• Title/Summary/Keyword: cell arrest

검색결과 891건 처리시간 0.028초

Lipopolysaccharide로 자극된 BV-2 미세교세포에서 신경염증 매개체, MAP kinase경로, 세포주기의 조절에 의한 천문동(Asparagus cochinchinensis)의 저해효과 (Inhibitory Effects of Asparagus cochinchinensis in LPS-Stimulated BV-2 Microglial Cells through Regulation of Neuroinflammatory Mediators, the MAP Kinase Pathway, and the Cell Cycle)

  • 이현아;김지은;최준영;성지은;윤우빈;손홍주;이희섭;강현구;황대연
    • 생명과학회지
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    • 제30권4호
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    • pp.331-342
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    • 2020
  • 미세교세포(Microglial cells)에서 신경염증반응(neuroinflammatory responses)의 억제는 알츠하이머질환, 파킨슨질환, 헌팅턴질환과 같은 신경퇴행성질환(neurodegenerative diseases)을 치료하기 위한 주요 표적으로 고려되고 있다. 천문동(Asparagus cochinchinesis)은 열, 기침, 신장 질환, 유방암, 염증성질환 및 뇌질환을 치료하는 데 오랫동안 사용 되어온 전통 치료제(Traditional medicine)이다. 본 연구에서는 lipopolysaccharide (LPS)로 활성화된 BV-2 미세교세포에서 항염증효과가 있는 천문동 뿌리 열수추출물(Aqueous extract from A. cochinchinesis root, AEAC)의 신경보호 메커니즘을 연구하였다. 먼저, 어떤 유의적인 세포독성은 플라보노이드(flavonoid), 페놀(phenol), 사포닌(saponin)을 함유하는 AEAC를 4가지 농도로 처리된 BV-2세포에서 검출되지 않았다. 또한, nitric oxide (NO), cyclooxygenase-2 (COX-2) mRNA 및 inducible nitric oxide synthase (iNOS) mRNA 수준은 AEAC+LPS 처리군에서 비하여 21%정도 감소하였다. 전염증성 사이토카인(TNF-α과 IL-1β) 및 항염증성 사이토카인(IL-6와 IL-10)농도에 대한 유사한 감소는 비록 감소비율은 다르지만, Vehicle+LPS 처리군에 비해 AEAC+LPS 처리군에서 검출되었다. 더불어, LPS 처리 후 mitogen-activated protein (MAP) kinase의 인산화수준의 증가는 AEAC 전처리군에서 유의하게 회복되었고, 세포주기에서 G2/M의 억제(arrest)는 AEAC+LPS 처리군에서 개선되었다. 또한, LPS 처리로 유도된 ROS의 증가도 AEAC 전처리군에서 감소되었다. 따라서, 이러한 결과는 AEAC가 MAPK 신호전달 경로, 세포주기 및 ROS (reactive oxygen species) 생성의 조절을 통해 LPS 자극에 대한 항신경염증 활성을 유도함을 제시하고 있다.

생쥐 착상전 배아에서 산화적 스트레스에 의한 ATF4 유전자의 발현과 존재 부위 (Expression and Localization of ATF4 Gene on Oxidative Stress in Preimplantation Mouse Embryo)

