1.Stellera chamaejasme extract against multidrug resistance of breast cancer cell line MCF-7.
Xi-He CUI ; Rui ZENG ; Yuan-Long ZANG ; Qing YANG ; Xiao-Xin ZHU ; Ya-Jie WANG
China Journal of Chinese Materia Medica 2023;48(9):2360-2367
This study explored the effect and underlying mechanism of Stellera chamaejasme extract(SCE) on multidrug resistance of breast cancer. The chemotherapy-sensitive breast cancer cell line MCF-7 and adriamycin(ADR)-resistant cell line MCF-7/ADR were used as experimental subjects. MTT assay was used to detect cell proliferation activity. Pi staining was used to detect the cell cycle. 4',6-Diamidino-2-phenylindole, dihydrochloride(DAPI) staining and flow cytometry were used to detect apoptosis. Dansylcadaverine(MDC) staining and GFP-LC3B-Mcherry adenovirus transfection were used to detect autophagy. The protein expression of Bcl-2, Bax, caspase-9, caspase-3, LC3B, p62, and Beclin-1 was detected by Western blot. The results showed that SCE could significantly inhibit the proliferation of both sensitive and resistant breast cancer cell lines. The drug resistance factor was 0.53, which was significantly lower than 59 of ADR. Meanwhile, the proportion of sensitive/resistant cells in the G_0/G_1 phase increased significantly after SCE treatment. In addition, DAPI staining showed that a series of apoptosis phenomena such as nuclear pyknosis, staining deepening, and nuclear fragmentation appeared in sensitive/resistant cell lines after SCE administration. Moreover, the results of flow cytometry double staining showed that the proportion of apoptotic cells in sensitive/resistant cell lines increased significantly after SCE administration. Besides, Western blot showed that the protein expression levels of caspase-3, caspase-9, and Bcl-2 significantly decreased and the expression level of Bax protein significantly increased in both breast cancer cell lines after SCE administration. Furthermore, SCE could also increase the positive fluorescent spots after MDC staining and yellow fluorescent spots after GFP-LC3B-mcherry transfection, and up-regulate the expression levels of autophagy-related proteins LC3B-Ⅱ, p62, and Beclin-1 in breast cancer cells. In summary, SCE may play the role of anti-multidrug resistance by blocking the cell cycle of breast cancer multidrug-resistant cells, blocking autophagy flow, and ultimately interfering with the apoptosis resistance of drug-resistant cells.
Humans
;
Female
;
Breast Neoplasms/metabolism*
;
MCF-7 Cells
;
Caspase 3/metabolism*
;
Caspase 9/metabolism*
;
Beclin-1/pharmacology*
;
Apoptosis
;
Proto-Oncogene Proteins c-bcl-2/metabolism*
;
Cell Line, Tumor
;
Drug Resistance, Neoplasm
;
Cell Proliferation
2.Anti-carcinogenic actions of glycoprotein conjugated with isoflavones from submerged-liquid culture of Agaricus blazei mycelia through reciprocal expression of Bcl-2 and Bax proteins.
Young Suk KIM ; Boh Hyun KIM ; Gon Sup KIM ; Joung Soon JANG ; So Young KIM ; Byeong Dae CHOI ; Jeong Ok KIM ; Yeong Lae HA
Journal of Biomedical Research 2014;15(4):200-206
Glycoproteins isolated from fruit bodies and mycelial cultures of mushrooms exhibit anti-carcinogenic actions in human cancer cells and animal tumor cells by induction of apoptosis. Here, we report that isoflavone-conjugated glycoproteins (designate Gluvone), exhibit strong anti-carcinogenic effects on human breast cancer MCF-7 cells by induction of apoptosis. Gluvone with 9.4 kDa of molecular weight was isolated from submerged-liquid culture of Agaricus blazei mycelia (ABM) in soy flake-containing liquid medium. MCF-7 cells were incubated with various amounts of Gluvone (0~250 microM) for a period of 6 days. Gluvone exhibited anti-proliferative actions in a dose-dependent manner and 62% growth inhibition at 200 microM for 4 days relative to control. Hoechst 33258 staining analysis revealed that Gluvone induced formation of apoptotic bodies. Gluvone was associated with down-regulation of anti-apoptotic Bcl-2 protein expression as well as up-regulation of pro-apoptotic Bax protein expression. Gluvone treatment induced proteolytic activation of caspase-9 and caspase-3 through cytochrome c release from mitochondria to cytosol as well as concomitant degradation of poly (ADP-ribose) polymerase (PARP). In addition, Gluvone induced activation of caspase-8. Taken all together, these results indicate that the anti-proliferative effect of Gluvone is associated with induction of apoptotic cell death through the mitochondrial dysfunction pathway mediated by enhancement of Bax protein expression and suppression of Bcl-2 protein expression.
