• 제목/요약/키워드: human lung epithelial cell

검색결과 72건 처리시간 0.027초

Anti-tumor Activity and Apoptosis-regulation Mechanisms of Bufalin in Various Cancers: New Hope for Cancer Patients

  • Yin, Pei-Hao;Liu, Xuan;Qiu, Yan-Yan;Cai, Jian-Feng;Qin, Jian-Min;Zhu, Hui-Rong;Li, Qi
    • Asian Pacific Journal of Cancer Prevention
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    • 제13권11호
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    • pp.5339-5343
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    • 2012
  • The induction of apoptosis in target cells is a key mechanism for most anti-tumor therapies. Bufalin is a cardiotonic steroid that has the potential to induce differentiation and apoptosis of tumor cells. Research on bufalin has so far mainly involved leukemia, prostate cancer, gastric cancer and liver cancer, and has been confined to in vitro studies. The bufadienolides bufalin and cinobufagin have been shown to induce apoptosis in a wide spectrum of cancer cell. The present article reviews the anticancer effects of bufalin. It induces apoptosis of lung cancer cells via the PI3K/Akt pathway and also suppressed the proliferation of human non-small cell lung cancer A549 cell line in a time and dose dependent manner. Bufalin, bufotalin and gamabufotalin, key bufadienolides, significantly sensitize human breast cancer cells with differing ER-alpha status to apoptosis induction by the TNF-related apoptosis-inducing ligand (TRAIL). In addition, bufadienolides induce prostate cancer cell apoptosis more significantly than that in breast epithelial cell lines. Similar effects have been observed with hepatocellular carcinoma (HCC) but the detailed molecular mechanisms of inducing apoptosis in this case are still unclear. Bufalin exerts profound effects on leukemia therapy in vitro. Results of multiple studies indicate that bufalin has marked anti-tumor activities through its ability to induce apoptosis. Large-scale randomized, double-blind, placebo or positive drug parallel controlled studies are now required to confirm the efficacy and apoptosis-inducing potential of bufalin in various cancers in the cliniucal setting.

사상성 곰팡이 (Monascus sp.) 유래 항암 물질의 탐색 (Screening of Anti-cancer Compounds Originated from Filamentous Fungi (Monascus sp.))

  • 신영민;박혜련;안원근
    • 동의생리병리학회지
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    • 제19권3호
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    • pp.671-676
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    • 2005
  • In this study, we investigated the antioxidant effect of extract from Monascus pillosus, on the human wild-type p53 and p21 expressing A549 lung epithelial cell line and MCF-7 mammary adenocarcinoma cell line stimulated by NO. $P21^{waf/cip1}$ was identified as a gene induced in senescent cells. It is a cyclin-dependent kinase inhibitor and has been shown to cause cell cycle arrest and apoptosis. While p53-regulated stimulation of p21 appears to be central for the permanent growth-arrest, the role of p21 in p53-triggered cell death is unclear. Low dose of sodium nitroprusside (SNP) induced the development of senescence associated with increased expression of p53 and p21 in A549 cells. Inhibition of p21 transactivating activity requires high level correlates with the amount of p53 necessary to cause cell death. Association of p21 and p53 results in inhibition of p21-stimulated transcription. This requires a higher p53 level than is necessary for transcriptional activation of endogenous p53-responsive gene but correlates well with the level of p53 necessary to cause cell death. Exposure to W-1 inhibited oxidative stresses-induced senescence-like arrest, resulting in a significant reduction in p53 and p21 steady state levels. These results suggest that p53 and p21 play a central role in the onset of senescence. Thus, it is important to emphasize control of oxidative balance in tumor prevention and aging.

