• Title/Summary/Keyword: A-549 (small cell lung cancer)

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Curcumin-induced Cell Death of Human Lung Cancer Cells (Curcumin에 의해 유도되는 인간 폐암 세포주의 세포사멸)

  • Hwasin Lee;Bobae Park;Sun-Nyoung Yu;Ho-Yeon Jeon;Bu Kyung Kim;Ae-Li Kim;Dong Hyun Sohn;Ye-Rin Kim;Sang-Yull Lee;Dong-Seob Kim;Soon-Cheol Ahn
    • Journal of Life Science
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    • v.33 no.9
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    • pp.713-723
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    • 2023
  • Lung cancer is a type of cancer that has the highest mortality rate. It is mainly classified into small-cell lung cancer (SCLC) and non-small-cell lung cancer (NSCLC). Chemotherapy is used to treat lung cancer, but long-term treatment causes side effects and drug resistances. Curcumin is a bright yellow polyphenol extracted from the root of turmeric. It has biological activities, such as anti-oxidant, anti-cancer, and anti-inflammatory effects. In this study, we observed differential cell death in human lung cancer cells. Based on the results, curcumin at 10, 30, and 50 μM exhibited a dose-dependent inhibition on the cell survival of several lung cancer cells, with minor differential phenotypes. In addition, apoptosis, autophagy, and reactive oxygen species (ROS) regeneration were observed through flow cytometry. Curcumin dose-dependently increased these phenotypes in A549 (NSCLC) and DMS53 (SCLC), which were restored by corresponding inhibitors. Western blotting was performed to measure the level of expression of apoptosis- and autophagy-related proteins. The results indicate that Bax, PARP, pro-caspase-3, and Bcl-2 were dose-dependently regulated by curcumin, with seemingly higher Bax/Bcl-2 ratios in DMS53. In addition, autophagic proteins, p-AKT, p62, and LC3B, were dose-dependently regulated by curcumin. ROS inhibition by diphenyleneiodonium reduced the induction of apoptosis and autophagy generated by curcumin. Taken together, it is suggested that curcumin induces apoptosis and autophagy via ROS generation, leading to cell death, with minor differences between human lung cancer cells.

The Effect of Uteroglobin on cPLA2, COX-2 Expression and ERK Activation in NSCLC Cells (비소세포 폐암세포에서 Uteroglobin의 이입에 의한 cPLA2와 COX-2 발현 및 ERK 활성의 변화)

  • Kim, Woo Jin;Yoon, Jung Min;Lee, Kyoung Hee;Han, Seon Jin;Shin, Won Hyuk;Yim, Jae-Joon;Yoo, Chul-Gyu;Lee, Choon Taek;Han, Sung Koo;Shim, Young-Soo;Kim, Young Whan
    • Tuberculosis and Respiratory Diseases
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    • v.56 no.6
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    • pp.638-645
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    • 2004
  • Background : Uteroglobin is a protein produced by the normal bronchial epithelium and its expression level is lower in non-small cell lung cancer tissues and cell lines. It mainly functions as an anti-inflammatory, and when it is overexpressed in cancer cells, the neoplastic phenotype is antagonized. cPLA2 and COX-2, which are also associated with inflammation, were reported to be related to cancer. The relationship between cPLA2, COX-2 and uteroglobin is unclear. The relationship between uteroglobin and ERK, which is related to cell growth, is also not unclear. This study investigated the changes in the cPLA2 and COX-2 expression levels and the ERK activities after the overexpression of uteroglobin in non-small cell lung cancer cell lines. Methods : The A549 and NCI-H460 cell lines were infected by adenovirus-null and adenovirusuteroglobin. The cChange in the cPLA2, COX-2 expression level and ERK activity after uteroglobin overexpression was measured by Western blot. The change in MMP activity was measured by zymography. Results : Western blot revealed decreased expression levels of cPLA2, and COX-2, and increased pERK levels in nonsmall cell lung cancer cells after uteroglobin overexpression. Zymography revealed no changes in the MMP-2 activity and lower MMP-9 activity. U0126, which is a specific inhibitor of ERK-activating kinase MEK-1/-2, prevented the decrease in the MMP-9 activity Conclusions : A decrease in cPLA2 expression, COX-2 expression, MMP-9 activity and a increase in ERK activity may be related to the anticancer effects of uteroglobin in nonsmall cell lung cancer cells.