  • 나원흠;강한승;어진원;계명찬;김문규
    • 한국발생생물학회지:발생과생식
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    • 제10권2호
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    • pp.105-113
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    • 2006
  • 세포의 대사과정에서 생성되는 활성산소종(reactive oxygen species : ROS)은 세포의 성숙과 발생 과정을 저해하며, 인간의 생식 수관에서 불임의 원인이 된다. 많은 세포생물학적 연구를 통해 ROS에 대한 세포 내의 보호 기작이 밝혀지고 있다. Activating transcription factor 4(ATF4)는 세포 내에서 산화적 스트레스를 비롯한 여러 스트레스 요인으로부터 세포를 보호하는 기작에 관여하는 중요한 인자로서, 스트레스에 의한 세포 사멸을 유도하는 유전자의 활성화와 관련이 있다고 알려져 있다. 본 연구에서는 착상 전 초기 배아의 발생 단계에서 ROS에 의한 산화적 스트레스가 배아의 발생에 영향을 준다는 보고와 관련하여 생쥐 초기배아에 산화적 스트레스 요인인 $H_2O_2$(hydrogen peroxide)를 처리한 후 ATF4 유전자의 발현 변화를 추적하였으며, ROS 방어에 관여하는 SOD1 유전자와 apoptosis 유전자인 Bax의 발현 양상을 함께 비교하였다. 또한 면역형광염색법을 이용하여 착상전 초기배아의 ATF4 단백질 발현 부위를 조사하였다. $H_2O_2$를 0.1 mM 농도로 처리한 2-세포기 배아에서는 처리 8시간 후인 4-세포기 단계부터 발생율이 감소하기 시작하였으며, 0.5 mM과 1.0 mM 농도에서는 배아의 발생이 진행되지 않았다. RT-PCR결과 SOD1 유전자의 발현은 $H_2O_2$를 처리한 모든 그룹에서 처리 1시간째인 2-세포기 배아단계에서 대조군보다 증가하였으며, ATF4 유전자 역시 2-세포기 배아단계에서 발현이 증가하였다. Bax 유전자도 통일한 시기에 발현이 증가하였다. ATF4 단백질의 배아 세포 내 발현부위는 스트레스 방어 기작이 주로 일어나는 세포질에서 많이 발현이 되었으며 포배기 배아에서는 내세포괴(inner cell mass)부위 보다는 영양외배엽(trophectoderm)에서 발현됨을 확인하였다. 2-세포기 배아에서 ATF4 immunoreactivity는 모든 $H_2O_2$농도 처리군에서 대조군보다 증가하였다. 이상의 결과에서, 착상 전 초기 배아에서 ROS에 의해 ATF4 발현이 유도됨을 확인하였다. 따라서 산화적 스트레스에 대해 배아를 보호하기 위한 방어 기작에 ATF4가 관여하는 것으로 사료되며, 세포 사멸 유전자의 발현과도 밀접한 관련이 있는 것으로 사료된다.

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하어혈탕(下瘀血湯)이 1차배양된 인체자궁근종세포(人體子宮筋腫細胞)에 미치는 영향 (Growth Inhibition of Human Uterine Leiomyoma Cells Using Haeohyul-tang)

  • 김한균;조용걸;조미정;최선미;박숙자;김미려;권영규;김상찬
    • 동의생리병리학회지
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    • 제21권1호
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    • pp.158-164
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    • 2007
  • Uterine leiomyoma is the most common tumor in the female genital tract. Although the tumor is benign, it is a matter of paramount importance since it often causes profuse menstrual bleeding, pressure symptoms and infertility. Nevertheless, the etiology and pathophysiology of this abnormality remain poorly understood. The traditional definitive treatment for uterine leiomyomas is hysterectomy and, even today, symptomatic leiomyomas are the leading cause of hysterectomy in Korea. Clearly, the development of a safe, effective, and nonsurgical method of treatment for leiomyoma would be of great benefit to many women. This study demonstrated growth inhibition of uterine leiomyoma cells using Haeohyultang (HT). When human leiomyoma cells were treated with Haeohyultang, cells showed dose-dependent growth inhibitory effect. Cell growth was inhibited by over 40% as determined by both cell counts and MTS assay. Reduction of cellular viability as a consequence of exposure to Haeohyultang resulted from induction of apoptosis, as assessed by DNA fragmentation, PARP cleavage, caspase 9 and caspase 3 assay. Flow cytometry analysis with uterine leiomyoma cells demonstrated sub G1 cell cycle arrest after treatment with drug Haeohyultang. But, the expression levels of p27 and p21 were not changed in Haeohyultang treated cells compared with control. However, the expression levels of clAP1 were reduced by Haeohyultang compared with control. This reduction of clAP1 data means activation of the caspase family, and then induction of PARP cleavage and apoptosis. These results suggest that Haeohyultang may be potential therapeutic approach in the clinical management of uterine leiomyoma.

