Objective: To investigate the cytotoxic effects and the potential mechanisms of crebanine N-oxide in SGC-7901 gastric adenocarcinoma cells. Methods: The cytotoxicity of crebanine N-oxide was evaluated by 3-(4,5-dimeth...Objective: To investigate the cytotoxic effects and the potential mechanisms of crebanine N-oxide in SGC-7901 gastric adenocarcinoma cells. Methods: The cytotoxicity of crebanine N-oxide was evaluated by 3-(4,5-dimethyl-2-thiazolyl)-2,5-diphenyl-2-H-tetrazolium bromide assay and cellular morphology was observed under a microscope. Cell apoptosis was determined by flow cytometry using propidium iodide staining. The expression levels of apoptotic-related proteins, cleaved caspase-3, cytochrome C, p53 and Bax, and autophagyrelated proteins p62, beclin1 and LC3 were detected by Western blotting assays. Results: Crebanine N-oxide treatment significantly inhibited the proliferation of SGC-7901 cells in a dose-dependent and timedependent manner via induction of G2-phase cell cycle arrest, apoptosis, and autophagy in SGC-7901 cells.Conclusions: Crebanine N-oxide could inhibit the growth of gastric cancer cells by promoting apoptosis and autophagy and could be used as a potential agent for treating gastric cancer.展开更多
Objective:To investigate the effect of Chinese medicine Compound Weichang'an(胃肠安)for invig-orating the spleen on apoptosis of gastric cancer SGC7901 cells and its possible mechanism.Methods:The gas-trie cancer ...Objective:To investigate the effect of Chinese medicine Compound Weichang'an(胃肠安)for invig-orating the spleen on apoptosis of gastric cancer SGC7901 cells and its possible mechanism.Methods:The gas-trie cancer SGC-7901 cells were divided into different mass concentration groups(0 mg·L^(-1),500 mg·L^(-1)1000 mg·L^(-1),1500 mg·L^(-1),2000 mg·L^(-1)).CCK8 and monoclonal test were applied to detect prolifera-tion ability;comet assay was used to detect DNA damage.After DCFH-DA fluorescent labeling,the level of ROS activity was detected by flow cytometer;after AnnexinV-FTC/PI double labeling,the proportion of apoptotic ellls was detected by flow cytometer;after JC-1 staining,the mi tochondri almembrane potential was detected by flow cytometer;after FTTC-DEVD-FMK staining,the ratio of Caspase activity was detected by flow cytometer.Results:Weichang an inhibited cell proliferation and reduced cell colony formation in a time-dose-dependent manner;the results of comet electrophoresis showed that Weichang'an could induce DNA damage in gastric cancer cells;com-pared with control group.the ratio of Weichang'an's intervention with the apoptosis of gastric cancer cells in-creased(P<0.05),the mitochondrial membrane potential decreased(P<0.05),the activity of Caspase3 and Caspase9 increased(P<0.05),and the intracellular ROS level increased(P<0.05).Among them,the effect of Weichang'an treatment group(1000 mg·L^(-1))was the most significant.Conclusion:Weichang'an has an inhibi-tory effect on the proliferation of gastric cancer SGC7901 cells and can induce cell apoptosis.Its mechanism may be related with the ROS-mediated pathway of mitochondrial apoptosis and DNA damage.展开更多
OBJECTIVE To investigate whether nimesulide can suppress tumor growth and induce apoptosis in SGC-7901 gastric cancer cells and to explore the molecular mechanism involved. METHODS SGC-7901 cells were cultured in RPMI...OBJECTIVE To investigate whether nimesulide can suppress tumor growth and induce apoptosis in SGC-7901 gastric cancer cells and to explore the molecular mechanism involved. METHODS SGC-7901 cells were cultured in RPMI 1640 medium containing different concentrations of nimesulide (0,12.5, 50, 100, 200, 400 μmol/L). The MTT assay, morphological observation, electron microscopy (EM), immunohistochemical analysis and Western blot analysis were employed to investigate the effects of nimesulide on the SGC-7901 cells and to explore possible related molecular mechanisms. RESULTS Nimesulide inhibited the growth of SGC-7901 cells and elicited typical apoptotic morphologic changes. Nimesulide also decreased NF-κB and Bcl-2 expression, but increased the level of the Bax protein. The positive rate of Bcl-2 protein expression at 0, 50, 100 and 200 μmol/L of nimesulide was 58.3±14.0%, 50.2±9.9%, 32.8±5.0% and 22.7±5.5% respectively based on immunohistochemical staining. The positive rate of Bax protein expression was 22.0±5.7%, 29.2±6.5%, 42.7±5.9% and 74.5±9.1% and the NF-κB expression was 74.2±10.9%, 61.8±7.6%, 36.7±10.9% and 17.5±12.3%, Significant differences were found between so μmol/L and 100 μmol/L and 200μmol/L. Western blot analysis also showed that the expression of NF-κB was decreased. CONCLUSION Nimesulide suppresses tumor growth and induces apoptosis by inhibiting NF-κB expression, which may be related to the overexpression of Bax relative to Bcl-2 expression.展开更多