Agaricales
;
Agaricus*
;
Animals
;
Anticarcinogenic Agents
;
Apoptosis
;
bcl-2-Associated X Protein*
;
Bisbenzimidazole
;
Breast Neoplasms
;
Caspase 3
;
Caspase 8
;
Caspase 9
;
Cell Death
;
Cytochromes c
;
Cytosol
;
Down-Regulation
;
Fruit
;
Glycoproteins*
;
Humans
;
Isoflavones*
;
MCF-7 Cells
;
Mitochondria
;
Molecular Weight
;
Up-Regulation
3.Inhibition of microvascular endothelial cell apoptosis by angiopoietin-1 and the involvement of cytochrome C.
Lian-guo SHI ; Guo-ping ZHANG ; Hui-ming JIN
Chinese Medical Journal 2006;119(9):725-730
<b>BACKGROUNDb>Angiopoietin-1 (Ang-1) is an endothelial-specific growth factor that can promote angiogenesis. Studies demonstrated that Ang-1 can inhibit apoptosis of umbilical endothelial cells, but so far little is known about its effects on apoptosis of microvascular endothelial cells. With the apoptotic model of murine-cerebral-derived microvascular endothelial cells (bEnd.3) induced by serum-free culture, we attempted to clarify the molecular mechanism of bEnd.3 apoptosis, particularly its relation to cytochrome C (Cyt C).
<b>METHODSb>The cultured microvascular endothelial cell strain, bEnd.3 cell, was employed. An apoptotic model of bEnd.3 was established by serum-free culture. Flow cytometry after Annexin labeling and PI staining were used to assess the apoptotic effects of Ang-1 on bEnd.3, and the expression of Bax/Bcl-2, caspase 8, caspase 3, and Cyt C were detected with Western blotting and ELISA.
<b>RESULTSb>The apoptotic rate of bEnd.3 cells after stimulation with Ang-1 (100 ng/L) in serum-free medium was significantly higher than that in control group. Ang-1 inhibited early-stage apoptosis more than late-stage apoptosis provided by propidium iodide (PI) and AnnexinV double staining. The inhibition of Ang-1 on bEnd.3 cell apoptosis was strengthened with the increase in concentration (0 - 400 ng/ml). Ang-1 could decrease the expression of Bax, caspase3 and 8, and increase that of Bcl-2. The results of ELISA indicated that Ang-1 significantly decreased CytC content in cytoplasm and increase that in mitochondria.
<b>CONCLUSIONSb>Ang-1 could inhibit bEnd.3 apoptosis induced by serum-free medium culture. The apoptosis was associated with decreased Bax expression, increased Bcl-2 expression, which result in Cyt C transferring from mitochondria to cytoplasm, and then caspases activation are reduced and cell apoptosis is suppressed.
Angiopoietin-1 ; pharmacology ; Animals ; Annexin A5 ; analysis ; Apoptosis ; drug effects ; Caspase 3 ; Caspase 8 ; Caspases ; analysis ; Cells, Cultured ; Cytochromes c ; physiology ; Endothelial Cells ; cytology ; drug effects ; Mice ; Microcirculation ; drug effects ; bcl-2-Associated X Protein ; analysis
4.Protective effect of breviscapine against brain injury induced by intrauterine inflammation in preterm rats and its mechanism.
Si-Si WANG ; Shuang-Shuang XIE ; Yue-Xiu MENG ; Xiang-Yun ZHANG ; Yun-Chun LIU ; Ling-Ling WANG ; Yan-Fei WANG
Chinese Journal of Contemporary Pediatrics 2023;25(2):193-201
OBJECTIVES:
To study the protective effect of breviscapine against brain injury induced by intrauterine inflammation in preterm rats and its mechanism.