사람 폐포대식세포에서 내독소의 Priming 효과 (Priming Effect of Endotoxin in Human Alveolar Macrophage)

  • 정만표;유철규;김영환;한성구;심영수;한용철
    • Tuberculosis and Respiratory Diseases
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    • 제43권1호
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    • pp.46-53
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    • 1996
  • 연구배경: 폐포대식세포가 내독소에 노출되면 이 후 자극에 의해 종양괴사인자, 활성산소 등 독성이 강한 분비물 방출이 더욱 촉진되어 성인성호흡곤란증후군과 같은 각종 폐질환이 초래되는 중요한 기전으로 이해되고 있다. 그러나 문헌에 보고된 내독소에 의한 이런 priming효과는 다형핵백혈구, 단핵세포나 동물의 폐포대식세포를 대상으로 한 결과로서, 인체 폐포내에서의 폐포대식세포, 폐포상피세포 및 내독소의 상호작용을 밝히는 면에서는 한계가 있었다. 방법: 폐포상피세포에서 기원한 폐암세포주인 A549 24-well Linbro plate에 배양하여 세포단층을 형성한 후 기관지폐포세척술로 얻은 사람의 폐포대식세포($10^6/ml$)를 A549세포에 부착시켜 생체내와 유사한 환경을 만들어 실험을 시행하였다. 방법은 A549세포 부착 전후에 내독소(500 ng/ml)로 전처치한 다음 PMA, fMLP로 자극하여 방출된 과산화수소를 nM/well/2hrs 단위로 측정하여 대조군과 비교하였고 아울러 A549세포만종 없이 각 well에 직접 폐포대식세포단층을 형성한 후 동일하게 처치하였으며 결과는 다음과 같았다. 결과: 1) 24-well의 표면에 폐포대식세포단층을 형성한 후 내독소로 처치(n=7)한 경우, 대조군은 무자극군, PMA 자극군, fMLP자극군에서 각각 $9.48{\pm}2.44$, $10.38{\pm}2.34$, $10.28{\pm}2.33$ nM/well/2hrs의 과산화수소 분비능을 보였고 내독소 전처치군은 각각 $9.56{\pm}2.15$, $9.82{\pm}1.80$, $11.31{\pm}2.48$ nM/well/2hrs을 보여 내독소에 의한 priming효과는 없었다. 2) 폐포대식세포를 미리 내독소로 처치한 후 A549세포단층에 부착(n=7)시킨 경우에는 대조군의 과산화수소 분비능은 무자극군 $4.82{\pm}1.59$, PMA자극군 $8.31{\pm}1.67$, fMLP자극군 $7.06{\pm}1.82$ nM/well/2hrs이고 내독소 전처치군은 각각 $4.44{\pm}1.41$, $7.05{\pm}1.64$, $6.32{\pm}1.69$ nM/well/2hrs로서 내독소에 의한 priming 효과는 없었다. 3) 폐포대식세포를 A549세포단층에 부착시킨 후 내 독소로 처치(n=11)하면 대조군은 무자극군, PMA자극군, fMLP자극군에서 각각 $4.33{\pm}1.04$, $7.94{\pm}1.42$, $6.00{\pm}1.22$ nM/well/2hrs의 과산화수소를 분비하였고 내독소 전처치군은 각각 $5.43{\pm}1.19$, $7.56{\pm}1.31$, $6.38{\pm}1.19$ nM/well/2hrs를 보여 A549세포 부착후에도 내독소의 priming 효과는 관찰되지 않았으나 PMA나 fMLP로 자극하지 않은 무자극군에서 내독소 전처치군이 대조군에 비해 과산화수소 분비능의 유의한 증가를 보였다(p<0.05). 결론: 이상의 결과는 사람 폐포대식세포에서 내독소에 의한 priming효과는 없으나 폐포상피세포와의 상호작용에 의해 내독소가 폐포대식세포를 직접 자극함을 시사하는 소견이며 향후 추시가 필요할 것으로 사료된다.

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Inhibitory Effects of Allicin on TNF-${\alpha}$-induced ICAM-1 Expression is Associated with Catalase

  • Kang, Nam-Sung;Pyo, Suhk-Neung;Sohn, Eun-Hwa
    • 한국자원식물학회지
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    • 제22권6호
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    • pp.552-557
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    • 2009
  • Allicin, a garlic componente, is believed to provide protection against various diseases including inflammation. Since interactions of the cell adhesion molecules are known to play important roles in mediating inflammation, inhibiting adhesion protein upregulation is a possible therapeutic target. In this study, we demonstrate that TNF-${\alpha}$- and catalase-induced expression of ICAM-1 on human lung epithelial cells (A549) in a dose-dependent manner and catalase expression and activity were also increased in TNF-${\alpha}$-treated cells. Treatment of the TNF-${\alpha}$-treated cells with catalase inhibitor 3-amino-1,2,4-triazole resulted in a significant decreased the level of ICAM-1. These data suggest that induction of ICAM-1 expression by TNF-${\alpha}$ is associated with catalase. In addition, allicin was found to inhibit the TNF-${\alpha}$ induced expression of ICAM-1 on the A549 cells. This compound also inhibited the production of catalase induced by TNF-${\alpha}$, which suggests that the inhibition of ICAM-1 expression by allicin may be due to the modulated production of catalase.

