刘璐 张先娇 权晓娟 罗苗 张磊 徐孝娜 王枫 刘寒强.棕榈酸促进肝癌细胞侵袭转移的分子机制[J].,2014,14(22):4223-4227 |
棕榈酸促进肝癌细胞侵袭转移的分子机制 |
Molecular Mechanismof Palmitic Acid Induced Invasion and Metastasis ofHepatoma Carcinoma Cells |
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DOI: |
中文关键词: 棕榈酸 肝癌 侵袭转移 CD147 基质金属蛋白酶 |
英文关键词: Palmitic acid (PA) Hepatocellular carcinoma (HCC) Migration and invasion CD147 Matrix metalloproteinases
(MMPs) |
基金项目:国家自然科学基金面上项目(81072303) |
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中文摘要: |
目的:探讨棕榈酸(Palmitic acid,PA)对人肝癌细胞系SMMC-7721侵袭转移能力的影响,并通过检测肝癌细胞系中CD147-MMPs
信号通路在PA影响下的变化,初探PA 影响肝癌细胞侵袭转移的分子机制。方法:PA(0、20、50、100滋M)作用SMMC-7721 细胞后
(8、16、24h),MTT法检测细胞增殖,划痕及Transwell 实验评价细胞迁移侵袭能力,Western-blot 及real-time PCR 检测CD147 蛋
白及其mRNA的水平,ELISA 检测基质金属蛋白酶(MMP-2,MMP-9)的水平。结果:与对照组相比,PA作用SMMC-7721 细胞后,
细胞存活率无显著差异(P>0.05);细胞迁移和侵袭能力显著增高(P<0.05);CD147蛋白及其mRNA的表达显著增高(P<0.05);培养
上清中MMP-9 的浓度显著增高(P<0.05),MMP-2 的水平则无变化。不同的梯度组之间相比较,细胞迁移和侵袭能力、CD147 的表
达水平(蛋白及其mRNA)以及培养上清中MMP-9 的浓度均随PA作用时间和作用剂量的增大而产生更显著的增高。结论:PA
通过活化CD147-MMPs 信号通路促进SMMC-7721 细胞的迁移侵袭。 |
英文摘要: |
Objective:The impact of dietary fatty acids on the development and progression of cancer is highly controversial. In
this study, we investigated whether palmitic acid (PA, saturated fatty acids) enhances migration and invasion of hepatoma cells via a
CD147-MMPs pathway.Methods:Human SMMC-7721 cells was exposed to PA. MTT assay was used for cell viability and wound
healing, transwell assays for cell migratory and invasive abilities, qRT-PCR for CD147 mRNA expression, Western blot for CD147
protein expression, and ELISA for MMPs levels.Results:Compared to control, PA has no significant effect on cell growth; promotes the
migration and invasion of cells; induces a up-regulation of CD147 expression and stimulates cells to secrete MMP-9.Within a certain
concentration range(0,20,50,100uM), PA can enhances the migration and invasion of cells, up-regulates CD147 expression (protein and
mRNA level) and stimulates MMP-9 secretion in a dose- and time-dependent manner.Conclusion:Taken together, our findings
demonstrate that PA has potential to promote the migration and invasion of SMMC-7721 cells through the activation of CD147-MMPs
pathway in vitro. |
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