| Literature DB >> 31587013 |
Hui Zhang1, Qingju Yang2, Xuanye Lian3, Ping Jiang4, Jing Cui5,6.
Abstract
<strong>BACKGROUND</strong> Hypoxia promotes cancer progression. Hypoxia-inducible factor-1alpha (HIF-1alpha) has been reported to enhance tumor invasion and metastasis via activating downstream genes, such as matrix metalloproteinases (MMPs). The purpose of this study was to explore the probable roles of HIF-1alpha and MMP13 in the invasion and metastasis of ovarian cancer under hypoxic conditions. <strong>MATERIAL AND METHODS</strong> The expression of HIF-1alpha and MMP13 protein were detected with immunohistochemistry staining in ovarian cancer tissues, metastatic lesions, and normal fallopian tissues. Ovarian cancer A2780 cells were cultured under normoxic condition and hypoxic condition. mRNA and protein expression of HIF-1alpha and MMP13 were detected by RT-PCR and Western blot analysis. The effects of siRNA against HIF-1alpha on MMP13 expression were examined by RT-PCR and Western blot analysis. Transwell invasion assays were performed to test the invasive ability of A2780 cells. <strong>RESULTS</strong> Immunohistochemistry staining showed significantly higher expression of HIF-1alpha and MMP13 protein in ovarian cancer tissues and metastatic lesions than in normal fallopian tissues. HIF-1alpha and MMP13 expression were closely related. After exposure to hypoxia, mRNA and protein levels of HIF-1alpha and MMP13 were upregulated. siRNA effectively inhibited HIF-1alpha expression and MMP13 expression. The number of invading A2780 cells decreased after HIF-1alpha was silenced. <strong>CONCLUSIONS</strong> This study suggests that HIF-1alpha promotes ovarian cancer cell invasion through a MMP13 mechanism. It might be an effective strategy targeting HIF-1alpha - MMP13 to inhibit invasion and metastasis of ovarian cancer.Entities:
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Year: 2019 PMID: 31587013 PMCID: PMC6777377 DOI: 10.12659/MSM.916886
Source DB: PubMed Journal: Med Sci Monit ISSN: 1234-1010
Figure 1The protein expression of HIF-1α and MMP13 with IHC detection. (A–C) HIF-1α protein expression pattern of fallopian, ovarian cancer, and metastasis lesion. (D–F) MMP13 protein expression pattern of fallopian, ovarian cancer, and metastasis lesion. (G, H) Statistical analysis showed a significant difference in HIF-1α and MMP13 expression. (I) A significant correlation was found between HIF-1α and MMP13 expression in metastasis lesion. *** p<0.001.
Figure 2Hypoxia-induced expression of HIF-1α and MMP13 in ovarian cancer A2780 cells. (A, C) HIF-1α protein expression after culturing in normoxia and hypoxic conditions. (F) HIF-1α mRNA levels in A2780 cells after exposure to normoxia and hypoxia. (B, D) MMP-13 protein expression. (G) MMP13 mRNA levels in A2780 cells after exposure to normoxia and hypoxia. Values are expressed as the mean ± standard deviation. * p<0.05 versus normoxia group. (E) Correlation analysis between HIF-1α and MMP13 expression under hypoxic condition.
Figure 3siRNA transfection and Transwell migration assay. (A, B) Western blot analysis was performed to test HIF-1α protein expression culturing in hypoxia after silencing HIF-1α. (C) RT-PCR was used to detect the effects of HIF-1α knockdown on the expression of HIF-1α mRNA levels in A2780 cells under hypoxic conditions. (F) After transfected with HIF-1α siRNA, MMP13 mRNA was downregulated. (D, E) MMP13 protein had the same change. The data are presented as the mean ± standard deviation. * p<0.05 versus normoxia group or the control siRNA group. (G–J) Suppressed effects of HIF-1α siRNA on the invasion potency of ovarian cancer A2780 cells. Invaded cells were counted in 5 microscopic fields per well. * p<0.05 versus the normoxia group. # p<0.05 versus the untreated group and the control siRNA group.