• 제목/요약/키워드: Cell proliferation and growth

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마우스 폐암 세포에서 Insulin-Like Growth Factor-I (IGF-I) 및 IGF Binding Protein (IGFBP)의 역할 (The Role of Insulin-like Growth Factor I(IGF-I), and IGF Binding Protein (IGFBP) in Mouse Lung Cancer Cells)

  • 조철호;김세규;곽승민;장준;김성규;정경영
    • Tuberculosis and Respiratory Diseases
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    • 제50권5호
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    • pp.549-556
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    • 2001
  • 연구배경 : 세포성장에 관여하는 여러 growth factor중 IGF-I은 IGF-IR와 결합하여 세포증식을 유발하는 mitogen으로 알려져 있다. 대부분의 정상세포 및 암세포는 IGFBPs을 분비하는데 이들은 IGF-I과 결합하여 IGF-I의 세포증식 효과를 증가 혹은 억제시킨다. 마우스 폐암세포주 (3LL)에서 IGF-I이 세포성장에 미치는 효과를 보고, 3LL 세포에서 분비되는 IGFBP을 추출 확인하고, IGFBPs이 세포 성정에 미치는 영향을 관찰하였다. 방 법 : 마우스 폐암세포주 (3LL)를 이용하여, IGF-I을 투여하여 세포성장을 MTT assay로 측정하였고, 3LL에서 분비되는 IGFBP을 추출하여 Western ligand blot 및 western immunoblot으로 확인하였다. 또한 분비된 IGFBP이 세포성장에 미치는 영향을 보기위해, anti-IGFBP antibody을 첨가하여 이의 기능을 억제하여 세포성장에 관한 기능을 관찰하였다. 결 과 : IGF-I은 serum free media에서 3LL 세포성장을 증가시켰다. 3LL 세포는 IGFBP-4를 생성하는 것을 확인하였고, anti-IGFBP-4 antibody를 첨가시 세포성장이 증가된 소견이 관찰되어 IGFBP-4는 세포증식을 억제하는 기능을 가지고 있음을 간접적으로 알 수 있었다. 결 론 : 이상의 실험 결과로 3LL 마우스 폐암세포에서 IGF-I은 세포성장을 증가시키며, 3LL에서 생성된 IGFBP-4는 세포증식을 억제하는 기능을 가지고 있다는 것을 관찰하였다. 향후 IGF-I과 IGFBPs이 암 성장에 미치는 기전과 임상적 적용에 대한 연구가 필요하리라 생각된다.

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천금위경탕의 인체 폐암세포 증식억제에 관한 연구 (Anti-proliferative Effects of Cheonkumwikyung-tang In A549 Human Lung Carcinoma Cells)

  • 박봉규;박동일
    • 동의생리병리학회지
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    • 제18권4호
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    • pp.1147-1152
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    • 2004
  • To investigate the anti-cancer effects of aqueous extract of Cheonkumwikyung-tang (CKWKT) on the growth of human lung carcinoma cell line A549, we performed various biochemical experiments such as the effects of CKWKT on the cell proliferation and viability, the morphological changes, the effects on expression of apoptosis and cell growth-regulatory gene products. Results obtained are as follow; CKWKT treatment declined the cell viability and proliferation of A549 cells in a concentration-dependent manner. The anti-proliferative effect by CKWKT treatment in A549 cells was associated with morphological changes such as membrane shrinking and cell rounding up. CKWKT treatment induced apoptotic cell death of A549 cells in a concentration-dependent manner, which was associated with inhibition and/or degradation of apoptotic target proteins such poly(ADP-ribose) polymerase, β-catenin and phospholipase C-γ1. Western blot analysis revealed that the levels cyclin-dependent kinase inhibitor p21 expression were induced by CKWKT treatment in A549 cells. Taken together, these findings suggest that CKWKT-induced inhibition of human lung cancer cell proliferation is associated with the induction of apoptotic cell death via regulation of several major growth regulatory gene products and CKWKT may have therapeutic potential in human lung cancer.

