...
首页> 外文期刊>Cancer Cell International >Microencapsulation of low-passage poorly-differentiated human mucoepidermoid carcinoma cells by alginate microcapsules: in vitro profiling of angiogenesis-related molecules
【24h】

Microencapsulation of low-passage poorly-differentiated human mucoepidermoid carcinoma cells by alginate microcapsules: in vitro profiling of angiogenesis-related molecules

机译:海藻酸盐微囊对低通道低分化低分化人粘液表皮样癌细胞的微囊化:血管生成相关分子的体外分析

获取原文
           

摘要

Human mucoepidermoid carcinoma (MEC) is regarded as the most common primary salivary malignancy. High-grade MEC has a high risk of recurrence and poor prognosis. Tumor angiogenesis, induced by poorly differentiated cancer cells of high-grade MEC, contributes to tumor growth and metastasis. Therefore, elucidating molecular mechanisms underlying the pro-angiogenic ability of poorly differentiated MEC cells is critical for the understanding of high-grade MEC progression. It is well known that three-dimensional (3D) cell culture, in contrast with conventional two-dimensional (2D) culture, provides a better approach to in vitro recapitulation of in vivo characteristics of cancer cells and their surrounding microenvironment. The purpose of this study was to model a 3D environment for in vitro gene expression profiling of key molecules in poorly differentiated MEC cells for cancer neovascularization and compared them with traditional 2D cell culture. Low-passage poorly differentiated MEC cells, derived from human patient samples of high-grade MEC, were microencapsulated in sodium alginate gel microcapsules (3D culture) and compared with cells grown in 2D culture. Cancer cell proliferation was determined by MTT assays for 1?week, and gene expression of VEGF-A, bFGF and TSP-1 was analyzed by western blotting or ELISA. The hypoxic environment in 3D versus 2D culture were assessed by western blotting or immunofluorescence for HIF1α, and the effect of hypoxia on VEGF-A gene expression in 3D cultured cancer cells was assessed by western blotting with the use of the HIF1α inhibitor, 2-methoxyestradiol (2-MeOE2). When encapsulated in alginate gel microcapsules, low-passage poorly differentiated human MEC cells grew in blocks and demonstrated stronger and relatively unlimited proliferation activities. Moreover, significant differences were found in gene expression, with 3D-grown cancer cells a significant increment of VEGF-A and bFGF and a drastic reduction of TSP-1. Consistently, 3D-grown cancer cells secreted significantly more VEGF-A than 2D culture cancer cells. Furthermore, 3D-grown cancer cells showed significantly higher expression of HIF1α, a molecular indicator of hypoxia; the increased expression of VEGF-A in 3D cultured cancer cells was shown to be dependent on the HIF1α activities. The present work shows the effects of 3D culture model by alginate microencapsulation on the proangiogenic potentials of low-passage poorly differentiated human MEC cells. Cancer cells in this 3D system demonstrate significant intensification of key molecular processes for tumor angiogenesis. This is due to a better modeling of the hypoxic tumor microenvironment during 3D culture.
机译:人粘液表皮样癌(MEC)被认为是最常见的原发性涎腺恶性肿瘤。高档MEC复发风险高,预后差。由高等级MEC的低分化癌细胞诱导的肿瘤血管生成有助于肿瘤的生长和转移。因此,阐明低分化的MEC细胞促血管生成能力的分子机制对于理解高级MEC进展至关重要。众所周知,与常规的二维(2D)培养相比,三维(3D)细胞培养为癌细胞及其周围微环境的体内特征的体外概括提供了更好的方法。这项研究的目的是为癌症新血管形成的低分化MEC细胞中关键分子的体外基因表达谱建模的3D环境建模,并将其与传统的2D细胞培养进行比较。将来自高等级MEC的人类患者样品的低代次低分化MEC细胞微囊化在藻酸钠凝胶微囊(3D培养物)中,并与2D培养物中生长的细胞进行比较。通过MTT测定法测定癌细胞增殖1周,并通过western印迹或ELISA分析VEGF-A,bFGF和TSP-1的基因表达。通过Western blotting或免疫荧光法对HIF1α评估3D与2D培养中的低氧环境,并通过使用HIF1α抑制剂2-甲氧基雌二醇进行Western blot评估低氧对3D培养的癌细胞中VEGF-A基因表达的影响。 (2-MeOE2)。当将其封装在藻酸盐凝胶微胶囊中时,低通道低分化的人MEC细胞成块生长,并表现出更强和相对无限的增殖活性。此外,在基因表达中发现了显着差异,其中3D生长的癌细胞使VEGF-A和bFGF显着增加,TSP-1急剧减少。一致地,3D生长的癌细胞分泌的VEGF-A比2D培养的癌细胞要多得多。此外,生长3D的癌细胞显示HIF1α的表达明显升高,HIF1α是缺氧的分子指示剂。在3D培养的癌细胞中,VEGF-A的表达增加取决于HIF1α活性。本工作显示了藻酸盐微囊化对3D培养模型对低通道低分化人MEC细胞促血管生成潜能的影响。此3D系统中的癌细胞显示出肿瘤血管生成关键分子过程的显着增强。这是由于在3D培养过程中对缺氧肿瘤微环境进行了更好的建模。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号