AIM: To investigate the low intensity ultrasound (US)- induced apoptosis in human gastric carcinoma cells and its potential mechanism and to suggest a new therapeutic approach to gastric carcinoma. METHODS: Human ...AIM: To investigate the low intensity ultrasound (US)- induced apoptosis in human gastric carcinoma cells and its potential mechanism and to suggest a new therapeutic approach to gastric carcinoma. METHODS: Human SGC-7901 gastric carcinoma cells were cultured in vitro and irradiated by low intensity US for 10 min at different intensities with different incubation times after irradiation. Morphologic changes were examined under microscope with trypan blue staining and then the percentage of early apoptotic cells was detected by flow cytometry (FCM) with double staining of fiuorescein isothiocyanate (FITC)- Annexin V/propidium iodide (PI). Two-dimensional electrophoresis (2DE) was used to get the protein profile and some proteins differently expressed after US irradiation were identified by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF-MS). Functional analysis was performed to investigate the mechanism of US-induced cell apoptosis. RESULTS: The percentage of apoptotic cells increased about 10% after US irradiation (12.0 W/cm^2, 12 h culture), The percentage of early apoptosis and secondary necrosis in the US-irradiated cells increased with the increased US intensity. Moreover, apoptotic cells increased with the increased culture time after US irradiation and reached its maximum at about 12 h.Several new proteins appeared after US irradiation and were up or down regulated more than 2 times. Some heat shock proteins (HSPs) were found to be associated with the signal process simulating the apoptosis of cells. CONCLUSION: Low intensity US could induce apoptosis in human gastric carcinoma cells. US-induced apoptosis is related to US intensity/culture time. US-induced apoptosis may be caspases-dependent and endoplasmic reticulum (ER) stress-triggered apoptosis may also contribute to it. Proteomic experimental system is useful in finding the protein alteration in carcinoma cells after US irradiation, helping to develop a new cancer therapy.展开更多
基金supported by the National Natural Science Foundation of China(NO.81760628).
文摘Objective: To investigate the cytotoxic effects and the potential mechanisms of crebanine N-oxide in SGC-7901 gastric adenocarcinoma cells. Methods: The cytotoxicity of crebanine N-oxide was evaluated by 3-(4,5-dimethyl-2-thiazolyl)-2,5-diphenyl-2-H-tetrazolium bromide assay and cellular morphology was observed under a microscope. Cell apoptosis was determined by flow cytometry using propidium iodide staining. The expression levels of apoptotic-related proteins, cleaved caspase-3, cytochrome C, p53 and Bax, and autophagyrelated proteins p62, beclin1 and LC3 were detected by Western blotting assays. Results: Crebanine N-oxide treatment significantly inhibited the proliferation of SGC-7901 cells in a dose-dependent and timedependent manner via induction of G2-phase cell cycle arrest, apoptosis, and autophagy in SGC-7901 cells.Conclusions: Crebanine N-oxide could inhibit the growth of gastric cancer cells by promoting apoptosis and autophagy and could be used as a potential agent for treating gastric cancer.
基金We thank for the funding support from the Scientific Research Project of National TCM Clinical Research Base Business Construction of National Administration of Traditional Chi-nese Medicine(JDZX2015068)Henan Sci-ence and Technology Project(202102310164)+1 种基金Henan Scientific Research Project of Traditional Chinese Medicine(2019JDZX025)Scientific Research Project of Henan Province Hospital of TCM(2018YJKT09).
