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1.
AIM: To study the effect of hexamethylene bisacetamide(HMBA) on the proliferation and expression of KLF6 and related proteins in human tongue carcinoma Tca8113 cells. METHODS: After cultured with HMBA, the growth of the Tca8113 cells was assayed by MTT method, and the morphology of the cells was observed under microscope. The cell cycle was determined by flow cytometry. The mRNA expression of KLF6 was detected by RT-PCR. The protein levels of KLF6, p53, cyclin D1 and c-Jun were measured by the method of immunohistochemistry. RESULTS: The number of adherent cells obviously decreased along with the concentration of HMBA, and the growth inhibition of Tca8113 cells was in a concentration/time-effect relationship after treated with HMBA. Some reversal features of the Tca8113 cells developed to normal cells in morphology after induced by HMBA. The proportion of the cells in G1 phase was (52.00?0.02)% before treating with HMBA. The proportion of the cells in S phase was (34.00?0.08)%, and (14.00?0.10)% of G2 phase cells. After treated with HMBA, the cell number in G1 phase significantly increased with the exposure time going on, while the cell number in S phase significantly reduced, so did the cell number in G2 phase. The cell cycle was significantly arrested in G1 phase (P<0.05). The apoptosis peak also appeared. The mRNA expression of KLF6 significantly increased after induced by HMBA (P<0.05), so did the protein levels of KLF6 and p53 (P<0.05), while the expression of cyclin D1 and c-Jun was significantly decreased (P<0.05). CONCLUSION: HMBA inhibits the proliferation of Tca8113 cells by arresting the cell cycle in G0/G1 phase and resuming Tca8113 cells to normal and apoptosis at last.  相似文献   

2.
AIM:To observe the effect of simvastatin on the proliferation of vascular smooth muscle cells(VSMCs) induced by serum and growth factor PDGF-BB and the effect of simvastatin on the expression of PTEN,a important regulator of G1/S cell cycle transition. METHODS:The DNA synthesis was determined by [3H]-TdR incorporation, cell cycle was examined with flow cytometry, the protein level of PTEN was measured by Western blot method. RESULTS: (1)Simvastatin inhibited [3H]-TdR incorporation in a dose dependent manner. (2) Flow cytometric DNA analysis revealed that simvastatin induced significantly enhancement of G0/G1 phase and decrease in S phase VSMCs.(3)Simvastatin increased protein level of PTEN and mevalonate, a metabolite of HMG-COA, reversed the effect of simvastatin on PTEN protein expression. CONCLUSION:Simvastatin may inhibit proliferation of VSMCs and retarded cell cycle in G0/G1 phase by increasing PTEN expression through inhibiting synthesis of mevalonate.  相似文献   

3.
AIM:To investigated the effect of 7-hydroxyisoflavone (7-HIF) on the proliferation, apoptosis and stem-like cell feature of colorectal cancer cells. METHODS:The effect of 7-HIF on the proliferation of HCT116 cells was detected by WST-1 assay and colony formation assay. The effects of 7-HIF on the cell cycle distribution and apoptosis in the HCT116 cells were analyzed by flow cytometry. The expression of cell-cycle related proteins and the stemness related proteins was determined by Western blot. RESULTS:After treated with 7-HIF (200 μmol/L), the viability of HCT116 cells was inhibited, and the size and number of the colony were decreased as compared with control group (P<0.05). The G0/G1 phase of the cell cycle was increased. The proportion of S phase was decreased and the cells were mainly arrested in G0/G1 phase. The apoptotic rate of HCT116 cells was 21.4%, which was significantly higher than that in the control group (1.1%). The results of Western blot revealed that the expression of inhibitor of differentiation 1(Id1) was significantly decreased (P<0.05). The expression of cell cycle markers cyclin D1 and cyclin E, the proliferative markers survivin and PCNA, and stem cell markers CD133, ALCAM and EpCAM were all down-regulated by 7-HIF treatment (P<0.05). CONCLUSION:7-HIF inhibits the proliferation and induces the apoptosis of colorectal cancer cells, and inhibits the stem-like cell feature, which may be related to Id1 inhibition.  相似文献   