The Role of Uteroglobin in the Immunomodulation of Nonsmall Cell Lung Cancer Cells (비소세포 폐암세포에서 Uteroglobin의 면역 조절 기능에 대한 연구)

  • Yoon, Jung Min;Lim, Jae-Jun;Yoo, Chul-Gyu;Lee, Choon-Taek;Han, Sung Koo;Shim, Young-Soo;Kim, Young Whan
    • Tuberculosis and Respiratory Diseases
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    • v.57 no.4
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    • pp.336-344
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    • 2004
  • Background : Immunotherapy for cancer has not been successful because of several obstacles in tumor and its environment. Inappropriate secretions of cytokines and growth factors by tumors cause substantial changes in the immune responses against tumors, affording the tumors some degree of protection from immune attack. Uteroglobin (UG, Clara cell secretory protein) has been known to have anti-inflammatory, immunomodulatory and anti-cancer activities. However, in lung cancer cells, UG expression is decreased. This study investigated the role of UG in the immunomodulation of lung cancer. Methods : The UG protein was overexpressed by Adenovirus(Ad)-UG transduction in non-small cell lung cancer cell lines. The concentration of Prostaglandin $E_2$ ($PGE_2$) was measured by Enzyme Immunoassay (EIA). Peripheral blood mononuclear cells (PBMC) from whole blood were prepared with Ficoll. PBMC were cultured in RPMI 1640, supernatant of A549, or A549 with UG or NS-398. Concentration of Th 1 type and Th 2 type cytokines from PBMC were measured by ELISA. Results : UG suppressed $PGE_2$, Cyclooxygenase-2 (COX-2) product. Both Th1 type such as Interleukin-2 (IL-2), Interferon-${\gamma}$ (IFN-${\gamma}$) and Tumor necrosis factor-${\alpha}$ (TNF-${\alpha}$) and Th2 type cytokines such as IL-10 and Tumor growth factor-${\beta}$ (TGF-${\beta}$) were increased when PBMC were cultured with supernatant of non small lung cancer cells. UG and COX-2 inhibitor, NS-398 induced normal immune response of PBMC. Although Th 1 type cytokines were increased, Th 2 type cytokines were reduced by UG. Conclusion : UG suppressed PGE2, COX-2 product. Supernatant of NSCLC induced imbalance of immune response of PBMC. However, UG reversed this imbalance. These results suggest that UG may be used in the development of immunotherapy for lung cancer.

The proteasome inhibition enhances apoptosis by P53 expression and the dissipation of mitochondrial transmembrane potential in TRAIL-resistant lung cancer cells (Proteasome 억제에 의한 P53의 발현과 미토콘드리아 막 전압의 소실로 TRAIL에 저항하는 폐암세포의 사멸 강화)

  • Seol, Jae-Won;Park, Sang-Youel
    • Korean Journal of Veterinary Research
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    • v.49 no.1
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    • pp.1-8
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    • 2009
  • The ubiquitin-proteasome mediated protein degradation pathway plays an important role in regulating both cell proliferation and cell death. Proteasome inhibitors are well known to induce apoptosis in various human cancer cell lines. We investigated the effect of combined treatment with proteasome inhibitor and TRAIL, and a possible mechanism of the enhancing apoptosis by the both treatment, on TRAIL-resistant non-small cell lung cancer. A549 cells were exposed to the N-Acetyl-Leu-Leu-Norleu-al (ALLN) as a proteasome inhibitor and then treated with recombinant TRAIL protein. In A549 cells under proteasome inhibition conditions by pretreatment with ALLN, TRAIL treatment significantly decreased cell viability compared to that ALLN and TRAIL alone treatment. Also, the both treatment induced cell damage through DNA fragmentation and p53 expression. In addition, the combined treatment of both markedly increased caspase-8 activation, especially the exposure for 2 h, and Bax expression and induced the dissipation of mitochondrial transmembrane potential in A549 cells. Taken together, these findings showed that proteasome inhibition by ALLN enhanced TRAIL-induced apoptosis via DNA degradation by activated P53 and mitochondrial transmembrane potential loss by caspase-8 activation and bax expression. Therefore, our results suggest that proteasome inhibitor may be used a very effectively chemotherapeutic agent for the tumor treatment, especially TRAIL-resistant tumor cell.

Gemcitabine-induced Cell Death in Lung Cancer Cells : the Role of p53 (폐암 세포에서 Gemcitabine에 의한 세포 사멸과 p53의 역할)

