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人正常前列腺上皮細(xì)胞RWPE-1
??【編號(hào)】:RWPE-1

??【名稱】:人正常前列腺上皮細(xì)胞RWPE-1

??【規(guī)格】:株

??【價(jià)格】:

  人正常前列腺上皮細(xì)胞

  細(xì)胞名稱:RWPE-1人正常前列腺上皮細(xì)胞
  描述:腫瘤抑制基因: p53 + [PubMed: 9214605] pRB + [PubMed: 9214605] 一位正常男性前列腺組織切片的周圍區(qū)域的上皮細(xì)胞用單拷貝的人乳頭瘤病毒的18(HPV-18)進(jìn)行轉(zhuǎn)化,建立了RWPE-1 (ATCC CRL-11609) 細(xì)胞株 [PubMed: 9214605]. 在三維Matrigel培養(yǎng)時(shí),在雄激素作用下,RWPE-1細(xì)胞形成腺胞并向培養(yǎng)基中分泌PSA。[PubMed: 11170142]. 當(dāng)與Matrigel或基質(zhì)細(xì)胞混合注射雄性裸鼠時(shí),RWPE-1細(xì)胞也能形成腺胞[PubMed: 11304724] 并產(chǎn)生PSA。 來(lái)源于RWPE-1的細(xì)胞再用Kirstin鼠類腫瘤病毒轉(zhuǎn)染Ki-ras基因,建立了能成瘤的RWPE-2細(xì)胞株(ATCC CRL-11610) [PubMed: 9214605] 和 RWPE2-W99 (ATCC CRL-2853) 細(xì)胞株。 另外,用N-甲醇-N-硝基脲(MNU)處理RWPE-1,建立了一系列模擬前列腺癌進(jìn)程中不同時(shí)期的成瘤細(xì)胞株。 它們是 WPE1-NA22 (ATCC CRL-2849), WPE1-NB14 (ATCC CRL-2850, WPE1-NB11 (ATCC CRL-2851) 和 WPE1-NB26 (ATCC CRL-2852) 細(xì)胞株。 據(jù)提供者報(bào)道,RWPE-1 細(xì)胞株(ATCC CRL-11609)經(jīng)過(guò)檢測(cè),乙肝、丙肝、人免疫缺陷病毒都呈陰性。
  動(dòng)物種別:人
  性別:男
  組織來(lái)源:器官: 前列腺 疾?。?正常 細(xì)胞類型: 上皮細(xì)胞
  形態(tài):上皮細(xì)胞
  培養(yǎng)基和添加劑:這株細(xì)胞的基本培養(yǎng)基作為Invitrogen (GIBCO)提供的kit的部分: 角化細(xì)胞無(wú)血清培養(yǎng)基K-SFM,kit目錄號(hào)17005-042。隨kit提供這株細(xì)胞生長(zhǎng)所需的兩種添加劑(牛垂體提取物BPE及人重組表皮生長(zhǎng)因子EGF)。 配制完全生長(zhǎng)培養(yǎng)基,需添加以下成分: 0.05 mg/ml BPE – 隨K-SFM提供 5 ng/ml EGF -隨K-SFM提供。 注意: 不要過(guò)濾完全培養(yǎng)基。 氣相: 空氣,95%;二氧化碳,5%。 溫度: 37.0°C。
  供應(yīng)限制:A。僅供研究之用。
  REFERENCE:Webber MM, Rhim JS. Immortalized and malignant human prostatic cell lines. US Patent 5,824,488 dated Oct 20 1998 46793: Bello D, et al. Androgen responsive adult human prostatic epithelial cell lines immortalized by human papillomavirus 18. Carcinogenesis 18: 1215-1223, 1997. PubMed: 9214605 46795: Webber MM, et al. Acinar differentiation by non-malignant immortalized human prostatic epithelial cells and its loss by malignant cells. Carcinogenesis 18: 1225-1231, 1997. PubMed: 9214606 46950: Okamoto M, et al. Interleukin-6 and epidermal growth factor promote anchorage-independent growth of immortalized human prostatic epithelial cells treated with N-methyl-N-nitrosourea. Prostate 35: 255-262, 1998. PubMed: 9609548 53180: Webber MM, et al. Immortalized and tumorigenic adult human prostatic epithelial cell lines: characteristics and applications. Part I. Cell markers and immortalized nontumorigenic cell lines. Prostate 29: 386-394, 1996. PubMed: 8977636 53181: Webber MM, et al. Immortalized and tumorigenic adult human prostatic epithelial cell lines: characteristics and applications Part 2. Tumorigenic cell lines. Prostate 30: 58-64, 1997. PubMed: 9018337 53182: Webber MM, et al. Immortalized and tumorigenic adult human prostatic epithelial cell lines: characteristics and applications. Part 3. Oncogenes, suppressor genes, and applications. Prostate 30: 136-142,www.atcc360.com。 1997. PubMed: 9051152 53183: Kremer R, et al. ras Activation of human prostate epithelial cells induces overexpression of parathyroid hormone-related peptide. Clin. Cancer Res. 3: 855-859, 1997. PubMed: 9815759 53192: Jacob K, et al. Osteonectin promotes prostate cancer cell migration and invasion: a possible mechanism for metastasis to bone. Cancer Res. 59: 4453-4457, 1999. PubMed: 10485497 53193: Achanzar WE, et al. Cadmium induces c-myc, p53, and c-jun expression in normal human prostate epithelial cells as a prelude to apoptosis. Toxicol. Appl. Pharmacol. 164: 291-300, 2000. PubMed: 10799339 53194: Achanzar WE, et al. Cadmium-induced malignant transformation of human prostate epithelial cells. Cancer Res. 61: 455-458, 2001. PubMed: 11212230 53196: Bello-DeOcampo D, et al. Laminin-1 and alpha6beta1 integrin regulate acinar morphogenesis of normal and malignant human prostate epithelial cells. Prostate 46: 142-153, 2001. PubMed: 11170142 53197: Webber MM, et al. Human cell lines as an in vitro/in vivo model for prostate carcinogenesis and progression. Prostate 47: 1-13, 2001. PubMed: 11304724 89996: Quader ST, et al. Evaluation of the chemopreventive potential of retinoids using a novel in vitro human prostate carcinogenesis model. Mutat. Res. 496: 153-161, 2001.
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