首页> 外文期刊>Gynecologic Oncology: An International Journal >EFEMP1 expression promotes angiogenesis and accelerates the growth of cervical cancer in vivo.
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EFEMP1 expression promotes angiogenesis and accelerates the growth of cervical cancer in vivo.

机译:EFEMP1表达促进体内血管生成并加速宫颈癌的生长。

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OBJECTIVE: The study was to investigate the role of EFEMP1 in angiogenesis and growth of cervical carcinoma in vivo. METHODS: Effects of EFEMP1 on proliferation of Hela cells and HUVECs, invasion of Hela cells and migration of HUVECs, and adhesion of Hela cells to HUVECs were evaluated by MTT, Transwell chamber assay and adhesion assay, respectively. EFEMP1 overexpression in Hela cells was achieved by stable EFEMP1 gene transfection into Hela cells by Lipofectamin 2000 and the effectiveness of transfection was verified with western-blotting. The effect of EFEMP1 transfection upon the VEGF expression of Hela cells was detected with ELISA. The nude mouse models bearing cervical cancer were established with Hela cells transfected with EFEMP1 gene to observe the role of EFEMP1 in angiogenesis and growth of cervical cancer in vivo. VEGF expression and microvascular density of cervical cancer tissues were detected with immunohistochemistry and CD34 labeling respectively to elucidate the pathway by which EFEMP1 influences the growth of cervical cancer. RESULTS: Proliferation and invasion of Hela cells were promoted by the EFEMP1 protein. The EFEMP1 gene transfection into Hela cells was successful and EFEMP1 gene obtained stable high expression in Hela cells. Compared to the control, the tumors with EFEMP1 overexpression showed a faster growth rate and had a higher level of VEGF expression and microvascular density. EFEMP1 gene transfection elevated the VEGF protein level in Hela cells and EFEMP1 protein facilitated the adhesion of Hela cells to HUVECs. However, no direct effect of EFEMP1 was observed on proliferation, migration and tube formation of HUVECs. CONCLUSIONS: EFEMP1 promoted the angiogenesis and accelerated the growth of cervical carcinoma in vivo through a VEGF up-regulation pathway.
机译:目的:探讨EFEMP1在宫颈癌体内血管生成和生长中的作用。方法:采用MTT法,Transwell室法和粘附法分别评价EFEMP1对Hela细胞和HUVECs增殖,Hela细胞侵袭和HUVECs迁移以及Hela细胞对HUVECs粘附的影响。通过Lipofectamin 2000将EFEMP1基因稳定转染到Hela细胞中,可以实现Hela细胞中EFEMP1的过表达,并且通过Western blot验证了转染的有效性。用ELISA检测EFEMP1转染对Hela细胞VEGF表达的影响。用转染了EFEMP1基因的Hela细胞建立带有宫颈癌的裸鼠模型,以观察EFEMP1在体内宫颈癌的血管生成和生长中的作用。通过免疫组织化学和CD34标记分别检测宫颈癌组织中的VEGF表达和微血管密度,以阐明EFEMP1影响宫颈癌生长的途径。结果:EFEMP1蛋白促进了Hela细胞的增殖和侵袭。 EFEMP1基因成功转染到Hela细胞中,EFEMP1基因在Hela细胞中获得稳定的高表达。与对照相比,具有EFEMP1过表达的肿瘤显示出更快的生长速率,并具有更高水平的VEGF表达和微血管密度。 EFEMP1基因转染提高了Hela细胞中的VEGF蛋白水平,EFEMP1蛋白促进了Hela细胞与HUVEC的粘附。但是,没有观察到EFEMP1对HUVEC的增殖,迁移和管形成有直接作用。结论:EFEMP1通过VEGF上调途径促进了宫颈癌的血管生成并促进了宫颈癌的生长。

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