4.
AIM: To investigate the effect of siRNA-induced astrocyte elevated gene-1 ( AEG-1 ) down-regulation on the proliferation, apoptosis and cell cycle of neuroblastoma cells. METHODS: An siRNA targeting to AEG-1 mRNA (AEG-1 siRNA) was constructed and transfected into neuroblastoma cells with Lipofectamine 2000. A non-specific siRNA (control siRNA) and non-treatment were used as negative control and blank control,respectively . The cell proliferation was detected by MTT method and colony formation assay. The apoptosis and cell cycle were analyzed by flow cytometry. RESULTS: Compared with control groups, the expression of AEG-1 mRNA was evidently declined in the cells transfected with AEG-1 siRNAs (P<0.05). AEG-1 siRNA significantly decreased the cell proliferation. After treated with AEG-1 siRNA for 48 h, the percentage of apoptotic cells was significant increased and the cell cycle was arrested in G0/G1 phase compared with the control cells (P<0.05). CONCLUSION: The mRNA expression of AEG-1 is down-regulated by AEG-1 siRNA in neuroblastoma cells. Knockdown of AEG-1 expression in human neuroblastoma cells significantly inhibits cell proliferation and apoptosis, and induces cell arrest in G0/G1 phase of the cell cycle.  相似文献   

5.
AIM: To investigate the effect of small interfering RNA(siRNA) on limb-bud and heart(LBH) gene expression in 16HBE cells, and further to observe the change of 16HBE cell cycle after knocking down of LBH gene. METHODS: Synthetical siRNA targeting LBH gene was transfected into 16HBE cells by the method of lipofectamine 2000. The mRNA expression of LBH was examined by real time RT-PCR. The cell cycle was assayed by flow cytometry. The expression of cyclin E1 and E2 was also detected by real time RT-PCR and Western blotting.RESULTS: The expression of LBH gene decreased by 86% in 16HBE cells transfected with 50 nmol/L of siRNA for 48 h. After transfected with siRNA for 48 h, 16HBE cells in G1 phase decreased by 9.28% and the cells in S phase increased by 14.08%. The expression level of cyclin E2 in 16HBE cells transfected with siRNA was twice higher than that of the negative control cells.CONCLUSION: Sequence-specific siRNA targeting LBH is capable of suppressing LBH gene expression in 16HBE cells. Down-regulation of LBH expression in 16HBE cells may promote the progress of cell cycle, and up-regulation of cyclin E2 expression plays a role in the process of G1/S phase.  相似文献   

6.
AIM: To investigate the effect and mechanism of sodium selenite (Na2SeO3) on the proliferation of endometrial cancer cells. METHODS: Endometrial cancer Ishikawa cells and HEC-1A cells were treated with Na2SeO3. The effect of Na2SeO3 on cell proliferation was determined by MTT assay. The effects of Na2SeO3 on cell cycle distribution and apoptosis were tested by flow cytometric analysis. The expression of cyclin A was detected by Western blotting. RESULTS: Na2SeO3 inhibited the proliferation of Ishikawa cells and HEC-1A cells. For Ishikawa cells, IC50 was 3.26 μmol/L, and for HEC-1A cells, IC50 was 4.77 μmol/L. After treated with Na2SeO3, the cells in G0/G1 phase were reduced and the cells in S phase and G2/M phase were increased. Na2SeO3 also increased the percentage of apoptosis cells. The result of Western blotting showed that the expression of cyclin A was increased. CONCLUSION: Na2SeO3 inhibits the proliferation of endometrial cancer Ishikawa cells and HEC-1A cells via up-regulating the expression of cyclin A, arresting cell cycle and inducing apoptosis.  相似文献   