METHODS:
A preterm rat model of brain injury caused by intrauterine inflammation was prepared by intraperitoneal injections of lipopolysaccharide in pregnant rats. The pregnant rats and preterm rats were respectively randomly divided into 5 groups: control, model, low-dose breviscapine (45 mg/kg), high-dose breviscapine (90 mg/kg), and high-dose breviscapine (90 mg/kg)+ML385 [a nuclear factor erythroid 2-related factor 2 (Nrf2) inhibitor, 30 mg/kg] (n=10 each). The number and body weight of the live offspring rats were measured for each group. Hematoxylin-eosin staining was used to observe the pathological morphology of the uterus and placenta of pregnant rats and the pathological morphology of the brain tissue of offspring rats. Immunofluorescent staining was used to measure the co-expression of ionized calcium binding adaptor molecule-1 (IBA-1) and nucleotide-binding oligomerization domain-like receptor protein 3 (NLRP3) in the cerebral cortex of offspring rats. ELISA was used to measure the levels of interleukin-6 (IL-6), interleukin-8 (IL-8), and interleukin-1β (IL-1β) in the brain tissue of offspring rats. Western blotting was used to measure the expression of Nrf2 pathway-related proteins in the brain tissue of offspring rats.
RESULTS:
Pathological injury was found in the uterus, and placenta tissue of the pregnant rats and the brain tissue of the offspring rats, and severe microglia pyroptosis occurred in the cerebral cortex of the offspring rats in the model group. Compared with the control group, the model group had significant reductions in the number and body weight of the live offspring rats and the protein expression levels of Nrf2 and heme oxygenase-1 (HO-1) in the brain tissue of the offspring rats (P<0.05), but significant increases in the relative fluorescence intensity of the co-expression of IBA-1 and NLRP3, the levels of the inflammatory factors IL-6, IL-8, and IL-1β, and the protein expression levels of NLRP3 and caspase-1 in the brain tissue of the offspring rats (P<0.05). Compared with the model group, the breviscapine administration groups showed alleviated pathological injury of the uterus and placenta tissue of the pregnant rats and the brain tissue of the offspring rats, significant increases in the number and body weight of the live offspring rats and the protein expression levels of Nrf2 and HO-1 in the brain tissue of the offspring rats (P<0.05), and significant reductions in the relative fluorescence intensity of the co-expression of IBA-1 and NLRP3, the levels of the inflammatory factors IL-6, IL-8, and IL-1β, and the protein expression levels of NLRP3 and caspase-1 in the brain tissue of the offspring rats (P<0.05). The high-dose breviscapine group had a significantly better effect than the low-dose breviscapine (P<0.05). ML385 significantly inhibited the intervention effect of high-dose breviscapine (P<0.05).
CONCLUSIONS
Breviscapine can inhibit inflammatory response in brain tissue of preterm rats caused by intrauterine inflammation by activating the Nrf2 pathway, and it can also inhibit microglial pyroptosis and alleviate brain injury.
Animals
;
Female
;
Pregnancy
;
Rats
;
Body Weight
;
Brain Injuries/prevention & control*
;
Caspase 1
;
Inflammation/drug therapy*
;
Interleukin-6
;
Interleukin-8
;
NF-E2-Related Factor 2
;
NLR Family, Pyrin Domain-Containing 3 Protein
;
Flavonoids/therapeutic use*
5.Induction of G2 /M phase arrest and apoptosis of MCF-7 cells by novel benzofuran lignan via suppressing cell cycle proteins.
Hua YANG ; Yu-Chen CAI ; Ji-Yan PANG ; Yong-Qiang LI ; Zhao-Lei ZENG ; Zun-Le XU ; Li-Jian XIAN
Acta Pharmaceutica Sinica 2008;43(2):138-144
In the present study, a newly synthesized benzofuran lignan 4-formyl-2-(4-hydroxy-3methoxyphenyl)-5-(2-methoxycarbonyethyl)-7-methoxy-benzo [b] furan (ERJT-12) was tested for its antiproliferative activity on human tumor cells. The related mechanisms were also investigated. In vitro growth inhibitory effects of ERJT-12 on various cancer cell lines were determined by MTT assay. Cell cycle distribution and apoptosis were detected by flow cytometry. The integrity of DNA was assessed by agarose gel electrophoresis. Activation of Caspase-3/7 and Caspase-6 was measured by colorimetric assay. The expressions of cell cycle proteins cell divide cycle 25c (Cdc25c), cyclin dependent kinase 1 (CDK1), CyclinB1 and apoptosis-related proteins Bax and Bcl-2 were detected by Western blotting. MTT assay showed that ERJT-12 inhibited the proliferation of several cancer cell lines including multidrug resistant cells. MCF-7 cells were markedly arrested at gap2/mitosis (G2/M) phase after treatment with ERJT-12 and progressed into apoptosis. The increased activities of Caspase-3/7 and Caspase-6 in MCF-7 cells were observed. The expression of CyclinB1 was down-regulated. The activities of Cdc25c and CDK1 protein were suppressed and Bcl-2 protein was phosphorylated. ERJT-12 displays potent antiproliferative activity towards cancer cells through suppressing cell cycle proteins, arresting cell cycle at G2/M phase and inducing apoptosis. It might be a novel candidate for cancer therapy.