  • Kim, Doh-Hyung;Bae, Gang-U;Yong, Wha-Shim;Choi, Eun-Kyung;Kim, Youn-Seup;Park, Jae-Seuk;Jee, Young-Koo;Lee, Kye-Young
    • Tuberculosis and Respiratory Diseases
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    • v.53 no.3
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    • pp.275-284
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    • 2002
  • Background : Gemcitabine is a new anti-cancer agent for treating non-small cell lung cancer. Functioning as an antimetabolite, it induces anti-cancer effects by suppressing DNA synthesis after being incorporated into the DNA as a cytosine arabinoside analogue. When Gemcitabine is incorporated into the DNA, the p53 gene may be activated by induction of the DNA defect. However, there are a few studies on the molecular mechanisms of Gemcitabine-induced cell death. This study examined the role of p53 in Gemcitabine-induced cell death. Methods : A549 and NCl-H358 lung cancer cells were used in this study. The cell viability test was done using a MTT assay at Gemcitabine concentrations of 10nM, 100nM, 1uM, 10uM and 100uM. A FACScan analysis with propium iodide staining was used for the cell cycle analysis. Western blot analysis was done to investigate the extent of p53 activation. For the functional knock-out of p53, stable A549-E6 cells and H358-E6 cells were transfected pLXSN-16E6SD which is over expresses the human papilloma virus E6 protein that constantly degrades p53 protein. The functional knock out of p53 was confirmed by Western blot analysis after treatment with a DNA damaging agent, doxorubicine. Results : Gemcitabine exhibited cell toxicity in dose-dependent fashion. The cell cycle analysis resulted in an S phase arrest. Western blot analysis significant p53 activation in time-dependent manner. Gemcitabine-induced cytotoxicity was reduced by 20-30% in the A549-E6 cells and the 30-40% in H358-E6 cells when compared with the A549-neo and H358-neo control cells. Conclusion : Gemcitabine induces an S phase arrest, as expected for the anti-metabolite, and activates the p53 gene, Furthermore, p53 might play an important role in Gemcitabine-induced cell death. Further investigation into the molecular mechanisms on how Gemcitabine activates the p53 gene and its signaling pathway are recommended.

Anti Tumoral Properties of Punica granatum (Pomegranate) Seed Extract in Different Human Cancer Cells

  • Seidi, Khaled;Jahanban-Esfahlan, Rana;Abasi, Mozhgan;Abbasi, Mehran Mesgari
    • Asian Pacific Journal of Cancer Prevention
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    • v.17 no.3
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    • pp.1119-1122
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    • 2016
  • Background: Punica granatum (PG) has been demonstrated to possess antitumor effects on various types of cancer cells. In this study, we determined antiproliferative properties of a seed extract of PG (PSE) from Iran in different human cancer cells. Materials and Methods: A methanolic extract of pomegranate seeds was prepared. Total phenolic content (TPC) and total flavonoid content (TFC) were assessed by colorimetric assays. Antioxidant activity was determined with reference to DPPH radical scavenging activity. The cytotoxicity of different doses of PSE (0, 5, 20, 100, 250, 500, $1000{\mu}g/ml$) was evaluated by MTT assays with A549 (lung non small cell carcinoma), MCF-7 (breast adenocarcinoma), SKOV3 (ovarian cancer cells), and PC-3 (prostate adenocarcinoma) cells. Results: Significant (P<0.01) or very significant (P<0.0001) differences were observed in comparison to negative controls at all tested doses ($5-1000{\mu}g/ml$). In all studied cancer cells, PSE reduced the cell viability to values below 23%, even at the lowest doses. In all cases, IC50 was determined at doses below $5{\mu}g/ml$. In this regard, SKOV3 ovarian cancer cells were the most responsive to antiproliferative effects of PSE with a maximum mean growth inhibition of 86.8% vs. 82.8%, 81.4% and 80.0% in MCF-7, PC-3 and A549 cells, respectively. Conclusions: Low doses of PSE exert potent antiproliferative effects on different human cancer cells SKOV3 ovarian cancer cells as most and A549 cells ar least responsive regarding cytotoxic effects. However, the mechanisms of action need to be addressed.

Expression of COX-2 and IDO by Uteroglobin Transduction in NSCLC Cell Lines (비소세포폐암 세포주에서 Uteroglobin Transduction이 COX-2 및 IDO의 발현에 미치는 영향)

  • Park, Gun Min;Lee, Sang-Min;Yim, Jae-Joon;Yang, Seok-Chul;Yoo, Chul Gyu;Lee, Choon-Taek;Han, Sung Koo;Sim, Young-Soo;Kim, Young Whan
    • Tuberculosis and Respiratory Diseases
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    • v.66 no.4
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    • pp.274-279
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    • 2009
  • Background: Uteroglobin (UG) is a secretary protein that has strong immunomodulatory properties, and which is synthesized in most epithelia including lung tissue. Overexpression of UG is associated with decreased expression of cyclooxygenase (COX)-2 and suppression of cancer cell growth. Indoleamine 2,3-dioxygenase (IDO) catalyzes tryptophan along the kynurenine pathway, and both the reduction in local tryptophan and the production of tryptophan metabolites contribute to the immunosuppressive effects of IDO. Methods: In this study, we investigated the pattern of expression of COX-2 and IDO, and the effect of UG transduction in the expression of COX-2 and IDO in several non-small cell lung cancer cell lines, especially A549. Results: Both COX-2 and IDO were constitutionally expressed in A549 and H460 cells, and was reduced by UG transduction. In A549 cells, the slightly increased expression of COX-2 and IDO with the instillation of interferon-gamma (IFN-$\gamma$) was reduced by UG transduction. However, the reduced expression of COX-2 and IDO by UG transduction was not increased with IFN-$\gamma$ instillation in A549 cells. In both the A549 COX-2 sense and the A549 COX-2 anti-sense small interfering RNA (siRNA)-transfected cells, IDO was expressed; expression was reduced by UG transduction, irrespective of the expression of COX-2. Conclusion: The results suggest that the anti-proliferative function of UG may be associated with the immune tolerance pathway of IDO, which is independent of the COX-2 pathway.

