"SW620人結(jié)腸癌細胞全年復蘇|已有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
公司細胞系形態(tài)漂亮、增殖倍數(shù)高、純度高、功能性強,細胞培養(yǎng)就跟養(yǎng)孩子一個樣。養(yǎng)孩子要喂奶,養(yǎng)細胞要加補液,都需要在前期補充足夠的營養(yǎng),初始狀態(tài)的細胞或剛剛復蘇的細胞還要適量加入血清或細胞因子來幫助它們的存活增殖,如果營養(yǎng)物質(zhì)缺乏,細胞就會不生長甚至死亡。養(yǎng)孩子要從小培養(yǎng)學習,養(yǎng)細胞也得培養(yǎng)寶寶順利生下來,你會經(jīng)常撫摸他,給他看各種顏色,刺激他的五感。細胞也是一樣,分離后的細胞需要使用特定的細胞因子進行活化、增殖。另外加入因子的種類、因子的濃度、加入時間、加入順序都會影響細胞最終的結(jié)果。養(yǎng)孩子最怕孩子生病,養(yǎng)細胞最怕被污染,平時你會仔細觀察寶寶是否嘔吐、是否突然哭鬧,猜測寶寶是否生病了。對于細胞,我們也需要時刻進行觀察的,假如培養(yǎng)液渾濁(污染了),則需要換液后加抗生素;假如細胞增殖不明顯,形態(tài)變差,則可能是因為營養(yǎng)不足了,對貼壁細胞可以消化后重新用新的培養(yǎng)基接種并加倍加入細胞因子含量;對懸浮細胞增殖能力不強的,則不著急補液,只是先補加血清、細胞因子看是否可以好轉(zhuǎn)。培養(yǎng)時還得全程在無菌的環(huán)境,一個小小的偏差,細胞就會死亡。
換液周期:每周2-3次
KYSE-180 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:SUM190細胞、PC-2 [Human pancreatic carcinoma]細胞、SKNBE(1)細胞
OLN 93 Cells;背景說明:膠質(zhì)細胞;自發(fā)永生;Wistar;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:Co320細胞、NCI-H2452細胞、Stanford University-Diffuse Histiocytic Lymphoma-16細胞
MIN6 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:NCIH1568細胞、10RGB細胞、LS 123細胞
背景信息:SW620是從一個51歲男性白人組織中分離得到。由A.Leibovitz等從一個淋巴結(jié)建株。細胞系主要由無絨毛的小園球細胞和雙細胞組成。它僅合成少量癌胚抗原(A)且在裸鼠中有高度的致瘤性
SW620人結(jié)腸癌細胞全年復蘇|已有STR圖譜
產(chǎn)品包裝:復蘇發(fā)貨:T25培養(yǎng)瓶(一瓶)或凍存發(fā)貨:1ml凍存管(兩支)
DSMZ菌株保藏中心成立于1969年,是德國的國家菌種保藏中心。該中心一直致力于細菌、真菌、質(zhì)粒、抗菌素、人體和動物細胞、植物病毒等的分類、鑒定和保藏工作。DSMZ菌種保藏中心是歐洲規(guī)模最大的生物資源中心,保藏有動物細胞500多株。Riken BRC成立于1920年,是英國的國家菌種保藏中心。該中心一直致力于細菌、真菌、植物病毒等的分類、鑒定和保藏工作。日本Riken BRC(Riken生物資源保藏中心)是全球三大典型培養(yǎng)物收集中心之一。Riken保藏中心提供了很多細胞系。在世界范圍內(nèi),這些細胞系,都在醫(yī)學、科學和獸醫(yī)中具有重要意義。Riken生物資源中心支持了各種學術(shù)、健康、食品和獸醫(yī)機構(gòu)的研究工作,并在世界各地不同組織的微生物實驗室和研究機構(gòu)中使用。
COLO-1 Cells;背景說明:角質(zhì)形成層;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:Hs 766T細胞、OACP4 C細胞、Hs-675-T細胞
SK-MEL-28 Cells;背景說明:詳見相關(guān)文獻介紹;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細胞、AQ-Mel細胞、4-1st細胞
H660 Cells;背景說明:詳見相關(guān)文獻介紹;傳代方法:2-3天換液1次。;生長特性:懸浮生長;形態(tài)特性:上皮細胞;相關(guān)產(chǎn)品有:TE5細胞、MC3T3-E1(C4)細胞、UPCI-SCC-90細胞
1BH3 Cells(提供STR鑒定圖譜)
來源說明:細胞主要來源ATCC、ECACC、DSMZ、RIKEN等細胞庫
物種來源:人源、鼠源等其它物種來源
SW620人結(jié)腸癌細胞全年復蘇|已有STR圖譜
形態(tài)特性:上皮細胞樣
細胞復蘇后貼壁細胞較少的問題分析:總結(jié)1:復蘇過程沒有問題,是否是從拿出直接放入溫水,還有培養(yǎng)箱,二氧化碳濃度,培養(yǎng)基、PH值等環(huán)節(jié)。要么加GAO濃度FBS 15-20%,看看能否幫助貼壁,當然也需要考慮血清問題,還有確信拿來的細胞沒問題??偨Y(jié)2:首先應(yīng)該懷疑凍存,實際上復蘇出問題的可能非常小,因為操作簡單,而且死板。1、你凍存的時候是不是消化的時間過長,這是一般人所注意不到的,即使書上也不講這個問題,太長的消化時間會讓細胞復蘇時失去貼壁能力,表現(xiàn)為先貼后死,原因是在你復蘇的時候細胞已進入凋亡程序,不可逆轉(zhuǎn)的死亡。2、你的凍存HAO不HAO,是什么,甘油還是DMSO,質(zhì)量非常重要,否則也會死亡。3、你的凍存的量加的是不是太多,AC推薦是不超過7%,大于5%,太多也不HAO。4、你在凍存的時候是不是把DMSO混均勻,這個有一些影響,但不算太大。5、你的凍存是否按部就班,就是所溫度梯度是不是把握嚴格,很多人容易忘卻這個事情,因為這個東西流程長。6、如果你細胞污染,你是否能很快看到,我比我的導師能早一天看到污染。從這個角度講建議去除離心這步。7、你的細胞在凍存前是否過密。還有,不贊成孵箱污染這個概念的,所有在一個孵箱里的細胞都污染一個細菌的話,這個細菌是源于孵箱的,但這不代表孵箱污染,因為孵箱無論你如何處理都有大量的細菌,問題在操作。每次污染的原因都要盡可能的找,以后就不犯同樣的問題,這個很重要,不能靠猜,否則你就有可能細胞養(yǎng)絕Zui后換課題,這個見得太多了,別不當會事。