Antineoplastic Agents
;
pharmacology
;
Apoptosis
;
drug effects
;
Benzofurans
;
pharmacology
;
CDC2 Protein Kinase
;
metabolism
;
Caspase 3
;
metabolism
;
Caspase 6
;
metabolism
;
Caspase 7
;
metabolism
;
Cell Cycle Proteins
;
metabolism
;
Cell Division
;
drug effects
;
Cell Line, Tumor
;
Cyclin B
;
metabolism
;
Cyclin B1
;
G2 Phase
;
drug effects
;
Humans
;
Proto-Oncogene Proteins c-bcl-2
;
metabolism
;
bcl-2-Associated X Protein
;
metabolism
;
cdc25 Phosphatases
;
metabolism
6.Mechanism Underlying Curcumin-induced Apoptosis and Cell Cycle Arrest on SCC25 Human Tongue Squamous Cell Carcinoma Cell Line.
Jung Bon MOON ; Kee Hyun LEE ; In Ryoung KIM ; Gyoo Cheon KIM ; Hyun Ho KWAK ; Bong Soo PARK
International Journal of Oral Biology 2014;39(1):23-33
Several studies have shown that curcumin, which is derived from the rhizomes of turmeric, possesses antimicrobial, antioxidant and anti-inflammatory properties. The antitumor properties of curcumin have also now been demonstrated more recently in different cancers. This study was undertaken to investigate the modulation of cell cycle-related proteins and the mechanisms underlying apoptosis induction by curcumin in the SCC25 human tongue squamous cell carcinoma cell line. Curcumin treatment of the SCC25 cells resulted in a time- and dose-dependent reduction in cell viability and cell growth, and onset of apoptotic cell death. The curcumin-treated SCC25 cells showed several types of apoptotic manifestations, such as nuclear condensation, DNA fragmentation, reduced MMP and proteasome activity, and a decreased DNA content. In addition, the treated SCC25 cells showed a release of cytochrome c into the cytosol, translocation of AIF and DFF40/CAD into the nuclei, a significant shift in the Bax/Bcl-2 ratio, and the activation of caspase-9, caspase-7, caspase-6, caspase-3, PARP, lamin A/C, and DFF45/ICAD. Furthermore, curcumin exposure resulted in a downregulation of G1 cell cycle-related proteins and upregulation of p27KIP1. Taken together, our findings demonstrate that curcumin strongly inhibits cell proliferation by modulating the expression of G1 cell cycle-related proteins and inducing apoptosis via proteasomal, mitochondrial, and caspase cascades in SCC25 cells.
Apoptosis*
;
Carcinoma, Squamous Cell*
;
Caspase 3
;
Caspase 6
;
Caspase 7
;
Caspase 9
;
Cell Cycle Checkpoints*
;
Cell Death
;
Cell Line*
;
Cell Proliferation
;
Cell Survival
;
Curcuma
;
Curcumin
;
Cytochromes c
;
Cytosol
;
DNA
;
DNA Fragmentation
;
Down-Regulation
;
Humans
;
Proteasome Endopeptidase Complex
;
Rhizome
;
Tongue*
;
Up-Regulation
7.Mechanism Underlying NaF-induced Apoptosis and Cell Cycle Arrest on G361 Human Melanoma Cell Line.