7.
AIM: To investigate the inhibitory effect of CC-223, an inhibitor of mammalian target of rapamycin (mTOR) kinase, on the viability of human breast cancer cells and its mechanism. METHODS: The inhibitory effect of CC-223 on the viability of MCF-7 cells and MDA-MB-231 cells was measured by CCK-8 assay. The cell cycle distribution of breast cancer cells was examined by flow cytometry. The expression of cell cycle-related proteins and oncoproteins c-Myc and survivin was analyzed by Western blot. RESULTS: CC-223 significantly inhibited the viability of both MCF-7 and MDA-MB-231 cells (P<0.05). CC-223 induced cell cycle arrest in both G1 phase and G2/M phase in the MCF-7 cells (P<0.05). However, low concentration of CC-223 treatment resulted in the accumulation of MDA-MB-231 cell cycle in the G2/M phase, and the cell number in G1 phase was unaffected. Treatment with CC-223 for 24 h clearly inhibited the protein levels of cyclin B1, cyclin D1 and phosphorylated cell division cycle protein 2 in the breast cancer cells (P<0.05). CC-223 suppressed the expression of c-Myc and survivin in both MCF-7 cells and MDA-MB-231 cells (P<0.05). CONCLUSION: CC-223 inhibits cell viability by blocking cell cycle progression and down-regulating expression of c-Myc and survivin in both MCF-7 and MDA-MB-231 cells.  相似文献   

8.
AIM: To investigate the method of inducing G1 phase synchronization in human endometrial cancer JEC Cells by lovastatin and the cell cycle progress of JEC cells after desynchronization. METHODS: The doubling time of JEC cells was detected by Cell Counting Kit-8 (CCK-8) assay. To determine the best lovastatin concentrations for G1 synchronization, JEC cells were treated with lovastatin at concentrations of 10, 20, 30 and 40 μmol/L for 1× doubling time, and the cell cycle was detected using flow cytometry (FCM). To determine the best period of lovastatin treatment to achieve G1 synchronization, JEC cells were treated with lovastatin at the best concentration for 0.5× to 2× doubling time, and the cell cycle was detected every 4 h using FCM. Furthermore, the cell cycle progress of JEC cells after desynchronization was also observed. RESULTS: The doubling time of JEC cells was almost 24 h. Treatment with lovastatin at the concentration of 20 μmol/L for 24 h achieved maximum G1 arrest in JEC cells. Minimum G1 phase and maximum S phase were observed after desynchronization for 16 h. CONCLUSION: Maximum G1 synchronization of JEC cells is induced by lovastatin at the concentration of 20 μmol/L for 24 h. The JEC cells show minimum G1 phase and maximum S phase after desynchronization for 16 h.  相似文献   

9.
AIM: To investigate the effect of B lymphoma Moloney murine leukemia virus insertion region 1 ( Bmi-1 ) gene overexpression on the proliferation of a human normal gastric epithelial cell line GES-1. METHODS: The plasmid containing Bmi-1 gene or empty plasmid was transfected into GES-1 cells by retroviral mediation. The expression of Bmi-1 at mRNA and protein levels was detected by quantitative real-time PCR (qRT-PCR) analysis and Western blotting, respectively. The effect of Bmi-1 gene overexpression on the cell cycle of GES-1 cells was evaluated by flow cytometry. The proliferation of the stably transfected cells was measured by Cell Counting Kit-8. RESULTS: The results of qRT-PCR analysis and Western blotting demonstrated that stably transfected cell line was successfully established. The results of flow cytometry analysis showed that overexpression of Bmi-1 reduced the G0/G1 phase, arrested the cells in G2/M phase and S phase. The growth curve showed that overexpression of Bmi-1 resulted in increased growth speed. CONCLUSION: Increase in Bmi-1 gene expression regulates the cell cycle and promotes the proliferation of GES-1 cells.  相似文献   

10.
AIM:To observe the effect of protein kinase C-α(PKCα)antisense oligonucleotide on cell growth, cell cycle and the expression of cyclin E in human poor-differentiated nasopharyngeal carcinoma(NPC) cell line CNE-2Z. METHODS:Antisense PKCα was transfected by cationic liposome(LP) in CNE-2Z cells to analyze the cell growth and cell cycle by MTT colorimetric assay and flow cytometry, respectively. Moreover, the expression of cyclin E was determined by immunocellularchemistry and scanning the result of dot-blotting. RESULTS:①With the concentration of antisense PKCα increasing, the relative cell growth index was decreased gradually(P<0.01). ②After treated with antisense PKCα, the percentage of cells in G1 phase enhanced(P<0.05). ③Compared with the control group, the expressing intensity of cyclin E reduced in antisense PKCα group, and the expression of cyclin E decreased to 66.5%±18.4%(P<0.05) of the control by scanning quantitative analysis. CONCLUSION:These results indicated that antisense PKCα may inhibit cell growth in CNE-2Z via suppressing the expression of cyclin E and hindering cell process in G1 phase.  相似文献   