MHHCALL2 Cells;背景說明:急性B淋巴細胞白血??;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:SK-MEL-24細胞、Mouse Forestomach Carcinoma細胞、WM35細胞
HEC1-B Cells;背景說明:該細胞是H.Kuramoto1968年分離的HEC-1-A細胞亞株。不同於HEC-A-1的是:該亞株在培養(yǎng)第135天到190天之間表現(xiàn)出穩(wěn)定的生長周期,且重現(xiàn)扁平,與親本細胞系相比更具鋪路石式樣。此外主要染色體組是親本細胞的兩倍。;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:HConEpic細胞、HT 1376.T細胞、GDM-1細胞
RERF-LC-MS 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:NH6細胞、H-211細胞、RBL-I細胞
JIII Cells;背景說明:單核細胞白血病;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:MDA-MB-468細胞、LS1034細胞、3D4/21細胞
NCI-H498 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:半貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:RPE1-hTERT細胞、B16 subline B78細胞、22Rv-1細胞
A549ATCC 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-1435細胞、SJCRH30細胞、RGB細胞
Y79 Cells;背景說明:1971年1月,該細胞由ReidTW及其同事從病人右眼切除的腫瘤進行原代培養(yǎng)建立而成,此病人有很強的視網(wǎng)膜母細胞瘤的母系家族遺傳性。該細胞的超微結(jié)構(gòu),如核膜內(nèi)折、三層膜結(jié)構(gòu)、大的被膜小泡、環(huán)孔板、微管、中心粒、基粒等都與原始腫瘤相似。;傳代方法:1:2傳代;生長特性:懸浮生長;形態(tài)特性:圓形,成簇生長;相關(guān)產(chǎn)品有:CHL-1細胞、MAVER細胞、NCI-H211細胞
H-2122 Cells;背景說明:詳見相關(guān)文獻介紹;傳代方法:1:3-1:4傳代;每周換液2-3次。;生長特性:貼壁生長;形態(tài)特性:淋巴母細胞;相關(guān)產(chǎn)品有:SF126細胞、MDA231-LM2-4175細胞、TF1細胞
J 111 Cells;背景說明:單核細胞白血病;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-H2030細胞、MRMT-1細胞、L929細胞
RINm-5F Cells;背景說明:胰島β細胞瘤;雄性;NEDH;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:Capan-2細胞、NCIH1781細胞、hs 68細胞
MPP 89 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:KY180細胞、Sp 2/0-Ag 14細胞、INS1細胞
NCI-H23 Cells;背景說明:詳見相關(guān)文獻介紹;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:HEL-92細胞、H676細胞、VSMC細胞
CFPAC Cells;背景說明:詳見相關(guān)文獻介紹;傳代方法:1:3-10傳代;2-3天換液1次。;生長特性:貼壁生長;形態(tài)特性:上皮細胞;相關(guān)產(chǎn)品有:NCIH524細胞、HEL9217細胞、DMS-153細胞
CMT167 Cells;背景說明:肺腺癌;雌性;C57BL/ICRF-a(t);傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:NS1/1-Ag4.1細胞、LIM-1215細胞、MC/CAR細胞
Tb1.Lu Cells;背景說明:肺;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:CPA47細胞、H-1869細胞、L363細胞
SNU878 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:L cell細胞、CMECs細胞、A-875細胞
Karpas 422 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:WC00059細胞、NS-1細胞、TC7細胞