Proteinase 3-processed form of the recombinant IL-32 separate domain

  • Kim, Sun-Jong;Lee, Si-Young;Her, Erk;Bae, Su-Young;Choi, Ji-Da;Hong, Jae-Woo;JaeKal, Jun;Yoon, Do-Young;Azam, Tania;Dinarello, Charles A.;Kim, Soo-Hyun
    • BMB Reports
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    • 제41권11호
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    • pp.814-819
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    • 2008
  • Interleukin-32 (IL-32) induces a variety of proinflammatory cytokines and chemokines. The IL-32 transcript was reported originally in activated T cells; subsequently, it was demonstrated to be abundantly expressed in epithelial and endothelial cells upon stimulation with inflammatory cytokines. IL-32 is regulated robustly by other major proinflammatory cytokines, thereby suggesting that IL-32 is crucial to inflammation and immune responses. Recently, an IL-32$\alpha$-affinity column was employed in order to isolate an IL-32 binding protein, neutrophil proteinase 3 (PR3). Proteinase 3 processes a variety of inflammatory cytokines, including TNF$\alpha$, IL-$1{\beta}$, IL-8, and IL-32, thereby enhancing their biological activities. In the current study, we designed four PR3-cleaved IL-32 separate domains, identified by potential PR3 cleavage sites in the IL-32$\alpha$ and $\gamma$ polypeptides. The separate domains of the IL-32 isoforms $\alpha$ and $\gamma$ were more active than the intrinsic $\alpha$ and $\gamma$ isoforms. Interestingly, the N-terminal IL-32 isoform $\gamma$ separate domain evidenced the highest levels of biological activity among the IL-32 separate domains.

4-(N-Methyl-N-nitrosamino)-1(3-pyridyl)-1-butanone(NNK) Restored the Cap-dependent Protein Translation Blocked by Rapamycin

  • Kim Jun-Sung;Park Jin Hong;Park Sung-Jin;Kim Hyun Woo;Hua Jin;Cho Hyun Sun;Hwang Soon Kyung;Chang Seung Hee;Tehrani Arash Minai;Cho Myung Haing
    • Toxicological Research
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    • 제21권4호
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    • pp.347-353
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    • 2005
  • Eukaryotic initiation factor 4E (elF4E) is a key element for cap-dependent protein translation controlled by affinity between elF4E and 4E-binding protein 1 (4E-BP1). Rapamycin can also affect protein translation by regulating 4E-BP1 phosphorylation. Tobacco-specific nitrosamine, 4(N-methyl-N-nitrosamino )-1-(3-pyridyl)-1-butanone (NNK) is a strong lung carcinogen, but its precise lung cancer induction mechanism remains unknown. Relative roles of cap-dependent and -independent protein translation in terms of NNK-induced lung carcinogenesis were elucidated using normal human bronchial epithelial cells. NNK concentrations applied in this study did not decrease cell viability. Addition of NNK restored rapamycin-induced decrease of protein synthesis and rapamycin-induced phosphorylation of 4E-BP1, and increased expression levels of mTOR, ERK1/2, p70S6K, and Raf-1 in a concentration-dependent manner. NNK also caused perturbation of normal cell cycle progression. Taken together, NNK might cause toxicity through the combination of restoration of 4E-BP1 phosphorylation and increase of elF4E as well as mTOR protein expression, interruption of Raf1/ERK as well as the cyclin G-associated p53 network. Our data could be applied towards elucidation of the molecular basis for lung cancer treatment.