해조류 추출물이 섬유아세포의 증식에 미치는 영향 (Cell proliferation effect of brown marine algae extracts on Mouse Fibroblast)

  • 고주영;이지혁;김현수;김형호;전유진
    • 한국해양바이오학회지
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    • 제7권1호
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    • pp.28-34
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    • 2015
  • We examined cell regeneration efficiency of brown marine algae living in Jeju coast for search of a novel therapeutic device with cutaneous wound healing materials. The five algae were collected and compared with epidermal growth factor (EGF) as a positive control in the assays of cell proliferation and cell migration of NIH3T3 fibroblast cells. Among the 80% methanol extracts of these brown algae, the two algal extracts from Ishige foliacea and Colpomenia bullosa showed the proliferative effects of the cells similar to the effect of EGF. Besides it was found that Colpomenia bullosa extract significantly enhanced cell migration of NIH3T3 cell. In the study, therefore, we confirmed that the Colpomenia bullosa extract improved proliferation of NIH3T3 cell and a potential candidate for cultaneous wound healing.

동충하초의 인체 폐암세포 증식억제에 관한 연구 (Induction of Apoptotic Cell Death by an Aqueous Extract of Cordyceps militaris in A549 Human Lung Carcinoma Cells)

  • 홍상훈;감철우;박동일
    • 동의생리병리학회지
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    • 제18권4호
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    • pp.1102-1106
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    • 2004
  • To investigate the anti-proliferative effects of an aqueous extract of Cordyceps militaris (AECM) on the growth of human lung carcinoma cell line A549, we performed various biochemical experiments such as the effects of AECM on the cell proliferation and viability, the morphological changes, the effects on expression of apoptosis and cell growth-regulatory gene products. Results obtained are as follow; AECM treatment declined the cell viability and proliferation of A549 cells in a concentration-dependent manner. The anti-proliferative effect by AECM treatment in A549 cells was associated with morphological changes such as membrane shrinking and cell rounding up. Taken together, these findings suggest that AECM-induced inhibition of human lung cancer cell proliferation is associated with the induction of apoptotic cell death via regulation of several major growth regulatory gene products, and C. militaris may have therapeutic potential in human lung cancer.

Enhanced Proliferation and Altered Intracellular Zinc Levels in Early- and Late-Passage Mouse Aorta Smooth Muscle Cells

  • Moon Sung-Kwon;Ha Sang-Do
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제5권1호
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    • pp.44-47
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    • 2000
  • Cell growth and DNA synthesis were studied from a cultured early- and late- pas- sage mouse aorta smooth muscle cell (MASMC) because the proliferation of vascular smooth muscle cell (VSMC) is a key factor in development of atherosclerosis. In this study, the cells were cultured in fetal bovine serum (FBS) and stimulated by growth factors such as thrombin and platelet-derived growth factor-BB (PDGF-BB). Compared to the number of early-passage MASMC (passage 3 to 9) the number of late-passage MASMC (passage 30 to 40) in a normal serum state was increased 2 fold at Day 1, 3 and 6 in culture, respectively. Incorporation of $[^3H]$ thymidine into DNA induced by serum, PDGF and thrombin in late-passage MASMC was greater than those in early-passage MASMC. We also examined whether intracellular zinc levels would be an aging factor or not. The intracellular zinc level in early- and late-passage MASMC was monitored by using the zinc probe dye N-(6-methoxy-8-quinolyl)-p-toluenesulfonamide. It is interested that late-passage MASMC increased the intracellular fluorescence level of zinc, more than the early passage MASMC did. The alterations of intracellular zinc level occur concurrently with changes in MASMC proliferation rate during aging. This data suggest that the age-associated changes in zinc concentrations may provide a new in vitro model for the study of smooth muscle cell differentiation.