A-1632 Cells(提供STR鑒定圖譜)
Abcam MCF-7 NCR1 KO Cells(提供STR鑒定圖譜)
AVP-Ser18del-iPSC Cells(提供STR鑒定圖譜)
BayGenomics ES cell line RRO326 Cells(提供STR鑒定圖譜)
BayGenomics ES cell line YHB390 Cells(提供STR鑒定圖譜)
CCSP C2 Cells(提供STR鑒定圖譜)
DA01160 Cells(提供STR鑒定圖譜)
DA05344 Cells(提供STR鑒定圖譜)
GENEA071 Cells(提供STR鑒定圖譜)
RCCJF 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:HSC-1細胞、UMUC1細胞、CLONE M3細胞
ABC-1 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:NCIH1869細胞、L 363細胞、NCIH1930細胞
OCIAML5 Cells;背景說明:急性髓系白血病細胞;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:Leukemia 1210細胞、HS-294細胞、HEL-92-1-7細胞
Molm 14 Cells;背景說明:急性髓系白血??;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:M-O7e細胞、HCO細胞、38C-13細胞
SCL-II Cells;背景說明:皮膚鱗癌;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:C41細胞、LL/2(LLc1)細胞、CCFSTTG1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
KYSE-30 Cells;背景說明:來源于一位64歲,患有高分化的中段食管鱗癌的男性患者。;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:上皮細胞樣;相關(guān)產(chǎn)品有:95-D細胞、NCTC929細胞、3T3 L1細胞
C-33A Cells;背景說明:C-33A細胞株是N. Auersperg從宮頸癌切片中建立的一系列細胞株(參見ATCC CRL-1594和ATCC CRL-1595)中的一株。 細胞一開始就表現(xiàn)出亞二倍體核型及上皮細胞形態(tài)。 連續(xù)傳代可以觀察到核型不穩(wěn)定。 存在成視網(wǎng)膜細胞瘤蛋白(pRB),但大小不正常。 P53表達上調(diào),且有一個273位密碼子的點突變導致Arg -> Cys的替換。 人乳頭瘤病毒DNA及RNA陰性。;傳代方法:1:2傳代;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:NCIH740細胞、CEM-T4細胞、PC3M-IE8細胞
SW620人結(jié)腸癌細胞全年復蘇|已有STR圖譜
NCI-SNU-C1 Cells;背景說明:詳見相關(guān)文獻介紹;傳代方法:每3-5天換液。;生長特性:懸浮生長;形態(tài)特性:上皮細胞;相關(guān)產(chǎn)品有:SH-SY5Y細胞、HeLa S3細胞、PC-9/GR細胞
NCIH727 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:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:NCI-N87細胞、TN5B14細胞、SW1573細胞
NCIH2342 Cells;背景說明:詳見相關(guān)文獻介紹;傳代方法:1:2-1:6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:RTMC細胞、ssMCF-7細胞、CAL148細胞
C32 [Human melanoma] Cells;背景說明:詳見相關(guān)文獻介紹;傳代方法:1:2-1:4傳代,2天換液1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:T/GHA-VSMC細胞、WC00097細胞、SCC-15細胞
B16 Cells;背景說明:該細胞源于C57BL/6J小鼠黑色素瘤,可以產(chǎn)生黑色素,同基因小鼠體內(nèi)移植可成瘤;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:梭形;相關(guān)產(chǎn)品有:Panc-08.13細胞、CCD33Co細胞、Panc-8_13細胞
B16 Cells;背景說明:該細胞源于C57BL/6J小鼠黑色素瘤,可以產(chǎn)生黑色素,同基因小鼠體內(nèi)移植可成瘤;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:梭形;相關(guān)產(chǎn)品有:Panc-08.13細胞、CCD33Co細胞、Panc-8_13細胞
L(TK-) 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:MC57G細胞、SUNE-1細胞、RKO-AS-45-1細胞
GM09723 Cells(提供STR鑒定圖譜)
HAP1 BAX (-) 2 Cells(提供STR鑒定圖譜)
