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原代口腔鳞癌细胞的分离培养及CD133 CD44的表达 被引量:1
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作者 房芳 麦华明 +4 位作者 王代友 彭剑波 陈国生 刘诗奇 廖显翔 《中国临床新医学》 2018年第6期523-528,共6页
目的探讨从人新鲜口腔鳞癌组织中培养原代鳞癌细胞的方法以及干细胞表面标志物CD133、CD44表达量的检测情况。方法选取该院2016~2017年行口腔鳞状细胞癌切除术的新鲜肿瘤标本6例,应用机械法获得原代口腔鳞癌细胞并用酶消化法传代。应用... 目的探讨从人新鲜口腔鳞癌组织中培养原代鳞癌细胞的方法以及干细胞表面标志物CD133、CD44表达量的检测情况。方法选取该院2016~2017年行口腔鳞状细胞癌切除术的新鲜肿瘤标本6例,应用机械法获得原代口腔鳞癌细胞并用酶消化法传代。应用细胞形态学及角蛋白免疫组化方法对原代鳞癌细胞进行鉴定。流式细胞仪技术检测鳞癌细胞中干细胞表面标志物CD133、CD44的表达情况。结果(1)成功培养出纯化的口腔鳞癌细胞,并能成功传代,至目前为止已传至27代。(2)培养出的OSCCs呈多边形铺路石状,角蛋白染色其胞浆中可见阳性棕色染色。(3)流式细胞检测鳞癌细胞中干细胞表面标志物CD133的平均表达率为0.41%、CD44的平均表达率为33.76%。结论从人新鲜口腔鳞癌标本中利用机械法可成功获得大量原代口腔鳞癌细胞并能顺利传代,口腔鳞癌细胞中干细胞表面标志物CD44表达偏高,CD133的表达量明显偏低。 展开更多
关键词 口腔鳞癌细胞 原代培养 CD44 CD133
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CD133 selected stem cells from proliferating infantile hemangioma and establishment of an in vivo mice model of hemangioma 被引量:11
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作者 mai hua-ming ZHENG Jia-wei +4 位作者 WANG Yan-an YANG Xiu-juan ZHOU Qin QIN Zhong-ping LI Ke-lei 《Chinese Medical Journal》 SCIE CAS CSCD 2013年第1期88-94,共7页
Background Infantile hemangioma (IH) is the most common benign tumor in children with prevalence in the face and neck. Various treatment options including oral propranolol have been described for IH, but the mechani... Background Infantile hemangioma (IH) is the most common benign tumor in children with prevalence in the face and neck. Various treatment options including oral propranolol have been described for IH, but the mechanism of drugs remains enigmatic. The aim of this study was to investigate the pathogenesis and establish a reliable in vivo model of IH which can provide platform for drug exploration. Methods Stem cells from the proliferating hemangiomas (HemSCs) were isolated by CD133-tagged immunomagnetic beads. Their phenotype and angiogenic property were investigated by flow cytometry, culturing on Matrigel, real-time polymerase chain reaction (PCR), immunofluorescent staining and injection into BALB/c-nu mice. Results HemSCs had robust ability of proliferating and cloning. The time of cells doubling in proliferative phase was 16 hours. Flow cytometry showed that HemSCs expressed mesenchymal markers CD29, CD44, but not endothelial/hematopoietic marker of CD34 and hematopoietic marker CD45. The expression of CD105 was much lower than that of the reported hemangioma derived or normal mesenchymal stem cell (MSC). Real-time PCR showed that the mRNA levels of vascular endothelial growth factor (VEGF), basic fibroblast growth factor (bFGF) and matrix metalloproteinase-1 (MMP-1) of HemSCs were higher than that of neonatal human dermal fibroblasts (NHDFs) and human umbilical vein endothelial cells (HUVECs). After HemSCs were cultured on Matrigel in vitro, they formed tube-like structure in a short time (16 hours) and differentiated into endothelial cells in 7 days. After 1-2 weeks of implantation into immunodeficient mice, HemSCs generated glucose transporter 1 positive blood vessels. When co-injected with HUVECs, the vascularization of HemSCs was greatly enhanced. However, the single implantation of HUVECs hardly formed blood vessels in BALB/c-nu mice (P 〈0.05). Conclusions HemSCs may be some kinds of primitive mesoderm derived stem cells with powerful angiogenic ability, which can recapitulate human hemangioma by co-injecting into immunodeficient mice with HUVECs. 展开更多
关键词 HEMANGIOMA stem cell VASCULARIZATION model
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