Sodium Salicylate Activates p38MAPK Though a Specific-Sensing Mechanism, Distinct from Pathways Used by Oxidative Stress, Heat Shock, and Hyperosmotic Stress

  • Kim, Jung-Mo;Oh, Su-Young;Kim, Min-Young;Seo, Myoung-Suk;Kang, Chi-Duk;Park, Hye-Gyeong;Kang, Ho-Sung
    • 대한의생명과학회지
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    • 제9권4호
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    • pp.241-248
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    • 2003
  • Sodium salicylate, a plant stress hormone that plays an important role(s) in defenses against pathogenic microbial and herbivore attack, has been shown to induce a variety of cell responses such as anti-inflammation, cell cycle arrest and apoptosis in animal cells. p38MAPK plays a critical role(s) in the cell regulation by sodium salicylate. However, the signal pathway for sodium salicylate-induced p38MAPK activation is yet unclear. In this study, we show that although sodium salicylate enhances reactive oxygen species (ROS) production, N-acetyl-L-cysteine, a general ROS scavenger, did not prevent sodium salicylate-induced p38MAPK, indicating ROS-independent activation of p38MAPK by sodium salicylate. Sodium salicylate-activated p38MAPK appeared to be very rapidly down-regulated 2 min after removal of sodium salicylate. Interestingly, sodium salicylate-pretreated cells remained fully responsive to re-induction of p38MAPK activity by a second sodium salicylate stimulation or by other stresses, $H_2O$$_2$ and methyl jasmonate (MeJA), thereby indicating that sodium salicylate does not exhibit both homologous and heterologous desensitization. In contrast, pre-exposure to MeJA, $H_2O$$_2$, heat shock, or hyperosmotic stress reduced the responsiveness to subsequent homologous stimulation. Sodium salicylate was able to activate p38MAPK in cells desensitized by other heterologous p38MAPK activators. These results indicate that there is a sensing mechanism highly specific to sodium salicylate for activation of p38MAPK, distinct trom pathways used by other stressors such as MeJA, $H_2O$$_2$ heat shock, and hyperosmotic stress.

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Cellular Toxic Effects and Action Mechanisms Of 2,2', 4,6,6'-Pentachlorobiphenyl

  • Kim Sun-Hee;Shin Kum-Joo;Kim Dohan;Kim Yun-Hee;Ryu Sung Ho;Suh Pann-Ghill
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2004년도 학술대회지
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    • pp.1-20
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    • 2004
  • Polychlorinated biphenyls (PCBs), one a group of persistent and widespread environmental pollutants, have been considered to be involved in immunotoxicity, carcinogenesis, and apoptosis. However, the toxic effects and physical properties of a PCB congener are dependent on the structure. In the present study, we investigate the toxic effects and action mechanisms of PCBs In cells. Among the various congeners tested, 2,2',4,6,6'-PeCB-pentachlorobiphenyl (PeCB), a highly ortho-substituted congener having negligible binding affinity for aryl hydrocarbon receptor (AhR), caused the most potent toxicity and specific effects in several cell types. 2,2',4,6,6'-PeCB induced apoptotic cell death of human monocytic cells, suggesting that PCB-induced apoptosis may be linked to immunotoxicity. In addition, 2,2',4,6,6'-PeCB induced mitotic arrest by interfering with mitotic spindle assembly in NIH3T3 fibroblasts, followed by genetic instability which triggers p53 activation. Which suggests that 2,2',4,6,6'-PeCB may be involved in cancer development by causing genetic instability through mitotic spindle damage. On the other hand, 2,2',4,6,6'-PeCB increased cyclooxygenase-2 (COX-2) involved in cell survival through ERK1/2 MAPK and p53 in Rat-1 fibroblasts and mouse embryonic fibroblasts, triggering compensatory mechanism for abating its toxicity. Taken together, these results demonstrate that PCB congeners of different structure have distinct mechanism of action and 2,2',4,6,6'-PeCB causes several toxicity as well as compensatory mechanism in cells.

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Matrine Reduces Proliferation of Human Lung Cancer Cells by Inducing Apoptosis and Changing miRNA Expression Profiles

  • Liu, Yong-Qi;Li, Yi;Qin, Jie;Wang, Qian;She, Ya-Li;Luo, Ya-Li;He, Jian-Xin;Li, Jing-Ya;Xie, Xiao-Dong
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권5호
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    • pp.2169-2177
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    • 2014
  • Matrine, a main active component extracted from dry roots of Sophora flavecens, has been reported to exert antitumor effects on A549 human non-small lung cancer cells, but its mechanisms of action remain unclear. To determine effects of matrine on proliferation of A549 cells and assess possible mechanisms, MTT assays were employed to detect cytotoxicity, along with o flow cytometric analysis of DNA content of nuclei of cells following staining with propidium iodide to analyze cell cycle distribution. Western blotting was performed to determined expression levels of Bax, Bcl-2, VEGF and HDAC1, while a microarray was used to assessed changes of miRNA profiles. In the MTT assay, matrine suppressed growth of human lung cancer cell A549 in a dose- and timedependent manner at doses of 0.25-2.5 mg/ml for 24h, 48h or 72h. Matrine induced cell cycle arrest in G0/G1 phase and decreased the G2/M phase, while down-regulating the expression of Bcl2 protein, leading to a reduction in the Bcl-2/Bax ratio. In addition, matrine down regulated the expression level of VEGF and HDAC1 of A549 cells. Microarray analysis demonstrated that matrine altered the expression level of miRNAs compared with untreated control A549 cells. In conclusion, matrine could inhibit proliferation of A549 cells, providing useful information for understanding anticancer mechanisms.