H-1581 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:混合型;形態(tài)特性:上皮樣;相關(guān)產(chǎn)品有:NCI-H841細胞、HLE細胞、YH細胞
NS-20Y Cells;背景說明:神經(jīng)母細胞瘤;雄性;A/J;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:CCRF CEM細胞、VK2細胞、U2932細胞
Jijoye Cells;背景說明:詳見相關(guān)文獻介紹;傳代方法:每周2-3次。;生長特性:懸浮生長;形態(tài)特性:淋巴母細胞;相關(guān)產(chǎn)品有:D283細胞、SRA 01/04細胞、Mo 59J細胞
PFSK-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:GT38細胞、Tu-212細胞、Roswell Park Memorial Institute 8402細胞
RC-2 Cells;背景說明:來源于日本人的腎臟腫瘤細胞。 可以移植到裸鼠。;傳代方法:1:2傳代;生長特性:貼壁生長;形態(tài)特性:上皮細胞樣;相關(guān)產(chǎn)品有:HR-1細胞、HPDE細胞、OKT3細胞
HBE 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:NCI-446細胞、RL細胞、mIMCD3細胞
MD Anderson-Metastatic Breast-436 Cells;背景說明:該細胞源于一名43歲患有乳腺腺癌女性的胸腔積液。;傳代方法:1:2傳代,每周換液2—3次;生長特性:貼壁生長;形態(tài)特性:多角形;相關(guān)產(chǎn)品有:GLRK 13細胞、EJ1細胞、HTR-8/SVneo細胞
MCF 10A Cells;背景說明:乳腺;上皮細胞;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:OCI-Ly01細胞、HBdSMC細胞、University of Michigan-Renal Carcinoma-2細胞
HG03140 Cells(提供STR鑒定圖譜)
IBMS-iPSC-084-01 Cells(提供STR鑒定圖譜)
LM-MEL-82 Cells(提供STR鑒定圖譜)
NCI-H1628 Cells(提供STR鑒定圖譜)
PathHunter CHO-K1 mGHSR1a beta-arrestin Cells(提供STR鑒定圖譜)
Ubigene A-549 CACNA1D KO Cells(提供STR鑒定圖譜)
UoC-B7 Cells(提供STR鑒定圖譜)
HG02351 Cells(提供STR鑒定圖譜)
VSMC Cells;背景說明:胸主動脈平滑肌;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:Hce8693細胞、Calu3細胞、IGROV 1細胞
NRK clone 52E 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:上皮細胞樣;相關(guān)產(chǎn)品有:PBL細胞、ARO81細胞、NIH:OVCAR-5細胞
H-1373 Cells;背景說明:詳見相關(guān)文獻介紹;傳代方法:1:3-1:4傳代;2-3天換液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:HCO細胞、CHP 212細胞、MCFs細胞
C4-1 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:IOSE80UBC細胞、HeLa S 3細胞、COR-L88細胞
K1735 Cells;背景說明:黑色素瘤; C3H/HeN;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細胞、Hs 742.T細胞、LI7細胞
K1735 Cells;背景說明:黑色素瘤; C3H/HeN;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細胞、Hs 742.T細胞、LI7細胞
GA-10(Clone 4) Cells;背景說明:詳見相關(guān)文獻介紹;傳代方法:每周換液兩次;生長特性:懸浮生長 ;形態(tài)特性:淋巴母細胞樣;相關(guān)產(chǎn)品有:hTERTHME1細胞、UCH1細胞、MKN-45細胞
3T3-L1 ad Cells;背景說明:3T3-L1是從3T3細胞(Swissalbino)中經(jīng)克隆分離得到的連續(xù)傳代的亞系。該細胞從快速分裂到匯合和接觸性抑制狀態(tài)經(jīng)歷了前脂肪細胞到脂肪樣細胞的轉(zhuǎn)變。該細胞鼠痘病毒陰性;可產(chǎn)生甘油三酯,高濃度血清可增強細胞內(nèi)脂肪堆積。;傳代方法:1:2傳代;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:D-283 Med細胞、Hs 819.T細胞、H2009細胞
LoVo Cells;背景說明:LoVo建自1971年,從診斷為結(jié)腸腺癌的56歲男性白人的一個轉(zhuǎn)移到左鎖骨上區(qū)的腫瘤結(jié)節(jié)建系。癌基因C-myc,K-ras,H-ras,N-ras,Myb,sis和fos的表達呈陽性。癌基因N-myc的表達未做檢測。它在裸鼠中能成瘤。與107細胞聯(lián)合皮下接種5只裸鼠21天后全部成瘤。表達腫瘤特異的核基質(zhì)蛋白蛋白CC-3和CC-4。;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:KYSE 270細胞、SNU878細胞、NCI-H1105細胞