In vitro anticancer and antioxidant effects of acetone extract of Eucommia ulmoides oliver leaves (두충잎 아세톤 추출물의 in vitro 항암 및 항산화 효과)

  • In, Man-Jin;Kim, Eun Jeong;Kim, Dong Chung
    • Journal of Applied Biological Chemistry
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    • v.61 no.2
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    • pp.119-124
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    • 2018
  • In vitro anticancer and antioxidant effects of acetone extract from leaves of Eucommia ulmoides Oliver were investigated. The extraction yield and total phenolic content of the acetone extract were $1.13{\pm}0.033%$ (w/w) and $36.7{\pm}1.96mg$ gallic acid equivalents/g-extract, respectively. $GI_{50}$ values of the acetone extract for human non-small cell lung cancer cells (A549), human colon cancer cells (SNU-C4), human cervical cancer cells (HeLa), and human embryonic lung epithelial cell (L132) were 53.4, 53.8, 88.3, and $153.9{\mu}g/mL$, respectively. The acetone extract effectively inhibited the proliferation of human non-small cell lung cancer (A549) and colon cancer (SNU-C4) cells in a concentration-dependent manner, but was less cytotoxic with human normal cells (L132). $EC_{50}$ values of the acetone extract for free radical scavenging, reducing power, and lipid peroxidation inhibition were about 2,000, 275.8, and $257.9{\mu}g/mL$, respectively. The acetone extract showed a potent reducing power and lipid peroxidation inhibitory activity in a concentration-dependent manner.

Growth inhibition and cell cycle phase-specific apoptosis induced by celecoxib in human NSCLC cells in vitro.

  • Choi, Kang-Eun;Kang, Jin-Hyoung;Kuh, Hyo-Jeong
    • Proceedings of the PSK Conference
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    • 2002.10a
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    • pp.244.1-244.1
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    • 2002
  • Cyclooxygenase-2 ( COX-2 ) is an inducible enzyme which produces prostanoids by various stimuli. Overexpression of COX-2 in many tumor types indicates its association with tumor progression, which has been a promising target for chemoprevention and chemomodulation. We studied conc- and time-dependency of COX-2 inhibition, growth inhibition, and cell cycle arrest induced by celecoxib, a selective COX-2 inhibitor, in human non-small cell lung cancer (NSCLC) A549 cells. (omitted)

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Silencing of Rac3 Inhibits Proliferation and Induces Apoptosis of Human Lung Cancer Cells

  • Liu, Tie-Qin;Wang, Ge-Bang;Li, Zheng-Jun;Tong, Xiang-Dong;Liu, Hong-Xu
    • Asian Pacific Journal of Cancer Prevention
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    • v.16 no.7
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    • pp.3061-3065
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    • 2015
  • Background: Rac3, a member of the Rac family of small guanosine triphosphatases (GTPases), regulates a variety of cell functions, including the organization of the cytoskeleton, cell migration, and invasion. Overexpression of Rac3 has been reported in several human cancers. However, the role of Rac3 in lung cancer (LC) has not been determined in detail. The purpose of this study was to investigate the effect of silencing of Rac3 expression in human LC cells and the consequences for cell survival. Materials and Methods: Lentivirus small hairpin RNA (shRNA) interference techniques were utilized to knock down the Rac3 gene. Gene and protein expression was quantified by quantitative real-time polymerase chain reaction (qRT-PCR) and Western blotting. LC cell apoptosis was examined by annexin V-APC /propidium iodide staining. Results: Efficient silencing of Rac3 strongly inhibited A549 cell proliferation and colony formation ability, and significantly decreased tumor growth. Moreover, flow cytometry analysis showed that knockdown of Rac3 led to G2/M phase cell cycle arrest as well as an excess accumulation of cells in the G1 and S phase. Conclusions: Thus, functional analysis using shRNAs revealed a critical role for Rac3 in the tumor growth of LC cells. shRNA silencing of Rac3 could provide an effective strategy to treat LC.