11.
AIM: To explore a new gene therapeutic strategy for vein graft restenosis by investigating the effects of adenovirus-mediated human growth arrest-specific homeobox (Ad5-hGax) gene delivery on the proliferation, migration and cell cycle distribution of serum-induced rabbit vascular smooth muscle cells (VSMCs). METHODS: The recombinant adenovirus vector containing hGax gene was constructed and transfected into rabbit VSMCs. The expression of hGax in VSMCs was detected by RT-PCR and immunofluorescent staining. Methyl thiazolyl tetrazolium (MTT) assay was used to assess the effect of hGax over-expression on serum-induced proliferation of VSMCs. Wound healing method was applied to examine the distance of serum-induce VSMCs migration. Flow cytometry was employed to analyze the cell cycle distribution. RESULTS: The recombinant adenovirus vector Ad5-hGax was successfully constructed. The results of RT-PCR and immunofluorescent staining revealed that the hGax -transfected cells contained a 174 bp specific fragment of hGax gene and target protein 48 h after transfection. The proliferation of serum-induced VSMCs was significantly inhibited by overexpression of hGax gene as compared with control group. The migration of serum-induced VSMCs was inhibited after hGax gene delivery. Flow cytometry showed that 72 h after serum induction, the cells in G0/G1 phase in Ad5-hGax group were significantly increased, whereas the cells in G2/M+S phase were significantly decreased. CONCLUSION: Overexpression of hGax gene inhibits the proliferation and migration of serum-induced rabbit VSMCs, and arrests the cells in G0/G1 phase. It is likely that hGax gene is a potential target for the gene therapy of vein graft restenosis.  相似文献   

12.
AIM: To explore the effect of fucoxanthin (Fu) on the growth and apoptosis of HSC-T6 cells. METHODS: HSC-T6 cells were divided into blank control group, negative control group and drug groups (treated with different concentrations of Fu). The cell viability was detected by CCK-8 assay at 24 h, 48 h and 72 h after Fu treatment. The cell cycle distribution and apoptotic rate were analyzed by flow cytometry. The protein expression of Bcl-2 and Bax were detected by Western blot. RESULTS: Compared with blank control group, the viability of HSC-T6 cells was inhibited by Fu at concentrations of 15~75 μmol/L in a dose- and time-dependent manner (P < 0.01). The cell ratio of G1 phase was significantly decreased (P < 0.01) and the cell ratio of S phase and G2 phase was significantly increased (P < 0.01) in 60 μmol/L Fu group after 24 h. The cell ratio of G1 phase was significantly decreased (P < 0.05) and the cell ratio of S phase and G2 phase was significantly increased (P < 0.05) in 15 μmol/L and 30 μmol/L Fu groups in a dose-dependent manner after 48 h. The early cell apoptotic rates and total cell apoptotic rates were significantly increased in the Fu treatment groups in a dose-dependent manner (P < 0.05). The protein expression of Bax was significantly increased in the Fu treatment groups and the protein expression of Bcl-2 was significantly decreased in 30 μmol/L and 60 μmol/L Fu groups (P < 0.05).CONCLUSION: Fu inhibits the growth of HSC-T6 cells possiblely via arresting the cell cycle at S phase and G2 phase. The apoptosis of HSC-T6 cells induced by Fu might be via down-regulating the protein expression of Bcl-2 and up-regulating the protein expression of Bax.  相似文献   