P30 OHK 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:懸浮生長;形態(tài)特性:淋巴母細胞;相關(guān)產(chǎn)品有:Ly1細胞、M-1細胞、SK-MEL-31細胞
Jurkat clone A3 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:LL/2 (LLC1)細胞、RTMC細胞、RIN m5F細胞
Karpas 422 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:WC00059細胞、NS-1細胞、TC7細胞
FTC133 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:HCC1395細胞、HSAS1細胞、HCA 7細胞
MPASMC Cells;背景說明:肺動脈平滑肌;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:Panc_03_27細胞、H-1672細胞、T-HSC細胞
MUTZ3 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:懸浮生長;形態(tài)特性:淋巴母細胞;相關(guān)產(chǎn)品有:Vero-76細胞、HCC202細胞、HUCCT1細胞
SA085 Cells(提供STR鑒定圖譜)
FL-83B Cells;背景說明:肝;自發(fā)永生;C57BL/6J;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:SW954細胞、Hi-5細胞、MDA175細胞
CHO K1 Cells;背景說明:1957年,PuckTT從成年中國倉鼠卵巢的活檢組織建立了CHO細胞,CHO-K1是CHO的一個亞克隆。CHO-K1的生長需要脯酸。;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:CAL 78細胞、NCIH1623細胞、NCI-H82細胞
Mc Ardle 7777 Cells;背景說明:肝癌;雌性;Buffalo;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:PLC-PRF-5細胞、MBMEC細胞、SUDHL-6細胞
HUVEC-C[HUVEC] Cells;背景說明:臍靜脈;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:N1S1細胞、M-07e細胞、Virginia Mason Research Center-Lung Cancer D細胞
H838 Cells;背景說明:該細胞于1984年建系,源于一位59歲患有非小細胞肺癌的白人男性吸煙者,從患者淋巴結(jié)轉(zhuǎn)移灶分離而來。;傳代方法:1:3-1:6傳代;2-3天換液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:E.G7-OVA細胞、Hs 600.T細胞、AML-2細胞
HIT T15 Cells;背景說明:胰島β細胞;SV40轉(zhuǎn)化;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:貼壁;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:SuDHL 8細胞、DH82細胞、TCMK-1細胞
NCTC929 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:OAW-42細胞、GM07404細胞、SK-N-BE(1)n細胞
IHH Cells;背景說明:肝;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:HS5細胞、Jurkat-E6細胞、LPC-H12細胞
SW620人結(jié)腸癌細胞全年復蘇|已有STR圖譜
MDCK-2 Cells;背景說明:詳見相關(guān)文獻介紹;傳代方法:1:3傳代,3-4天傳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:Ku812F細胞、HS578T細胞、Swiss/3T3細胞
KMH-2 Cells;背景說明:未分化甲狀腺癌;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:OCI-Ly1細胞、Epithelioma Papulosum Cyprini細胞、EAhy926細胞
SUDHL8 Cells;背景說明:彌漫大B淋巴瘤;腹腔積液轉(zhuǎn)移;男性;傳代方法:1:2-1:3傳代;每周換液2-3次。;生長特性:懸浮;形態(tài)特性:詳見產(chǎn)品說明書;相關(guān)產(chǎn)品有:OCI Ly19細胞、MOLT 3細胞、MDA 1386細胞
U-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細胞遺傳學上很相似并有至少六個衍生標記染色體。 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:KP4細胞、CaSki細胞、NCIH716細胞
