T.J., and Borchardt, R.T.: Characterization of the human colon carcinoma cell line (Caco-2) as a model system for intestinal epithelial permeability, Gastroenterology, 96, 736-749, 1989 -- the backstory.
AAPS J. 13:323-327(2011)
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=23932154; DOI=10.1016/j.radonc.2013.06.032
Salendo J., Spitzner M., Kramer F., Zhang X., Jo P., Wolff H.A., Kitz J., Kaulfuss S., Beissbarth T., belstein M., Ghadimi M., Grade M., Gaedcke J.
Identification of a microRNA expression signature for chemoradiosensitivity of colorectal cancer cells, involving miRNAs-320a, -224, -132 and let7g.
Radiother. Oncol. 108:451-457(2013)
PubMed=24042735; DOI=10.1038/oncsis.2013.35; PMCID=PMC3816225
Ahmed D., Eide P.W., Eilertsen I.A., Danielsen S.A., Eknaes M., Hektoen M., Lind G.E., Lothe R.A.
Epigenetic and genetic features of 24 colon cancer cell lines.
Oncogenesis 2:e71.1-e71.8(2013)
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=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=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=29787057; DOI=10.1007/978-3-319-16104-4_10
Lea T.
Caco-2 cell line.
(In book chapter) The impact of food bioactives on health. In vitro and ex vivo models; Verhoeckx K., Cotter P., Lopez-Exposito I., Kleiveland C., Lea T., Mackie A., Requena T., Swiatecka D., Wichers H. (eds.); pp.103-111; Springer; Cham; Switzerland (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=26869432; DOI=10.1016/j.xphs.2015.10.030
Olander M., Wisniewski J.R., Matsson P., Lundquist P., Artursson P.
The proteome of filter-grown Caco-2 cells with a focus on proteins involved in drug disposition.
J. Pharm. Sci. 105:817-827(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=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=29101300; DOI=10.15252/msb.20177701; PMCID=PMC5731344
Frejno M., Zenezini Chiozzi R., Wilhelm M., Koch H., Zheng R.-S., Klaeger S., Ruprecht B., Meng C., Kramer K., Jarzab A., Heinzlmeir S., Johnstone E., Domingo E., Kerr D.J., Jesinghaus M., Slotta-Huspenina J., Weichert W., Knapp S., Feller S.M., Kuster B.
Pharmacoproteomic characterisation of human colon and rectal cancer.
Mol. Syst. Biol. 13:951-951(2017)
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=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)"
關(guān)鍵字: Caco-2人結(jié)直腸腺癌細胞代次低|培養(yǎng);復(fù)蘇細胞系;細胞STR鑒定報告;細胞STR鑒定圖譜;ATCC|DSMZ細胞庫;
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