Effect of Podophyllotoxin Conjugated Stearic Acid Grafted Chitosan Oligosaccharide Micelle on Human Glioma Cells

  • Wang, Geng Huan;Shen, He Ping;Huang, Xuan;Jiang, Xiao Hong;Jin, Cheng Sheng;Chu, Zheng Min
    • Journal of Korean Neurosurgical Society
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    • 제63권6호
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    • pp.698-706
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    • 2020
  • Objective : To study the physiochemical characteristics of podophyllotoxin (PPT) conjugated stearic acid grafted chitosan oligosaccharide micelle (PPT-CSO-SA), and evaluate the ability of the potential antineoplastic effects against glioma cells. Methods : PPT-CSO-SA was prepared by a dialysis method. The quality of PPT-CSO-SA including micellar size, zeta potential, drug encapsulation efficiency and drug release profiles was evaluated. Glioma cells were cultured and treated with PPT and PPT-CSO-SA. The ability of glioma cells to uptake PPT-CSO-SA was observed. The proliferation of glioma cells was determined by 3-[4, 5-dimethyl-2-thiazolyl]-2, 5-diphenyl-2H-tetrazolium bromide (MTT) assay. The apoptosis and morphology of U251 cells were observed by 4',6-Diamidino-2-phenylindole dihydrochloride (DAPI) dye staining. Cell cycle analysis was performed by flow cytometry. The migration ability of U251 cells was determined by wound healing test. Results : PPT-CSO-SA had nano-level particle size and sustained release property. The encapsulation efficiency of drug reached a high level. The cellular uptake percentage of PPT in glioma cells was lower than that of PPT-CSO-SA (p<0.05). The inhibitory effect of PPT-CSO-SA on glioma cells proliferation was significantly stronger than that of PPT (p<0.05). The morphologic change of apoptosis cell such as shrinkage, karyorrhexis and karyopyknosis were observed. The percentage of U251 cells in G2/M phase increased significantly in the PPT-CSO-SA group compared with PPT group (p<0.05). Compared with the PPT group, the cell migration ability of the PPT-CSO-SA group was significantly inhibited after 12 and 24 hours (p<0.05). Conclusion : PPT-CSO-SA can effectively enhance the glioma cellular uptake of drugs, inhibit glioma cells proliferation and migration, induce G2/M phase arrest of them, and promote their apoptosis. It may be a promising anti-glioma nano-drug.

인체 암세포에서 genistein에 의한 cyclooxygenase-2 및 telomerase의 활성 저하 (Genistein-induced Growth Inhibition was Associated with Inhibition of Cyclooxygenase-2 and Telomerase Activity in Human Cancer Cells.)

  • 김정임;김성윤;서민정;임학섭;이영춘;주우홍;최병태;정영기;최영현
    • 생명과학회지
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    • 제18권6호
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    • pp.884-890
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    • 2008
  • 본 연구에서는 대두의 대표적인 생리활성 물질인 genistein의 처리에 따른 암세포의 증식억제에서 telomerase 및 COX-2 활성의 변화 연관성을 조사하였다. 이를 위하여 4가지 종류의 암세포주를 사용하였으며, genistein 처리에 의하여 암세포들의 증식억제에서 백혈병 세포인 U937 세포의 감수성이 감장 높게 나타났으며, genistein 처리에 따라 telomere 조절인자들의 발현이 대부분 억제되었으며, telomerase의 활성도 매우 유의적으로 감소되었다. 또한 genistein처리 농도가 증가함에 따라 COX-2의 발현이 전사 및 번역 수준에서 모두 감소되었으며 이에 따른 $PGE_2$의 생성 역시 현저하게 감소되었으나, COX-1의 발현에는 큰 변화가 없었다. 이러한 결과들은 genistein의 항암 활성을 이해하는 귀중한 자료로서 활용될 것으로 생각된다.

