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1.
Fudan University Journal of Medical Sciences ; (6): 202-206, 2010.
Article in Chinese | WPRIM | ID: wpr-403290

ABSTRACT

Objective To study the effects of cripto on migration, invasion, and liver metastasis of colorectal cancer cell. Methods After human colorectal cancer cell line SW480 was transfected by cripto small interfering RNA (siRNA), the mRNA and protein level were determined by Real-time RT-PCR and Western blot, respectively. The migration and invasion ability were evaluated by wound-healing assay and boyden chamber model, respectively. Thirty nude mice model of liver metastasis from colorectal cancer was established by splenectomy. Results The siRNA could down-regulate the level of mRNA and protein of cripto in a dose- and time-dependent manner. Suppression of cripto expression could inhibit migration and invasion ability of human colorectal cancer cell in vitro. The metastastic rate and tumor nodules were lower in transfection with cripto siRNA than in two control groups in vivo. Conclusions Cripto gene might play an important role in regulation of liver metastasis from colorectal carcinoma cell, and suppression of cripto gene by siRNA can inhibit liver metastasis of colorectal cancer.

2.
Chinese Journal of Pancreatology ; (6): 199-201, 2010.
Article in Chinese | WPRIM | ID: wpr-388940

ABSTRACT

Objective To investigate the effects of the silence of teratocarcinoma-derived growth factor-1 ( TDGF-1 ) gene on invasion of human pancreatic cancer cell. Methods Three small interfering RNA (siRNA) targeting for TDGF-1 genes (S1, S2, S3 ) were designed and established, then the gene with the best silencing effects was screened. Human pancreatic cancer cell line PANC1 were transfected by siRNA with different concentrations (3. 125, 6.25, 12.5 nmoL/L), the cells without transfection, and simply treated with liposomes were controls. The expressions of mRNA and protein of TDGF-1 were determined by real time PCR and Western blot assay, respectively. The anchorage-independent growth was examined by clon formation in soft agar, and invasion ability was evaluated by boyden chamber model. PANC1 cells with transfection for 48h were injected into the nude mice to evaluate the invasion ability in vivo. Results The expressions of TDGF-1 mRNA and protein of cells transfected by siRNA were decreased in a dose-and time-dependent manner, which were significantly lower than those in liposomes group. Number of colony formation and transmembrane cell were 19.8 ± 2.2 and 49.8 + 2.6 in the control group, and 5.6 + 1.2 and 8. 1 + 1.1 in the 12.5 nmol/L transfection group. The volumes of tumor 4 weeks after transplation in the control group, liposomes group and the 12.5 nmol/L transfection group were (2.228 ± 0.016 ) cm3, ( 2.186 ± 0.028 )cm3 and ( 0.728 ± 0.023 )cm3. Conclusions TDGF-1 gene silence could inhibit invasion ability of human pancreatic cancer cell PANC1.

3.
Chinese Journal of Endocrine Surgery ; (6): 291-294, 2010.
Article in Chinese | WPRIM | ID: wpr-622095

ABSTRACT

Objective To study the impact of TDGF-1 gene silience by small interfering RNA(siRNA)on the invasion and migration of human breast cancer cell. Methods 3 siRNA fragments were designed according to the characteristic of TDGF-1 gene sequence and the most appropriate siRNA was selected by fluorescence real-time quantitative RT-PCR method. After the human breast cancer cell line MDA-MB-468 was transfected by the selected TDGF-1 siRNA, mRNA and protein of TDGF-1 were determined by real time quantitative RT-PCR and western blot respectively. The migration and invasion ability of the cancer cell were evaluated by wound-healing assay and Boyden chamber model respectively. Results siRNA could down-regulate the level of mRNA and protein of TDGF-1 in a dose-and time-dependent manner. In vitro experiment showed that TDGF-1 siRNA transfection can effectively inhibit the clonal growth, invasion and migration of breast cancer cell in a dose-dependent manner. Conclusions TDGF-1 gene may play an important role in the migration and invasion of human breast cancer cells. siRNA transfection can inhibit the invasion of human breast cancer cells.

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