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目的:探究喜树碱-氟尿苷(CPT-FUDR)纳米颗粒对口腔鳞癌Tca-8113细胞增殖与迁移的影响。方法:制备喜树碱-氟尿苷纳米颗粒,通过丁达尔现象证明已组装完毕。将制备好的纳米颗粒组和喜树碱(CPT)单药组、氟尿苷(FUDR)单药组以及两种单药混合组(CPT/FUDR)作对比,采用MTT实验检测药物对口腔鳞癌细胞Tca-8113增殖的抑制作用,通过划痕实验探究CPT-FUDR纳米颗粒和CPT/FUDR混合药物对细胞迁移能力的影响。结果:MTT结果显示:在药物浓度大于0.1μM时,随着浓度的增加,四组细胞存活率均明显下降(P0.05),而CPT-FUDR纳米颗粒组Tca-8113细胞的存活率明显低于单药CPT、FUDR和CPT/FUDR混合物组(P0.05)。在划痕实验中,培养48 h后,CPT/FUDR混合物组和CPT-FUDR纳米颗粒组均显著低于空白组(P0.05),且CPT-FUDR纳米颗粒组显著低于CPT/FUDR混合物组(P0.05)。结论:在体外,CPT-FUDR纳米颗粒对口腔鳞癌Tca-8113细胞的增殖与迁移有较好的抑制作用,且抑制效果优于CPT/FUDR两种单药混合。  相似文献   
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高表达CD151细胞系的构建   总被引:1,自引:0,他引:1  
目的构建高表达CD151细胞系Tca8113-CD151,为研究CD151在肿瘤细胞迁移及肿瘤转移中的作用和相关机制提供实验模型.方法构建pcDNA3.1-CD151-HA重组体,采用磷酸钙共沉淀法转染Tca8113细胞,经G418筛选抗性克隆.通过RT-PCR和Western blot分别检测这些克隆CD151基因的转录和翻译.结果成功构建真核表达重组体pcDNA3.1-CD151-HA;Tca8113-CD151细胞系在mRNA和蛋白质水平高表达外源CD151.结论构建了稳定高表达CD151的细胞系Tca8113-CD151,为探讨CD151基因在肿瘤转移中的作用及其相关机制奠定了实验基础.  相似文献   
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目的:观察牙本质基质蛋白1(dentin matrix protein 1,DMP1)在舌鳞癌细胞Cal-27、Tca-8113以及人永生化表皮细胞Hacat中的表达情况,初步探讨DMP1与口腔鳞癌的相关性。方法:免疫荧光染色用于人永生化表皮细胞Hacat与舌鳞癌细胞Cal-27中,于共聚焦显微镜下观察DMP1在两组细胞的染色情况;采用Western blot方法,分别提取Hacat,Cal-27和人舌鳞癌细胞Tca-8113中DMP1蛋白并检测其含量。结果:通过免疫荧光实验观察到DMP1在Cal-27细胞及Hacat细胞中都表达于细胞质,同时发现DMP1在Hacat细胞中的荧光强度为41.2,高于Cal-27细胞荧光强度26.5;Western blot实验结果显示Hacat细胞中DMP1蛋白的灰度分析值为100和109,明显高于Cal-27和Tca-8113细胞的40.8和37.6。结论:DMP1在口腔鳞癌细胞和Hacat细胞中的表达存在差异,提示DMP1可能与口腔鳞癌的发生相关。  相似文献   
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The study was to evaluate the effect of ten‐eleven translocation 1 (TET1) regulating o6‐methylguanine‐DNA methyltransferase (MGMT) in chemotherapy resistance of oral squamous cell carcinoma (OSCC) stem cells. OSCC stem cells were divided into the blank, negative control (NC), TET1‐siRNA, TET1‐siRNA + MGMT‐OE, and MGMT‐OE groups. Methylation‐specific polymerase chain reaction (MSP), qRT‐PCR and Western blotting were conducted to detect the methylation status of MGMT, expressions of TET1, MGMT, ABCG2, and Oct‐4. Cell proliferation, cisplatin chemosensitivity, and cell cycle and apoptosis, were detected using CCK8 and flow cytometry. A chromatin immunoprecipitation (ChIP) assay was employed for detecting the link between TET1 and MGMT gene promoters. In comparison to the NC group, the TET1‐siRNA group exhibited increased levels of MGMT methylation, the number of apoptotic cells and cisplatin chemosensitivity consisting of varying concentrations, however, decreased levels of mRNA and protein expressions of TET1 as well as MGMT, cell viability, the number of cells in the S phase, and protein expressions of ABCG2 and Oct‐4 were all have diminished amounts. The TET1‐siRNA + MGMT‐OE and MGMT‐OE groups had higher MGMT mRNA and protein expression, as well as increased protein expressions of ABCG2 and Oct‐4, greater cell activity, higher number of cells in the S phase, decreased apoptotic rates in cells and decreased cisplatin chemosensitivity with different concentrations. Our study provided evidence that low‐expression of TET1 in OSCC stem cells may stimulate MGMT promoter methylation, while inhibiting MGMT mRNA expression, this ultimately strengthens the sensitivity of OSCC stem cells in regards to chemotherapeutics.  相似文献   
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