Increased Cellular NAD+ Level through NQO1 Enzymatic Action Has Protective Effects on Bleomycin-Induced Lung Fibrosis in Mice

  • Oh, Gi-Su;Lee, Su-Bin;Karna, Anjani;Kim, Hyung-Jin;Shen, AiHua;Pandit, Arpana;Lee, SeungHoon;Yang, Sei-Hoon;So, Hong-Seob
    • Tuberculosis and Respiratory Diseases
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    • 제79권4호
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    • pp.257-266
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    • 2016
  • Background: Idiopathic pulmonary fibrosis is a common interstitial lung disease; it is a chronic, progressive, and fatal lung disease of unknown etiology. Over the last two decades, knowledge about the underlying mechanisms of pulmonary fibrosis has improved markedly and facilitated the identification of potential targets for novel therapies. However, despite the large number of antifibrotic drugs being described in experimental pre-clinical studies, the translation of these findings into clinical practices has not been accomplished yet. NADH:quinone oxidoreductase 1 (NQO1) is a homodimeric enzyme that catalyzes the oxidation of NADH to $NAD^+$ by various quinones and thereby elevates the intracellular $NAD^+$ levels. In this study, we examined the effect of increase in cellular $NAD^+$ levels on bleomycin-induced lung fibrosis in mice. Methods: C57BL/6 mice were treated with intratracheal instillation of bleomycin. The mice were orally administered with ${\beta}$-lapachone from 3 days before exposure to bleomycin to 1-3 weeks after exposure to bleomycin. Bronchoalveolar lavage fluid (BALF) was collected for analyzing the infiltration of immune cells. In vitro, A549 cells were treated with transforming growth factor ${\beta}1$ (TGF-${\beta}1$) and ${\beta}$-lapachone to analyze the extracellular matrix (ECM) and epithelial-mesenchymal transition (EMT). Results: ${\beta}$-Lapachone strongly attenuated bleomycin-induced lung inflammation and fibrosis, characterized by histological staining, infiltrated immune cells in BALF, inflammatory cytokines, fibrotic score, and TGF-${\beta}1$, ${\alpha}$-smooth muscle actin accumulation. In addition, ${\beta}$-lapachone showed a protective role in TGF-${\beta}1$-induced ECM expression and EMT in A549 cells. Conclusion: Our results suggest that ${\beta}$-lapachone can protect against bleomycin-induced lung inflammation and fibrosis in mice and TGF-${\beta}1$-induced EMT in vitro, by elevating the $NAD^+$/NADH ratio through NQO1 activation.

결명자 추출물의 난알부민 감작으로 천식이 유발된 마우스에서의 개선 효과 (Effect of Cassiae semen extract on ovalbumin-induced allergic asthma in mice)

  • 서범수;박용기
    • 대한본초학회지
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    • 제30권1호
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    • pp.25-32
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    • 2015
  • Objectives : In this study, we investigated the effect of Cassia obtusifolia Linne (Cassiae Semen; CS) extract on ovalbumin (OVA)-induced allergic asthma in mice. Methods : CR was extracted with 70% ethanol. For in vitro study, HMC-1, human mast cells were treated with CS extract at 0.2 and $0.5mg/m{\ell}$ for 1 h, and then stimulated with compound (C) 48/80 for 30 min. Primary spleenocytes were isolated from the spleen of mice, treated with CS extract for 1 h, and then stimulated with ConA for 24 h. For in vivo study, mice were sensitized at day 0, 7 and 14 with 0.2% OVA and then airway challenged using neublizer at day 21, 23, 25, and 27 to induced allergic asthma. CS extract at doses of 100 and 300 mg/kg body weight was orally administered during OVA challenge once per a day. The levels of allergic mediators such as histamine, OVA-specific IgE, IL-4, and $IFN-{\gamma}$ were measured in the sera of mice or culture supernatants by EIA and ELISA, respectively. The expression of IL-4 and $IFN-{\gamma}$ gene was determined by RT-PCR. The histopathological change of lung tissues was observed with hematoxylin and eosin (H&E) and Periodic acid Schiff (PAS) staining. Results : The treatment of CS extract in HMC-1 cells significantly inhibited C48/80-induced degranulation, and histamine release. The treatment of CS extract in spleenocytes suppressed the expression of IL-4 and $IFN-{\gamma}$ mRNA. The administration of CS extract in OVA-induced asthmatic mice significantly decreased the levels of OVA-specific IgE, and IL-4 in a dose-dependent manner with OVA-control group. In addition, CS extract inhibited the infiltration of inflammatory cells and bronchiolar damage with epithelial thickening in lung tissues of OVA-induced asthma mice, and also mucin accumulation. Conclusions : These results indicate that CS extract prevents asthmatic damage through regulating the allergic immune response.

