• Title/Summary/Keyword: cellular growth

검색결과 1,494건 처리시간 0.031초

키토산-알긴산-Fe(II) 복합체의 항균활성 (Antimicrobial Activity of Chitosan-alginate-Fe(II) Complex.)

  • 전영현;김광윤;오석중;임선영;전순배;배석
    • 한국미생물·생명공학회지
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    • 제31권1호
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    • pp.90-93
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    • 2003
  • The antibacterial activity of chitosan-alginate-Fe(II) complex (CAFC) against Escherichia coli and Staphylococcus aureus, and an opportunistic pathogen, Candida albicans, was investigated. A concentration of 1 mg/1 was needed to inhibit the growth of S. aureus and E. coli, while 100 mg/liter was sufficient for the growth inhibition of Candida albicans. The ion leakage of potassium and phosphate from E. coli cell and the penetration of ethidium bromide dye into it indicate that CAFC might be able to increase the cell permeability and consequently cellular leakage, thus leading to cell plasmolysis. Scanning electronmicroscope showed that E. coli cells treated with CAFC became irregular, swelling and expanded. In a field trial, control piglets showed average mortality of up to 60% within 3 days after the onset of diarrhea. In contrast, CAFC-treated groups without mortality was decreased to average 56% on the 1 st day after the treatment, and average 7% on the 3rd day. After then, piglets with diarrhea was not found.

Adenovirus-Mediated Antisense Expression of Telomerase Template RNA Induces Apoptosis in Lung Cancer Cells

  • Song, Joon-Seok;Kim, Sang-Bae;Lee, Young-Ho;Lee, Kyu-Wan;Jung, Hak-Huyn;Kim, Mee-Hye;Kim, Kyung-Tai;Brown, Robert;Kim, Young-Tae
    • Journal of Microbiology and Biotechnology
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    • 제12권1호
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    • pp.89-95
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    • 2002
  • Telomerase is a ribonucleoprotein complex, whose function is to add telomeric repeats $(TTAGGG)_n$ to chromosomal ends and is also known to play an important role in cellular immortalization. Telomerase is highly active in most tumor cells, yet not in normal cells. Therefore, it may have possible applications in cancer gene therapy. Telomerase consists of two essential components; a telomerase RNA template (hTR) and a catalytic subunit (hTERT). The current study attempted to inhibit the "open" part of the human telomerase RNA (hTR) with an antisense sequence-expressing adenovirus. It was found that the antisense telomerase adenovirus suppressed the telomerase activity, tumor cell growth, and survival in vitro. Furthermore, FACS analysis and TUNEL assay suggested that the reduce viability was mediated through the induction of apoptosis, indicating that this approach might be a useful method for suppressing cancer growth in targeted cancer gene therapy.

Proteomic Evaluation of Cellular Responses of Saccharomyces cerevisiae to Formic Acid Stress

  • Lee, Sung-Eun;Park, Byeoung-Soo;Yoon, Jeong-Jun
    • Mycobiology
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    • 제38권4호
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    • pp.302-309
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    • 2010
  • Formic acid is a representative carboxylic acid that inhibits bacterial cell growth, and thus it is generally considered to constitute an obstacle to the reuse of renewable biomass. In this study, Saccharomyces cerevisiae was used to elucidate changes in protein levels in response to formic acid. Fifty-seven differentially expressed proteins in response to formic acid toxicity in S. cerevisiae were identified by 1D-PAGE and nano-liquid chromatography-tandem mass spectrometry (nano-LC-MS/MS) analyses. Among the 28 proteins increased in expression, four were involved in the MAP kinase signal transduction pathway and one in the oxidative stress-induced pathway. A dramatic increase was observed in the number of ion transporters related to maintenance of acid-base balance. Regarding the 29 proteins decreased in expression, they were found to participate in transcription during cell division. Heat shock protein 70, glutathione reductase, and cytochrome c oxidase were measured by LC-MS/MS analysis. Taken together, the inhibitory action of formic acid on S. cerevisiae cells might disrupt the acidbase balance across the cell membrane and generate oxidative stress, leading to repressed cell division and death. S. cerevisiae also induced expression of ion transporters, which may be required to maintain the acid-base balance when yeast cells are exposed to high concentrations of formic acid in growth medium.