13.
AIM: The roles of Cl-channels in regulatory volume decrease (RVD), cell proliferation and cell cycle progression in nasopharyngeal carcinoma cells (CNE-2Z) were investigated. METHODS: Image analysis of living cells was used to detect the volume changes following exposure to hypotonic solutions. Cell viability was determined by the trypan blue assay. MTT method was applied to detected cell proliferation. The effect of the blocker on the cell cycle distribution was monitored by the flow cytometry. RESULTS: 5-nitro-2-(3-phenylpropylamino) benzoic acid (NPPB) inhibited RVD and cell proliferation in a dose-dependent manner. NPPB at the concentration of 100 μmol/L arrested cells in G1 phase (G1 population increased from 54% to 71% at 48 h after treatments), but did not significantly alter cell viability. CONCLUSION: Block of chloride channels suppressed cell proliferation by arresting cells in G1 phase. The results suggest that activation of Cl-channels and RVD is necessary for facilitating cells to proceed to the S phase from G1 phase and maintaining cell proliferation.  相似文献   

14.
AIM: To observe the effects of exogenous zinc on the biological behavior of hepatocellular carcinoma (HCC) cell line BEL-7404. METHODS: BEL-7404 cells were cultured with zinc sulfate at various concentrations. The intracellular concentration of zinc, cell viability, cell cycle, cell apoptosis and migration and invasion abilities were measured by TSQ fluorescent probe, MTT assay, DNA ploid analysis, acridine orange/ethidium bromide fluorescence staining and Transwell assay, respectively. The mRNA and protein expression levels of albumin in the BEL-7404 cells were determined by real-time PCR and Western blot, respectively. RESULTS: With the elevated concentration of zinc in culture condition, the concentration of zinc in the BEL-7404 cells was increased (P<0.05). The cell viability and migration and invasion abilities were decreased, while the apoptotic rate was increased (P<0.05). The cells in G0/G1 phase were decreased, while the cells in G2/M phase were increased. Additionally, the mRNA and protein expression of albumin also increased (P<0.05). CONCLUSION: The zinc ion inhibits the cell viability as well as migration and invasion abilities, blocks the cells in G2/M phase, and may reduce cell malignant phenotype.  相似文献   

15.
AIM: To study the expression of eukaryotic elongation factor 1A2 (eEF1A2) in the hepatocellular carcinoma (HCC) tissues and the effects of eEF1A2 over-expression on the biological behaviors of the HCC cells. ME-THODS: The expression of eEF1A2 at mRNA and protein levels in the HCC tissues and matched liver tissues from 62 HCC patients, and 20 normal liver tissues were detected by the methods of real-time PCR and immunohistochemical staining, respectively. The mRNA and protein expression of eEF1A2 in the HCC cells was also determined by real-time PCR and Western blot, respectively. The lentivirus containing eEF1A2 gene was constructed, and was used to infect the HCC cells with low eEF1A2 expression. The expression of eEF1A2 at mRNA and protein levels in the infected cells was detected by real-time PCR and Western blot, respectively. The cell activity, cell cycle and mRNA expression of albumin were measured by MTT assay, DNA ploid analysis and real-time PCR, respectively.RESULTS: The mRNA expression levels and protein expression positive rates of eEF1A2 in the 62 cases of HCC tissues, were significantly higher than those of 62 matched liver tissues and 20 normal liver tissues (P<0.01). eEF1A2 mRNA and protein were highly expressed in SMMC-7721 cells and BEL-7402 cells, and expressed in SK-HEP-1 cells at low level. The expression of eEF1A2 at mRNA and protein levels in the SK-HEP-1 cells was significantly enhanced by infection of GV287-eEF1A2 expression lentivirus.Compared with negative control group (transfected with negative control lentivirus), the cell activity in eEF1A2 over-expression group (transfected with GV287-eEF1A2 expression lentivirus) was significantly enhanced, the mRNA expression of albumin was remarkably reduced, and the cells in G0/G1 phase were significantly decreased with increased percentage of the cells in S and G2/M phases.CONCLUSION: eEF1A2 is selectively over-expressed in human HCC cancer tissues. eEF1A2 might be a putative oncoprotein in HCC. eEF1A2 over-expression has noticeable effects on the HCC cell proliferation enhancement, differentiation inhibition, and cell cycle acceleration through the G0/G1 phase to S phase and G2/M phases.  相似文献   