Vx-2 Cells;背景說明:表皮鱗癌;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:GM17219細胞、SupB15W細胞、HEC1A細胞
H4IIEC3 Cells;背景說明:在糖皮質(zhì)激素、胰島素或cAMP衍生物的誘導下可以產(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:OCI-LY-7細胞、H1792細胞、Hs729細胞
BayGenomics ES cell line RRI191 Cells(提供STR鑒定圖譜)
BayGenomics ES cell line XH679 Cells(提供STR鑒定圖譜)
F121-9 Cells(提供STR鑒定圖譜)
NCI-HPN-F4K Colon Cells(提供STR鑒定圖譜)
UV.BAL-1.1 Cells(提供STR鑒定圖譜)
MCC148c Cells(提供STR鑒定圖譜)
" "PubMed=924690; DOI=10.1002/ijc.2910200505
Kerbel R.S., Pross H.F., Leibovitz A.
Analysis of established human carcinoma cell lines for lymphoreticular-associated membrane receptors.
Int. J. Cancer 20:673-679(1977)
PubMed=286328; DOI=10.1073/pnas.76.3.1438; PMCID=PMC383267
Herlyn M., Steplewski Z., Herlyn D., Koprowski H.
Colorectal carcinoma-specific antigen: detection by means of monoclonal antibodies.
Proc. Natl. Acad. Sci. U.S.A. 76:1438-1442(1979)
PubMed=288927; DOI=10.1093/jnci/63.3.635
Leibovitz A., Wright W.C., Pathak S., Siciliano M.J., Daniels W.P., Fogh H., Fogh J.
Detection and analysis of a glucose 6-phosphate dehydrogenase phenotype B cell line contamination.
J. Natl. Cancer Inst. 63:635-645(1979)
PubMed=6582512; DOI=10.1073/pnas.81.2.568; PMCID=PMC344720
Mattes M.J., Cordon-Cardo C., Lewis J.L. Jr., Old L.J., Lloyd K.O.
Cell surface antigens of human ovarian and endometrial carcinoma defined by mouse monoclonal antibodies.
Proc. Natl. Acad. Sci. U.S.A. 81:568-572(1984)
PubMed=3518877; DOI=10.3109/07357908609038260
Fogh J.
Human tumor lines for cancer research.
Cancer Invest. 4:157-184(1986)
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=7972006; DOI=10.1073/pnas.91.23.11045; PMCID=PMC45163
Okamoto A., Demetrick D.J., Spillare E.A., Hagiwara K., Hussain S.P., Bennett W.P., Forrester K., Gerwin B.I., Serrano M., Beach D.H., Harris C.C.
Mutations and altered expression of p16INK4 in human cancer.
Proc. Natl. Acad. Sci. U.S.A. 91:11045-11049(1994)
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=9178645; DOI=10.1006/cimm.1997.1108
Nakao M., Sata M., Saitsu H., Yutani S., Kawamoto M., Kojiro M., Itoh K.
CD4+ hepatic cancer-specific cytotoxic T lymphocytes in patients with hepatocellular carcinoma.
Cell. Immunol. 177:176-181(1997)
PubMed=9290701; DOI=10.1002/(SICI)1098-2744(199708)19:4<243::aid-mc5>3.0.CO;2-D
Jia L.-Q., Osada M., Ishioka C., Gamo M., Ikawa S., Suzuki T., Shimodaira H., Niitani T., Kudo T., Akiyama M., Kimura N., Matsuo M., Mizusawa H., Tanaka N., Koyama H., Namba M., Kanamaru R., Kuroki T.