Isolation and Characterization of an Agar-degrading Bacterium, Isolated from The Sea Water

  • 문현식;홍승현;허문수
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2005년도 생물공학의 동향(XVII)
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    • pp.340-342
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    • 2005
  • 한천분해 세균은 제주 연안의 해수로부터 분리되어졌다. 균주는 Gram 음성 간균이며, 절대 호기성 세균이다. 균주는 agarase를 생성하여 한천을 분해하는 것으로 관찰되었다. 균주의 생화학적 특성과 16S rRNA 유전자 염기서열 분석한 결과 Agarivorans속으로 동정 되었다. 그래서 Agarivorans sp. JA1이라 명명하였다. agarase의 최적 생산을 위한 agar농도는 0.5%이며, pH, 온도와 NaCl 농도는 각각 pH 7, $25^{\circ}C$ $^{\sim}$ $30^{\circ}C$와 2%였다. 유기태과 무기태는 각각 yeast extract와 $NaNO_3$를 첨가 할 경우 agarase 생성이 가장 좋은 것으로 사료되었다. Agarase의 최적 생산 활성 측정은 DNS법(3,5-dinitrosalicyclic acid procedure)을 이용하여 환원당 값을 산출하였고, 50000(U/L)이상 나왔다.

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An inhibitory role of NEK6 in TGFβ/Smad signaling pathway

  • Zuo, Jie;Ma, Haijie;Cai, Hao;Wu, Yanhua;Jiang, Wei;Yu, Long
    • BMB Reports
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    • 제48권8호
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    • pp.473-478
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    • 2015
  • The NEK6 (NIMA-related kinases 6) is reported to play po-tential roles in tumorigenesis. Although it is suggested to function in several cellular pathways, the underlying mechanism in tumorigenesis is still largely unknown. In the present study, we discovered interaction of NEK6 with Smad4, a key member of transforming growth factor beta (TGFβ) pathway. Over-expression of NEK6 in hepatocellular carcinoma (HCC) cell lines suppresses TGFβ-mediated transcription activity in a kinase activity-dependent manner. In addition, NEK6 suppresses the cell growth arrest induced by TGFβ. Mechanically, NEK6 blocks nuclear translocation of Smad4, which is essential for TGFβ function. Moreover, we identified that NEK6 could be regulated by TGFβ and hypoxia. Our study sheds new light on the roles of NEK6 in canonical TGFβ/Smad pathway and tum-origenesis. [BMB Reports 2015; 48(8): 473-478]

miR-29a suppresses growth and invasion of gastric cancer cells in vitro by targeting VEGF-A

  • Chen, Ling;Xiao, Hong;Wang, Zong-Hua;Huang, Yi;Liu, Zi-Peng;Ren, Hui;Song, Hang
    • BMB Reports
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    • 제47권1호
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    • pp.39-44
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    • 2014
  • Increasing data shows miR-29a is a key regulator of oncogenic processes. It is significantly down-regulated in some kind of human tumors and possibly functionally linked to cellular proliferation, survival and migration. However, the mechanism remains unclear. In this study, we report miR-29a is significantly under-expressed in gastric cancer compared to the healthy donor. The microvessel density is negatively related to miR-29a expression in gastric cancer tissues. The ectopic expression of miR-29a significantly inhibits proliferation and invasion of gastric cancer cells. Furthermore, western blot combined with the luciferase reporter assays demonstrate that vascular endothelial growth factor A (VEGF-A) is direct target of miR-29a. This is the first time miR-29a was found to suppress the tumor microvessel density in gastric cancer by targeting VEGF-A. Taken together, these results suggest that miR-29a is a tumor suppressor in gastric cancer. Restoration of miR-29a in gastric cancer may be a promising therapeutic approach.

Ligand-Independent Activation of the Androgen Receptor by Insulin-Like Growth Factor-I and the Role of the MAPK Pathway in Skeletal Muscle Cells

  • Kim, Hye Jin;Lee, Won Jun
    • Molecules and Cells
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    • 제28권6호
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    • pp.589-593
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    • 2009
  • In this study, the roles of the p38 MAPK, ERK1/2 and JNK signaling pathway in IGF-I-induced AR induction and activation were examined. C2C12 cells were treated with IGF-I in the absence or presence of various inhibitors of p38 MAPK (SB203580), ERK1/2 (PD98059), and JNK (SP600125). Inhibition of the MAPK pathway with SB203580, PD98059, or SP600125 significantly decreased IGF-I-induced AR phosphorylation and total AR protein expression. IGF-I-induced nuclear fraction of total AR and phosphorylated AR were significantly inhibited by SB203580, PD98059, or SP600125. Furthermore, IGF-I-induced AR mRNA and skeletal ${\alpha}-actin$ mRNA were blocked by those inhibitors in dose-dependent manner. Confocal images showed that IGF-I-induced AR nuclear translocation from cytosol was significantly blocked by SB203580, PD98059, or SP600125, suggesting that the MAPK pathway regulates IGF-I-induced AR nuclear localization in skeletal muscle cells. The present results suggest that the MAPK pathways are required for the ligand-independent activation of AR by IGF-I in C2C12 skeletal muscle cells.