Caffeic acid phenethyl ester의 처리에 의한 NSAID activated gene-1의 과대발현 (Over-expression of NSAID Activated Gene-1 by Caffeic Acid Phenethyl Ester)

  • 장민정;김효은;손성민;김민정;서을원;김영호;김종식
    • 생명과학회지
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    • 제19권12호
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    • pp.1787-1793
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    • 2009
  • 파이토케미칼의 일종인 CAPE가 암세포 생장에 미치는 영향과 유전자 발현을 연구하기 위하여, 인간 대장암 세포주 HCT116에 CAPE를 처리하였다. CAPE의 처리는 농도 의존적으로 암 세포 생존율을 감소시키고, 세포사멸을 유도함을 확인하였다. CAPE에 의해 차별적으로 발현되는 유전자를 분석하기 위하여, oligo DNA microarray 실험을 수행하였다. 그 결과, $20{\mu}M$ CAPE를 24시간 동안 처리한 경우, 2배 이상 발현이 증가되는 유전자 266개, 2배 이상 발현이 감소되는 유전자 143개를 확인하였다. 발현이 증가되는 유전자중 3개(NAG-1, p21, GADD45A)를 선택하여, RT-PCR을 수행하였다. 그 결과, 모든 유전자의 발현이 마이크로어레이 실험결과와 일치하였다. 또한, CAPE를 농도 의존적으로 처리한 후, NAG-1 유전자와 단백질의 발현을 확인한 결과, mRNA 수준과 단백질 수준에서의 발현양상이 동일함을 확인하였다. 게다가, CAPE를 포함한 5개의 다른 종류의 파이토케미칼(resveratrol, genistein, daidzein, capsaicin)을 처리한 경우, 처리한 모든 파이토케미칼에 의해 NAG-1 유전자의 발현이 증가됨을 확인하였다. 이중 CAPE가 가장 낮은 농도의 처리임에도 불구하고 NAG-1의 발현을 가장 강하게 유도하였다. 결론적으로 이러한 연구결과는 CAPE에 의한 세포사멸은 항암유전자인 NAG-1의 과대발현과 밀접한 관련이 있음을 의미한다.

TAp73 and ΔNp73 Have Opposing Roles in 5-aza-2'-Deoxycytidine-Induced Apoptosis in Breast Cancer Cells

  • Lai, Jing;Yang, Fang;Zhang, Wenwen;Wang, Yanru;Xu, Jing;Song, Wei;Huang, Guichun;Gu, Jun;Guan, Xiaoxiang
    • Molecules and Cells
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    • 제37권8호
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    • pp.605-612
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    • 2014
  • The p73 gene contains an extrinsic P1 promoter and an intrinsic P2 promoter, controlling the transcription of the pro-apoptotic TAp73 isoform and the anti-apoptotic ${\Delta}Np73$ isoform, respectively. The DNA methylation status of both promoters act equally in the epigenetic transcriptional regulation of their relevant isoforms. The aim of this study was to analyze the different effects of these p73 isoforms in 5-aza-2'-deoxycytidine (5-aza-dC)-induced apoptosis in breast cancer cells. We investigated the effects of the DNA demethylation agent, 5-aza-dC, on the T-47D breast cancer cell line, and evaluated the methylation status of the p73 promoters and expression of TAp73 and ${\Delta}Np73$. Furthermore, we assessed the expression of p53 and p73 isoforms in 5-aza-dC-treated T-47D cells and p53 knockout cells. 5-aza-dC induced significant anti-tumor effects in T-47D cells, including inhibition of cell viability, G1 phase arrest and apoptosis. This was associated with p73 promoter demethylation and a concomitant increase in TAp73 mRNA and protein expression. In contrast, the methylation status of promoter P2 was not associated with ${\Delta}Np73$ mRNA or protein levels. Furthermore, demethylation of P2 failed to inhibit the expression of ${\Delta}Np73$ with 5-aza-dC in the p53 knockdown cell model. Our study suggests that demethylation of the P1 and P2 promoters has opposite effects on the expression of p73 isoforms, namely up-regulation of TAp73 and down-regulation of ${\Delta}Np73$. We also demonstrate that p53 likely contributes to 5-aza-dC-induced ${\Delta}Np73$ transcriptional inactivation in breast cancer cells.