Screening the p53 status of human cell lines using a yeast functional assay.
Mol. Carcinog. 19:243-253(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=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=10773689; DOI=10.1159/000015508
Melcher R., Steinlein C., Feichtinger W., Muller C.R., Menzel T., Luehrs H., Scheppach W., Schmid M.
Spectral karyotyping of the human colon cancer cell lines SW480 and SW620.
Cytogenet. Cell Genet. 88:145-152(2000)
PubMed=11113861; DOI=10.1002/1096-9896(2000)9999:9999<::aid-path775>3.0.CO;2-K
Hewitt R.E., McMarlin A., Kleiner D.E., Wersto R.P., Martin P., Tsokos M.G., Stamp G.W.H., Stetler-Stevenson W.G.
Validation of a model of colon cancer progression.
J. Pathol. 192:446-454(2000)
PubMed=11226274; DOI=10.1073/pnas.041603298; PMCID=PMC30173
Abdel-Rahman W.M., Katsura K., Rens W., Gorman P.A., Sheer D., Bicknell D.C., Bodmer W.F., Arends M.J., Wyllie A.H., Edwards P.A.W.
Spectral karyotyping suggests additional subsets of colorectal cancers characterized by pattern of chromosome rearrangement.
Proc. Natl. Acad. Sci. U.S.A. 98:2538-2543(2001)
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=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=12107847; DOI=10.1038/sj.bjc.6600459; PMCID=PMC2376111
Sekhon J., Pereira P.A., Sabbaghian N., Schievella A.R., Rozen R.
Antisense inhibition of methylenetetrahydrofolate reductase reduces survival of methionine-dependent tumour lines.
Br. J. Cancer 87:225-230(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=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=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=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=19188929; DOI=10.1038/tpj.2008.20
Guo J., Anderson M.G., Tapang P., Palma J.P., Rodriguez L.E., Niquette A.L., Li J.-L., Bouska J.J., Wang G., Semizarov D., Albert D.H., Donawho C.K., Glaser K.B., Shah O.J.
Identification of genes that confer tumor cell resistance to the aurora B kinase inhibitor, AZD1152.
Pharmacogenomics J. 9:90-102(2009)
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=19927377; DOI=10.1002/gcc.20730; PMCID=PMC2818350
Knutsen T., Padilla-Nash H.M., Wangsa D., Barenboim-Stapleton L., Camps J., McNeil N.E., Difilippantonio M.J., Ried T.
Definitive molecular cytogenetic characterization of 15 colorectal cancer cell lines.
Genes Chromosomes Cancer 49:204-223(2010)
PubMed=20164919; DOI=10.1038/nature08768; PMCID=PMC3145113
Bignell G.R., Greenman C.D., Davies H.R., Butler A.P., Edkins S., Andrews J.M., Buck G., Chen L., Beare D., Latimer C., Widaa S., Hinton J., Fahey C., Fu B.-Y., Swamy S., Dalgliesh G.L., Teh B.T., Deloukas P., Yang F.-T., Campbell P.J., Futreal P.A., Stratton M.R.
Signatures of mutation and selection in the cancer genome.
Nature 463:893-898(2010)
PubMed=20215515; DOI=10.1158/0008-5472.CAN-09-3458; PMCID=PMC2881662
Rothenberg S.M., Mohapatra G., Rivera M.N., Winokur D., Greninger P., Nitta M., Sadow P.M., Sooriyakumar G., Brannigan B.W., Ulman M.J., Perera R.M., Wang R., Tam A., Ma X.-J., Erlander M., Sgroi D.C., Rocco J.W., Lingen M.W., Cohen E.E.W., Louis D.N., Settleman J., Haber D.A.
A genome-wide screen for microdeletions reveals disruption of polarity complex genes in diverse human cancers.
Cancer Res. 70:2158-2164(2010)
PubMed=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=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=21912889; DOI=10.1007/s10637-011-9744-z
Sutherland H.S., Hwang I.Y., Marshall E.S., Lindsay B.S., Denny W.A., Gilchrist C., Joseph W.R., Greenhalgh D., Richardson E., Kestell P., Ding A., Baguley B.C.