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Inhibition of Growth and Induction of Differentiation of SMMC-7721 Human Hepatocellular Carcinoma Cells by Oncostatin M

  • Kong, N.;Zhang, X.M.;Wang, H.T.;Mu, X.P.;Han, H.Z.;Yan, W.Q.
    • Asian Pacific Journal of Cancer Prevention
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    • 제14권2호
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    • pp.747-752
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    • 2013
  • Oncostatin M (OSM) is a multifunctional cellular regulator acting on a wide variety of cells, which has potential roles in the regulation of gene activation, cell survival, proliferation and differentiation. Previous studies have shown that OSM can induce morphological and/or functional differentiation and maturation of many tumor cells. However, the action of OSM on the induction of differentiation of human hepatocellular carcinoma (HCC) has not been reported. Here, we investigated the effects of different concentrations of OSM on human HCC cell line SMMC-7721 growth, proliferation, cell cycling, apoptosis and differentiation in vitro. Cell growth was determined via MTT assay, proliferation by cell cycle analysis, apoptosis by flow cytometry, morphology by transmission electronic microscopy, and cell function by detection of biochemical markers. Our results demonstrated that OSM strongly inhibited the growth of SMMC-7721 cells in a dose-dependent manner, associated with decreased clonogenicity. Cell cycle analysis revealed a decreased proportion of cells in S phase, with arrest at G0/G1. The apotosis rate was increased after OSM treatment compared to the control. These changes were associated with striking changes in cellular morphology, toward a more mature hepatic phenotype, accompanied by significant reduction of the expression of AFP and specific activity of ${\gamma}$-GT, with remarkable increase in secretion of albumin and ALP activity. Taken together, our findings indicate that OSM could induce the differentiation and reduce cell viability of SMMC-7721 cells, suggesting that differentiation therapy with OSM offers the opportunity for therapeutic intervention in HCC.

세포 증식 영상용 방사성의약품 (Radiopharmaceuticals for Imaging of Cellular Proliferation)

  • 오승준
    • 대한핵의학회지
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    • 제36권4호
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    • pp.209-223
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    • 2002
  • By considering the biological properties of a tumor, it should be possible to realize better results in cancer therapy. PET imaging offers the opportunity to measure tumor growth non-invasively and repeatedly as an early assessment of response to cancer therapy. Measuring cellular growth instead of energy metabolism showed offer significant advantages in evaluating therapy. Thymidine and its derivative nucleoside compounds can be changed to mono, di- and tri- phosphate compounds by thymidine kinase and then be incorporated into DNA. Their bindings are increased in highly proliferating cells due to the high DNA synthesis rate. To evaluate cell proliferation, many kinds of thymidine and uridine derivatives have been labeled with positron emitter and radioactive iodine. Compared to radiopharmaceuticals which have radioisotope labeled base ring such as pyirmidine, the radiopharmacuticals which have radioisotope labeled sugar ring are more stable in vivo and have metabolic resistance. The biological properties such as DNA incorporation ratios are highly dependent on their chemical structures and metabolic processes. This overview describes synthesis of radiopharmaceuticals and their biological properties for imaging of tumor cell proliferation.

Effects of intrauterine growth restriction during late pregnancy on the cell growth, proliferation, and differentiation in ovine fetal thymuses