Do Kyun KIM ; Hyeon Jin SOHN ; In Ryoung KIM ; Gyoo Cheon KIM ; Bong Soo PARK ; Hyun Ho KWAK
Korean Journal of Physical Anthropology 2011;24(4):203-216
Fluoride is widely used in dentistry to prevent dental caries, even though the safety of fluoride is a controversial issue. There are no known adverse effects of long-term fluoride ingestion for caries prevention, but an overdose can cause serious acute toxicity. Nevertheless it is accepted that fluoride is an important material for oral health. This study was undertaken to investigate the modulation of cell cycle-related proteins and apoptosis induction underlying mechanism by NaF treatment on G361 human melanoma cell line. The viability of G361 cells and the growth inhibition of G361 cells were assessed by MTT assay and clonogenic assay respectively. Hoechst staining, DNA electrophoresis and TUNEL staining were conducted to observe G361 cells undergoing apoptosis. G361 cells were treated with NaF, and Western blotting, immunocytochemistry, confocal microscopy, FACScan flow cytometry, MMP activity and proteasome activity were performed. NaF treatment in G361 cells resulted in a time- and does-dependent decrease of cell viability and a does-dependent inhibition of cell growth, and induced apoptotic cell death. And tested G361 cells showed several lines of apoptotic manifestation such as nuclear condensation, DNA fragmentation, the reduction of MMP and proteasome activity, the decrease of DNA contents, the release of cytochrome c into cytosol, the translocation of AIF and DFF40 (CAD) onto nuclei, a significant shift of Bax/Bcl-2 ratio, and the activation of caspase-9, caspase-7, caspase-6, caspase-3, PARP, Lamin A/C and DFF45 (ICAD). Furthermore, NaF resulted in down-regulation of the G1 cell cycle-related proteins, and up-regulation of p53. Taken collectively, our present findings demonstrate that NaF strongly inhibits cell proliferation by modulating the expression of the G1 cell cycle-related proteins and induces apoptosis via proteasome, mitochondria and caspase cascades in G361 cells.
Apoptosis
;
Blotting, Western
;
Caspase 3
;
Caspase 6
;
Caspase 7
;
Caspase 9
;
Cell Cycle
;
Cell Cycle Checkpoints
;
Cell Death
;
Cell Line
;
Cell Proliferation
;
Cell Survival
;
Cytochromes c
;
Cytosol
;
Dental Caries
;
Dentistry
;
DNA
;
DNA Fragmentation
;
Down-Regulation
;
Eating
;
Electrophoresis
;
Flow Cytometry
;
Fluorides
;
Humans
;
Immunohistochemistry
;
In Situ Nick-End Labeling
;
Melanoma
;
Microscopy, Confocal
;
Mitochondria
;
Oral Health
;
Proteasome Endopeptidase Complex
;
Proteins
;
Up-Regulation
8.Influence of recombinant lentiviral vector encoding miR-15a/16-1 in biological features of human nasopharyngeal carcinoma CNE-2Z cells.
Chun-hong ZHANG ; Xiao-bi FANG ; Wen-feng LI ; Qing-yuan SHI ; Li-ping WU ; Xiao-yun CHEN ; Zhen-xiao HUANG ; Peng WU ; Zhen-zhen WANG ; Zhi-su LIAO
Chinese Journal of Otorhinolaryngology Head and Neck Surgery 2013;48(5):405-411
<b>OBJECTIVEb>To study the influence of recombinant lentiviral vector encoding miR-15a/16-1 on biological features of human nasopharyngeal carcinoma CNE-2Z cells and underlying mechanisms.
<b>METHODSb>GFP-positive CNE-2Z cells transfected with recombinant lentiviral vector were selected. The experiment was divided into control group, transfected group, radiotherapy group, transfected-radiotherapy group. Cell proliferation was analyzed by MTT. Apoptosis was detected by flow cytometry. Radiotherapy sensitivity of the cells in control group and transfected group was evaluated by colony forming experiment. The expressions of miR-15a, miR-16-1 and bcl-2 mRNA were detected by real-time quantitative polymerase chain reaction (RT-qPCR). The expression of bcl-2 protein was detected by Western blot. The activation of Caspase-2 and Caspase-3 was evaluated by spectrophotometry.