Therapeutic reactivation of mutant p53 protein by quinazoline derivatives.
Invest. New Drugs 30:2035-2045(2012)
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=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=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=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=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=24840470; DOI=10.1016/j.jprot.2014.05.002
Chik J.H.L., Zhou J., Moh E.S.X., Christopherson R., Clarke S.J., Molloy M.P., Packer N.H.
Comprehensive glycomics comparison between colon cancer cell cultures and tumours: implications for biomarker studies.
J. Proteomics 108:146-162(2014)
PubMed=25485619; DOI=10.1038/nbt.3080
Klijn C., Durinck S., Stawiski E.W., Haverty P.M., Jiang Z.-S., Liu H.-B., Degenhardt J., Mayba O., Gnad F., Liu J.-F., Pau G., Reeder J., Cao Y., Mukhyala K., Selvaraj S.K., Yu M.-M., Zynda G.J., Brauer M.J., Wu T.D., Gentleman R.C., Manning G., Yauch R.L., Bourgon R., Stokoe D., Modrusan Z., Neve R.M., de Sauvage F.J., Settleman J., Seshagiri S., Zhang Z.-M.
A comprehensive transcriptional portrait of human cancer cell lines.
Nat. Biotechnol. 33:306-312(2015)
PubMed=25877200; DOI=10.1038/nature14397
Yu M., Selvaraj S.K., Liang-Chu M.M.Y., Aghajani S., Busse M., Yuan J., Lee G., Peale F.V., Klijn C., Bourgon R., Kaminker J.S., Neve R.M.
A resource for cell line authentication, annotation and quality control.
Nature 520:307-311(2015)
PubMed=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=27470641; DOI=10.1021/acs.jproteome.6b00391
Guo J.-H., Cui Y.-Z., Yan Z.-Q., Luo Y.-Z., Zhang W.-L., Deng S.-Y., Tang S.-Q., Zhang G., He Q.-Y., Wang T.
Phosphoproteome characterization of human colorectal cancer SW620 cell-derived exosomes and new phosphosite discovery for C-HPP.
J. Proteome Res. 15:4060-4072(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=27987026; DOI=10.1007/s00216-016-0125-5; PMCID=PMC5303640
Schunter A.J., Yue X.-S., Hummon A.B.
Phosphoproteomics of colon cancer metastasis: comparative mass spectrometric analysis of the isogenic primary and metastatic cell lines SW480 and SW620.
Anal. Bioanal. Chem. 409:1749-1763(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=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=29131639; DOI=10.1021/acs.jproteome.7b00548
Torres S., Garcia-Palmero I., Marin-Vicente C., Bartolome R.A., Calvino E., Fernandez-Acenero M.J., Casal J.I.
Proteomic characterization of transcription and splicing factors associated with a metastatic phenotype in colorectal cancer.
J. Proteome Res. 17:252-264(2018)
PubMed=29444439; DOI=10.1016/j.celrep.2018.01.051; PMCID=PMC6343826
Yuan T.L., Amzallag A., Bagni R., Yi M., Afghani S., Burgan W., Fer N., Strathern L.A., Powell K., Smith B., Waters A.M., Drubin D.A., Thomson T., Liao R., Greninger P., Stein G.T., Murchie E., Cortez E., Egan R.K., Procter L., Bess M., Cheng K.T., Lee C.-S., Lee L.C., Fellmann C., Stephens R., Luo J., Lowe S.W., Benes C.H., McCormick F.
Differential effector engagement by oncogenic KRAS.
Cell Rep. 22:1889-1902(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)
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)"
關(guān)鍵字: SW620人結(jié)腸癌細胞全年復蘇|已有ST;傳代細胞;復蘇細胞;實驗細胞;科研細胞;
上海冠導生物工程有限公司,先后從ATCC、DSMZ、ECACC、RIKEN、PromoCell、ScienCell、JCRB等國內(nèi)外細胞庫引進細胞2000余株。以此為契機,公司組建了冠導細胞庫,我司細胞均由資深細胞培養(yǎng)工程師進行培養(yǎng)。我司可以提供的細胞有:①細胞系②原代細胞③穩(wěn)轉(zhuǎn)株④耐藥株⑤標記細胞⑥細胞配套試劑等。