  • Zi, Yang;Ma, Chi;He, Shan;Yang, Huan;Zhang, Min;Gao, Feng;Liu, Yingchun
    • Animal Bioscience
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    • 제35권7호
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    • pp.989-998
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    • 2022
  • Objective: This study investigated the effects of intrauterine growth restriction (IUGR) during late pregnancy on the cell growth, proliferation, and differentiation in ovine fetal thymuses. Methods: Eighteen time-mated Mongolian ewes with singleton fetuses were allocated to three groups at d 90 of pregnancy: restricted group 1 (RG1, 0.18 MJ ME/body weight [BW]0.75/d, n = 6), restricted group 2 (RG2, 0.33 MJ ME/BW0.75/d, n = 6) and control group (CG, ad libitum, 0.67 MJ ME/BW0.75/d, n = 6). Fetuses were recovered at slaughter on d 140. Results: The G0/G1 phase cell number in fetal thymus of the RG1 group was increased but the proliferation index and the expression of proliferating cell nuclear antigen (PCNA) were reduced compared with the CG group (p<0.05). Fetuses in the RG1 group exhibited decreased growth hormone receptor (GHR), insulin-like growth factor 2 receptor (IGF-2R), and their mRNA expressions (p<0.05). For the RG2 fetuses, there were no differences in the proliferation index and PCNA expression (p>0.05), but growth hormone (GH) and the mRNA expression of GHR were lower than those of the CG group (p<0.05). The thymic mRNA expressions of cyclin-dependent protein kinases (CDKs including CDK1, CDK2, and CDK4), CCNE, E2-factors (E2F1, E2F2, and E2F5) were reduced in the RG1 and RG2 groups (p<0.05), and decreased mRNA expressions of E2F4, CCNA, CCNB, and CCND were occurred in the RG1 fetuses (p<0.05). The decreased E-cadherin (E-cad) as a marker for epithelial-mesenchymal transition (EMT) was found in the RG1 and RG2 groups (p<0.05), but the OB-cadherin which is a marker for activated fibroblasts was increased in fetal thymus of the RG1 group (p<0.05). Conclusion: These results indicate that weakened GH/IGF signaling system repressed the cell cycle progression in G0/G1 phase in IUGR fetal thymus, but the switch from reduced E-cad to increased OB-cadherin suggests that transdifferentiation process of EMT associated with fibrogenesis was strengthened. The impaired cell growth, retarded proliferation and modified differentiation were responsible for impaired maturation of IUGR fetal thymus.

Suppression of Prostaglandin E2-Mediated Cell Proliferation and Signal Transduction by Resveratrol in Human Colon Cancer Cells

  • Song, Su-Hyun;Min, Hye-Young;Lee, Sang-Kook
    • Biomolecules & Therapeutics
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    • 제18권4호
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    • pp.402-410
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    • 2010
  • Although the overproduction of prostaglandin $E_2$ ($PGE_2$) in intestinal epithelial cells has been considered to be highly correlated with the colorectal carcinogenesis, the precise mechanism of action remains poorly elucidated. Accumulating evidence suggests that the PGE receptor (EP)-mediated signal transduction pathway might play an important role in this process. In the present study, we investigated the mechanism of action underlying $PGE_2$-mediated cell proliferation and the effect of resveratrol on the proliferation of human colon cancer cells in terms of the modulating $PGE_2$-mediated signaling pathway. $PGE_2$ stimulated the proliferation of several human colon cancer cells and activated growth-stimulatory signal transduction, including Akt and ERK. $PGE_2$ also increased the phosphorylation of GSK-$3{\beta}$, the translocation of ${\beta}$-catenin into the nucleus, and the expressions of c-myc and cyclin D1. Resveratrol, a cancer chemopreventive phytochemical, however, inhibited $PGE_2$-induced growth stimulation and also suppressed $PGE_2$-mediated signal transduction, as well as ${\beta}$-catenin/T cell factor-mediated transcription in human colon cancer cells. These findings present an additional mechanism through which resveratrol affects the regulation of human colon cancer cell growth.

Nanofibrous Meshes Promoting Celular Proliferation

  • 유혁상;최지숙;김혜성
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2011년도 추계학술발표대회
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    • pp.2.1-2.1
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    • 2011
  • Biomedical applications of electrospun nanofibrous meshes have been receive tremendous attentions because of their unique structures and versatilities as novel biomaterials. Incorporation of growth factors in fibrous meshes can be performed by surface-modification and encapsulation. Those growth factors stimulate differentiation and proliferation of specific types of cells and thus lead tissue regenerations of specific cell types. Topographical cues of electrospun nanofibrous meshes also increase differentiation of specific cell types according to alignments of fibrous structures. Wound healing treatments of diabetic ulcers were performed using nanofibrous meshes encapsulating multiple growth factors. Aligned nanofibrous meshes and those with random configuration were compared for differentiating mesenchymal stem cells into neuronal cells. Thus, nanofibrous meshes can be applied to novel drug delivery carriers and matrix for promoting cellular proliferation.

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