<b>RESULTSb>Relative expression quantities of miR-15a and miR-16-1 in infected group were 524.80 ± 40.79 (t = 494.611, P = 0.000) and 466.11 ± 40.96 (t = 386.8, P = 0.000), respectively. The proliferation of the cells in transfected-radiotherapy group was the most obvious, followed by the cells in radiotherapy group and transfected group (F = 424.3, P = 0.000). The apoptosis rates of control group, transfected group, radiotherapy group and transfected-radiotherapy group were (2.2 ± 1.4)%, (9.6 ± 0.8)%, (2.9 ± 1.1)%, and (18.6 ± 0.7)% respectively(F = 158.5, P = 0.000). Clonogenic assay showed that the values of SF2, Do (1.473) and Dq (1.581) in transfected group were lower than those in control group. The relative expression levels of bcl-2 mRNA in transfected group, radiotherapy group, and transfected-radiotherapy group had no significant difference (P > 0.05). Decrease in the expression of bcl-2 protein in transfected-radiotherapy group was most significantly, followed by that in transfected group. The percentages of activated Caspase-2 in control group, radiotherapy group, transfected group and transfected -radiotherapy group were 0.12 ± 0.01, 0.24 ± 0.04, 0.35 ± 0.02, and 0.44 ± 0.04, respectively (F = 115.500, P = 0.000). The percentages of activated Caspase-3 in the groups were 0.13 ± 0.01, 0.27 ± 0.01, 0.43 ± 0.02, and 0.83 ± 0.06, respectively (F = 439.921, P = 0.000).
<b>CONCLUSIONSb>Recombinant lentiviral vector LV-miR15a/16-1 could improve the expression of miR-15a and miR-16-1 in CNE-2Z cells, inhibit the proliferation of CNE-2Z cells, promote apoptosis and enhance the sensitivity of the cells to radiotherapy probably by inhibiting bcl-2 expression, activating Caspase-2 and Caspase-3.
Apoptosis ; Apoptosis Regulatory Proteins ; metabolism ; Carbamates ; Carcinoma ; Caspase 2 ; metabolism ; Caspase 3 ; metabolism ; Cell Line, Tumor ; Cell Proliferation ; Cysteine Endopeptidases ; metabolism ; Genetic Vectors ; Humans ; MicroRNAs ; metabolism ; Nasopharyngeal Neoplasms ; metabolism ; Pyrazoles ; RNA, Messenger ; Strobilurins ; Transfection
9.Mechanism of SPARC-enhanced chemosensitivity of pancreatic cancer cells to gemcitabine.
Jianxin ZHANG ; Haihua JIANG ; Zhengfa MAO ; Xuqing WANG ; Xin FAN ; Yu LIU ; Ying WANG
Chinese Journal of Oncology 2014;36(5):335-340
<b>OBJECTIVEb>The aim of this study was to explore the effect of SPARC on the anti-cancer effect of gemcitabine and underlying mechanism in pancreatic cancer.
<b>METHODSb>After treating with gemcitabine, the proliferation rate of MIA PaCa2, MIA PaCa2/V and MIA PaCa2/SPARC69 cells was detected by MTT assay. The cell cycle distribution and cell apoptosis in each group were examined by flow cytometry, and the capability of clone formation was tested by adhesion-dependent clone formation assay. The apoptosis-related proteins were analyzed by Western blot.
<b>RESULTSb>The growth of pancreatic cancer cells was inhibited by gemcitabine in a time-dependent and dose-dependent manner. Its IC50 at 24, 48, and 72-h was (40.1 ± 2.5) µmol/L, (15.0 ± 0.5) µmol/L and (6.6 ± 0.1) µmol/L, respectively. The overexpression of SPARC increased the inhibitory effect of gemcitabine on growth of pancreatic cancer MIA PaCa2/SPARC69 cells, presenting a dose- and time- dependent manner. Its IC50 at 24, 48, 72 h was (24.3 ± 1.5) µmol/L, (7.7 ± 0.3) µmol/L and (4.8 ± 0.2) µmol/L, respectively. The clone formation assay showed that before gemcitabine treatment, the clone numbers of MIA PaCa2, MIA PaCa2/V and MIA PaCa2/SPARC69 cells were (2350 ± 125), (2130 ± 120) and (1567 ± 11), respectively. After gemcitabine treatment, the clone numbers of MIA PaCa2, MIA PaCa2/V and MIA PaCa2/SPARC69 cells were ( 1674 ± 79) , (1587 ± 94) and (557 ± 61), respectively. The overexpression of SPARC enhanced the chemosensitivity of MIA PaCa2 cells to gemcitabine chemotherapy. After treating with 10 µmol/L gemcitabine for 48 h, the ratio of G0/G1 cells in MIA PaCa2, MIA PaCa2/V and MIA PaCa2/SPARC69 cells were (56.0 ± 5.5)%, (55.0 ± 4.5)% and (68.0 ± 7.0)%, respectively. The cells arrested at G0/G1 phase were significantly increased in the MIA PaCa2/SPARC69 cells. The apoptosis rates of MIA PaCa2, MIA PaCa2/V and MIA PaCa2/SPARC69 cells were (22.4 ± 2.5)%, (19.9 ± 2.0)% and (37.7 ± 3.9)%, respectively, indicating that overexpression of SPARC enhanced the gemcitabine-induced apoptosis in MIA PaCa2 cells. The Western blot analysis showed that, compared with MIA PaCa2 and MIA PaCa2/V cells, the expression of caspase-2, -8, -9 and cleaved PARP protein was significantly increased, while the expression of Bcl-2 was not changed significantly in the MIA PaCa2/SPARC69 cells.