Anti-Influenza Activity of Betulinic Acid from Zizyphus jujuba on Influenza A/PR/8 Virus

  • Hong, Eun-Hye;Song, Jae Hyoung;Kang, Kyo Bin;Sung, Sang Hyun;Ko, Hyun-Jeong;Yang, Heejung
    • Biomolecules & Therapeutics
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    • 제23권4호
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    • pp.345-349
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    • 2015
  • Betulinic acid, a pentacyclic triterpene isolated from Jujube tree (Zizyphus jujuba Mill), has been known for a wide range of biological and medicinal properties such as antibacterial, antimalarial, anti-inflammatory, antihelmintic, antinociceptive, and anticancer activities. In the study, we investigated the antiviral activity on influenza A/PR/8 virus infected A549 human lung adenocarcinoma epithelial cell line and C57BL/6 mice. Betulinic acid showed the anti-influenza viral activity at a concentration of $50{\mu}M$ without a significant cytotoxicity in influenza A/PR/8 virus infected A549 cells. Also, betulinic acid significantly attenuated pulmonary pathology including increased necrosis, numbers of inflammatory cells and pulmonary edema induced by influenza A/PR/8 virus infection compared with vehicle- or oseltamivir-treated mice in vivo model. The down-regulation of IFN-${\gamma}$ level, which is critical for innate and adaptive immunity in viral infection, after treating of betulinic acid in mouse lung. Based on the obtained results, it is suggested that betulinic acid can be the potential therapeutic agent for virus infection via anti-inflammatory activity.

Compound K ameliorates airway inflammation and mucus secretion through the regulation of PKC signaling in vitro and in vivo

  • Lee, Jae-Won;Kim, Mun-Ock;Song, Yu Na;Min, Jae-Hong;Kim, Seong-Man;Kang, Myung-Ji;Oh, Eun Sol;Lee, Ro Woon;Jung, Sunin;Ro, Hyunju;Lee, Jae Kyoung;Ryu, Hyung Won;Lee, Dae Young;Lee, Su Ui
    • Journal of Ginseng Research
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    • 제46권3호
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    • pp.496-504
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    • 2022
  • Background: Cigarette smoke (CS) is considered a principal cause of chronic obstructive pulmonary disease (COPD) and is associated with mucus hypersecretion and airway inflammation. Ginsenoside compound K (CK), a product of ginsenoside metabolism, has various biological activities. Studies on the effects of CK for the treatment of COPD and mucus hypersecretion, including the underlying signaling mechanism, have not yet been conducted. Methods: To study the protective effects and molecular mechanism of CK, phorbol 12-myristate 13-acetate (PMA)-induced human airway epithelial (NCI-H292) cells were used as a cellular model of airway inflammation. An experimental mouse COPD model was also established via CS inhalation and intranasal administration of lipopolysaccharide. Mucin 5AC (MUC5AC), monocyte chemoattractant protein-1, tumor necrosis factor-α (TNF-α), and interleukin-6 secretion, as well as elastase activity and reactive oxygen species production, were determined through enzyme-linked immunosorbent assay. Inflammatory cell influx and mucus secretion in mouse lung tissues were estimated using hematoxylin and eosin and periodic acid-schiff staining, respectively. PKCδ and its downstream signaling molecules were analyzed via western blotting. Results: CK prevented the secretion of MUC5AC and TNF-α in PMA-stimulated NCI-H292 cells and exhibited a protective effect in COPD mice via the suppression of inflammatory mediators and mucus secretion. These effects were accompanied by an inactivation of PKCδ and related signaling in vitro and in vivo. Conclusion: CK suppressed pulmonary inflammation and mucus secretion in COPD mouse model through PKC regulation, highlighting the compound's potential as a useful adjuvant in the prevention and treatment of COPD.