16.
17.
AIM: To investigate the oncogenic effect of microRNA-106a (miR-106a) on normal gastric mucous epithelial cells and gastric cancer cells.METHODS: The miR-106a mimic was transfected into normal gastric mucous epithelial cell line GES-1 using liposome. The change of cell growth was measured by MTT assay. The miR-106a inhibitor was transfected into gastric cancer cell lines MGC-803 and SGC-7901 using liposome, and the changes of cell cycle distribution and cell cycle-related protein expression were measured by flow cytometry and Western blotting,respectively. The growth of gastric cancer was also observed using nude mouse xenograft model. RESULTS: The miR-106a mimic increased the growth of GES-1 cells in a dose-dependent manner. By decreasing the expression of cyclin-dependent kinase (CDK) 1 and CDK2, the miR-106a inhibitor arrested MGC-803 cells at G0/G1 and G2/M phases. The miR-106a inhibitor also arrested SGC-7901 cells at G2/M phase by decreasing the expression of CDK1. The results of animal experiments showed that the miR-106a inhibitor significantly suppressed the tumor growth in a dose-dependent manner.CONCLUSION: miR-106a may play an important role in the development of gastric cancer.  相似文献   

18.
19.
AIM: To observe the effects of the combination of berberin (Ber) and mitomycin C (MMC) on the cell cycle arrest and apoptosis of T24 bladder cancer cells and the underlying mechanisms. METHODS: The T24 cells were exposed to MMC in the presence or absence of difference concentrations of Ber. The viability of the T24 cells was determined by CCK-8 assay. The cell cycle distribution was detected by flow cytometry. The apoptosis was analyzed by flow cytometry with Annexin V-FITC/PI staining, and the protein expression levels of cyclin D1, survivin, CDK2, CDK4, p21 and p27 were determined by Western blot. RESULTS: CCK-8 experiments showed that Ber enhanced the inhibitory effect of MMC on the viability of T24 cells. The results of flow cytometry showed that Ber also enhanced the blockade effect of MMC on T24 cells in G0/G1 phase (P<0.05). Compared with the MMC group, Ber increased the expression of p21 and p27 up-regulated by MMC, and decreased the expression of cynlin D1, CDK2 and CDK4 (P<0.05). Meanwhile, Ber promoted MMC to inhibit the expression of survivin (P<0.05). Ber increased the apoptosis of T24 cells induced by MMC (P<0.05). CONCLUSION: Ber significantly enhances the inhibitory effect of MMC on the viability of T24 cells. The mechanism may be related to up-regulation of p21 and p27, thereby inhibiting the expression of cyclin D1, CDK-2 and CDK-4. At the same time, Ber inhibits the protein expression of survivin, which eventually leads to cell arrest in G0/G1 phase and promotes apoptosis.  相似文献   

20.
AIM: To investigate the effect of decorin (DCN) on the proliferation and apoptosis of human pterygium fibroblasts (HPF) in vitro , and to compare the effect of mitomycin C (MMC) in order to search for a new method to prevent the recurrence after pterygium surgery. METHODS: Human pterygium fiborblasts were isolated from the caudomedial part of pterygium tissues in pterygium patients and then cultured in vitro using tissue inoculation method. The cells were treated with DCN and MMC at concentrations of 0.01, 0.1, 1, 5 and 10 mg/L. The morphological alterations of HPF were observed after 24 h, 48 h or 72 h of treatment. MTT method was used to assay the effects of the 2 drugs at different doses after 12 h, 24 h and 48 h on the proliferation of the cells. The expression of proliferating cell nuclear antigen (PCNA) in each group treated with different doses of DCN was detected by the method of immunohistochemistry after 48 h. The cell cycle distribution was determined by flow cytometry analysis. RESULTS: After administration of 10 mg/L DCN or 1 mg/L MMC for 12 h, the proliferation of HPF was significantly inhibited by both drugs in a dose- and time-dependent manner (P<0.05). After treated with 1~10 mg/L DCN for 48 h, the percentage of HPF in G0/G1 phase was increased, while the percentage of HPF in G2/M phase and S phase (G2/M%+S%) was decreased after treated with 5~10mg/L DCN for 48 h (P<0.05). The late-apoptotic cells were not found in DCN group and MMC group. DCN dose-dependently inhibited the expression of PCNA in HPF (P<0.05). CONCLUSION: Decorin significantly inhibits the proliferation of HPF, and blocks the cells in G1 phase.  相似文献   

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