<b>CONCLUSIONb>SPARC can enhance the chemosensitivity of pancreatic cancer cells to gemcitabine via regulating the expression of apoptosis-related proteins.
Antimetabolites, Antineoplastic ; administration & dosage ; pharmacology ; Apoptosis ; drug effects ; Caspase 2 ; metabolism ; Caspase 8 ; metabolism ; Caspase 9 ; metabolism ; Cell Cycle ; drug effects ; Cell Cycle Checkpoints ; drug effects ; Cell Line, Tumor ; Cell Proliferation ; drug effects ; Cysteine Endopeptidases ; metabolism ; Deoxycytidine ; administration & dosage ; analogs & derivatives ; pharmacology ; Dose-Response Relationship, Drug ; Drug Resistance, Neoplasm ; Humans ; Osteonectin ; metabolism ; Pancreatic Neoplasms ; metabolism ; pathology ; Poly(ADP-ribose) Polymerases ; metabolism ; Time Factors
10.Resveratrol raises in vitro anticancer effects of paclitaxel in NSCLC cell line A549 through COX-2 expression.
Fanhua KONG ; Runqi ZHANG ; Xudong ZHAO ; Guanlin ZHENG ; Zhou WANG ; Peng WANG
The Korean Journal of Physiology and Pharmacology 2017;21(5):465-474
The aim of this study was to determine the raising anticancer effects of resveratrol (Res) on paclitaxel (PA) in non-small cell lung cancer (NSCLC) cell line A549. The 10 µg/ml of Res had no effect on human fetal lung fibroblast MRC-5 cells or on A549 cancer cells and the 5 or 10 µg/ml of PA also had no effect on MRC-5 normal cells. PA-L (5 µg/ml) and PA-H (10 µg/ml) had the growth inhibitory effects in NSCLC cell line A549, and Res increased these growth inhibitory effects. By flow cytometry experiment, after Res (5 µg/ml)+PA-H (10 µg/ml) treatment, the A549 cells showed the most apoptosic cells compared to other group treatments, and after additional treatment with Res, the apoptosic cells of both two PA concentrations were raised. Res+PA could reduce the mRNA and protein expressions of COX-2, and Res+PA could reduce the COX-2 related genes of VEGF, MMP-1, MMP-2, MMP-9, NF-κB, Bcl-2, Bcl-xL, procollagen I, collagen I, collagen III and CTGF, TNF-α, IL-1β, iNOS and raise the TIMP-1, TIMP-2, TIMP-3, IκB-α, p53, p21, caspase-3, caspase-8, caspase-9, Bax genes compared to the control cells and the PA treated cells. From these results, it can be suggested that Res could raise the anticancer effects of PA in A549 cells, thus Res might be used as a good sensitizing agent for PA.
Carcinoma, Non-Small-Cell Lung
;
Caspase 3
;
Caspase 8
;
Caspase 9
;
Cell Line*
;
Collagen
;
Fibroblasts
;
Flow Cytometry
;
Humans
;
In Vitro Techniques*
;
Lung
;
Paclitaxel*
;
Procollagen
;
RNA, Messenger
;
Tissue Inhibitor of Metalloproteinase-1
;
Tissue Inhibitor of Metalloproteinase-2
;
Tissue Inhibitor of Metalloproteinase-3
;
Vascular Endothelial Growth Factor A