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find Author "YANLi-kun" 2 results
  • Expression of c-Met in Colorectal Carcinoma Cells and Effect of Hepatocyte Growth Factor on Proliferation and Invasion of Colon Carcinoma Cells SW480

    ObjectiveTo study the expression of c-Met in colorectal carcinoma cells and the effect of hepatocyte growth factor (HGF) on proliferation and invasion of colon carcinoma cells SW480. MethodsReal-time PCR and Western blot methods were respectively used to detect the expressions of c-Met mRNA and protein in the different colorectal carcinoma cells in order to screen the high c-Met expression cells. The SW480 cells were incubated with different concentrations (0, 20, 40, and 70 ng/mL) HGF. MTT assay and Transwell test were used to evaluate the effects of proliferation and invasion in the SW480 cells. Results①The c-Met was expressed in each colorectal carcinomar cells, especially highly expressed in the colon carcinoma cells SW480 in vitro.②MTT assay showed that the HGF could promote the proliferation of SW480 cells in a dose-dependent manner with some extent.③Transwell test showed that the HGF could increase the invasion of SW480 cells. ConclusionThe c-Met is highly expressed in colorectal carcinoma cells and HGF could promote proliferation and increase invasion of colorectal carcinoma cells in vitro.

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  • Influence of Myxobacteria Metabolites NX52 and NX83 on Colorectal Carcinoma Cell Proliferation

    ObjectiveTo study the influence of myxobacteria metabolites NX52 and NX83 on the proliferation of colorectal carcinoma cells and investigate its probable mechanism. MethodsThe human colorectal carcinoma cell lines HT-29, SW480, and SW1463 were respectively treated with the two metabolites (NX52 and NX83) at different concentrations (0.1 mg/mL, 1.0 mg/mL, and 10.0 mg/mL), the cells of negative control were treated without metabolite. The proliferation inhibition was examined by methyl tthiazolyl tetrazolium assay. The cell morphology character was compared by inverted microscope, and the apoptosis of cell was analyzed by flow cytometry. ResultsTwo kinds of metabolites NX52 and NX83 had time-dose inhibitory effects on proliferation of human colorectal carcinoma cells HT-29, SW480, and SW1463 (P < 0.05). The metabolite NX83 had more obvious proliferation inhibition in the colorectal carcinoma cells as compared with the metabolite NX52 (P < 0.05). After 48 h, the apoptosis rate of the metabolite NX83 for SW1463 cell was observably increased as compared with the negative control group (P < 0.01). ConclusionsThe two kinds of metabolites NX52 and NX83 from myxobacteria could kill colorectal carcinoma cells in vitro. The possible mechanism might be induced by apoptosis of tumor cells.

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