文摘Objective:To investigate the effect of Chinese medicine Compound Weichang'an(胃肠安)for invig-orating the spleen on apoptosis of gastric cancer SGC7901 cells and its possible mechanism.Methods:The gas-trie cancer SGC-7901 cells were divided into different mass concentration groups(0 mg·L^(-1),500 mg·L^(-1)1000 mg·L^(-1),1500 mg·L^(-1),2000 mg·L^(-1)).CCK8 and monoclonal test were applied to detect prolifera-tion ability;comet assay was used to detect DNA damage.After DCFH-DA fluorescent labeling,the level of ROS activity was detected by flow cytometer;after AnnexinV-FTC/PI double labeling,the proportion of apoptotic ellls was detected by flow cytometer;after JC-1 staining,the mi tochondri almembrane potential was detected by flow cytometer;after FTTC-DEVD-FMK staining,the ratio of Caspase activity was detected by flow cytometer.Results:Weichang an inhibited cell proliferation and reduced cell colony formation in a time-dose-dependent manner;the results of comet electrophoresis showed that Weichang'an could induce DNA damage in gastric cancer cells;com-pared with control group.the ratio of Weichang'an's intervention with the apoptosis of gastric cancer cells in-creased(P<0.05),the mitochondrial membrane potential decreased(P<0.05),the activity of Caspase3 and Caspase9 increased(P<0.05),and the intracellular ROS level increased(P<0.05).Among them,the effect of Weichang'an treatment group(1000 mg·L^(-1))was the most significant.Conclusion:Weichang'an has an inhibi-tory effect on the proliferation of gastric cancer SGC7901 cells and can induce cell apoptosis.Its mechanism may be related with the ROS-mediated pathway of mitochondrial apoptosis and DNA damage.
基金This work was supported by the grant form the Natural Science Foundation of the Education Department of Jiangsu Province of China (No. 05KJD320234 and 01KJB320011).
文摘OBJECTIVE To investigate whether nimesulide can suppress tumor growth and induce apoptosis in SGC-7901 gastric cancer cells and to explore the molecular mechanism involved. METHODS SGC-7901 cells were cultured in RPMI 1640 medium containing different concentrations of nimesulide (0,12.5, 50, 100, 200, 400 μmol/L). The MTT assay, morphological observation, electron microscopy (EM), immunohistochemical analysis and Western blot analysis were employed to investigate the effects of nimesulide on the SGC-7901 cells and to explore possible related molecular mechanisms. RESULTS Nimesulide inhibited the growth of SGC-7901 cells and elicited typical apoptotic morphologic changes. Nimesulide also decreased NF-κB and Bcl-2 expression, but increased the level of the Bax protein. The positive rate of Bcl-2 protein expression at 0, 50, 100 and 200 μmol/L of nimesulide was 58.3±14.0%, 50.2±9.9%, 32.8±5.0% and 22.7±5.5% respectively based on immunohistochemical staining. The positive rate of Bax protein expression was 22.0±5.7%, 29.2±6.5%, 42.7±5.9% and 74.5±9.1% and the NF-κB expression was 74.2±10.9%, 61.8±7.6%, 36.7±10.9% and 17.5±12.3%, Significant differences were found between so μmol/L and 100 μmol/L and 200μmol/L. Western blot analysis also showed that the expression of NF-κB was decreased. CONCLUSION Nimesulide suppresses tumor growth and induces apoptosis by inhibiting NF-κB expression, which may be related to the overexpression of Bax relative to Bcl-2 expression.
基金The National Natural Science Foundation of China (No. 30630024)the Key Project of Ministry of Education (No. 705046)the Doctoral Foundation of Xi’an Jiaotong University (grants No. DFXJTU2005-05)
文摘AIM: To investigate the low intensity ultrasound (US)- induced apoptosis in human gastric carcinoma cells and its potential mechanism and to suggest a new therapeutic approach to gastric carcinoma. METHODS: Human SGC-7901 gastric carcinoma cells were cultured in vitro and irradiated by low intensity US for 10 min at different intensities with different incubation times after irradiation. Morphologic changes were examined under microscope with trypan blue staining and then the percentage of early apoptotic cells was detected by flow cytometry (FCM) with double staining of fiuorescein isothiocyanate (FITC)- Annexin V/propidium iodide (PI). Two-dimensional electrophoresis (2DE) was used to get the protein profile and some proteins differently expressed after US irradiation were identified by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF-MS). Functional analysis was performed to investigate the mechanism of US-induced cell apoptosis. RESULTS: The percentage of apoptotic cells increased about 10% after US irradiation (12.0 W/cm^2, 12 h culture), The percentage of early apoptosis and secondary necrosis in the US-irradiated cells increased with the increased US intensity. Moreover, apoptotic cells increased with the increased culture time after US irradiation and reached its maximum at about 12 h.Several new proteins appeared after US irradiation and were up or down regulated more than 2 times. Some heat shock proteins (HSPs) were found to be associated with the signal process simulating the apoptosis of cells. CONCLUSION: Low intensity US could induce apoptosis in human gastric carcinoma cells. US-induced apoptosis is related to US intensity/culture time. US-induced apoptosis may be caspases-dependent and endoplasmic reticulum (ER) stress-triggered apoptosis may also contribute to it. Proteomic experimental system is useful in finding the protein alteration in carcinoma cells after US irradiation, helping to develop a new cancer therapy.