혈관신생 분자핵의학 영상 (Molecular Nuclear imaging of Angiogenesis)

  • 이경한
    • 대한핵의학회지
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    • 제38권2호
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    • pp.171-174
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    • 2004
  • Angiogenesis, the formation of new capillaries from existing vessels, increases oxygenation and nutrient supply to ischemic tissue and allows tumor growth and metastasis. As such, angiogenesis targeting provides a novel approach for cancer treatment with easier drug delivery and less drug resistance. Therapeutic anti-angiogenesis has shown impressive effects in animal tumor models and are now entering clinical trials. However, the successful clinical introduction of this new therapeutic approach requires diagnostic tools that can reliably measure angiogenesis in a noninvasive and repetitive manner. Molecular imaging is emerging as an exciting new discipline that deals with imaging of disease on a cellular or genetic level. Angiogenesis imaging is an important area for molecular imaging research, and the use of radiotracers offers a particularly promising technique for its development. While current perfusion and metabolism radiotracers can provide useful information related to tissue vascularity, recent endeavors are focused on the development of novel radioprobes that specifically and directly target angiogenic vessels. Presently available proges include RGD sequence containing peptides that target ${\alpha}_v\;{\beta}_3$ integrin, endothelial growth factors such as VEGF or FGF, metalloptoteinase inhibitors, and specific antiangiogenic drugs. It is now clear that nuclear medicine techniques have a remarkable potential for angiogenesis imaging, and efforts are currently continuing to develop new radioprobes with superior imaging properties. With future identification of novel targets, design of better probes, and improvements in instrumentation, radiotracer angiogenesis imaging promises to play an increasingly important role in the diagnostic evaluation and treatment of cancer and other angiogenesis related diseases.

HQSAR Study of Tricyclic Azepine Derivatives as an EGFR (Epidermal Growth Factor Receptor) Inhibitors

  • Chung, Hwan-Won;Lee, Kyu-Whan;Oh, Jung-Soo;Cho, Seung-Joo
    • Molecular & Cellular Toxicology
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    • 제3권3호
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    • pp.159-164
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    • 2007
  • Stimulation of epidermal growth factor receptor (EGFR) is essential in signaling pathway of tumor cells. Thus, EGFR has intensely studied as an anticancer target. We developed hologram quantitative structure activity relationship (HQSAR) models for data set which consists of tricyclic azepine derivatives showing inhibitory activities for EGFR. The optimal HQSAR model was generated with fragment size of 6 to 7 while differentiating fragments having different atom and connectivity. The model showed cross-validated $q^2$ value of 0.61 and non-cross-validated $r^2$ value of 0.93. When the model was validated with an external set excluding one outlier, it gave predictive $r^2$ value of 0.43. The contribution maps generated from this model were used to interpret the atomic contribution of each atom to the overall inhibition activity. This can be used to find more efficient EGFR inhibitors.

Spinal Cord Injury Treatment using a Noble Biocompatible Bridge

  • Hossain, S.M. Zakir;Babar, S.M. Enayetul;Azam, S.M. Golam;Sarma, Sailendra Nath;Haki, G.D.
    • Molecular & Cellular Toxicology
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    • 제3권3호
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    • pp.151-158
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    • 2007
  • The failure of injured axons to regenerate in the mature central nervous system (CNS) has devastating consequences for victims of spinal cord injury (SCI). Traditional strategies to treat spinal cord injured people by using drug therapy and assisting devices that can not help them to recover fully various vital functions of the spinal cord. Many researches have been focused on accomplishing re-growth and reconnection of the severed axons in the injured region. Using cell transplantation to promote neural survival or growth has had modest success in allowing injured neurons to re-grow through the area of the lesion. Strategies for successful regeneration will require tissue engineering approach. In order to persuade sufficient axons to regenerate across the lesion to bring back substantial neurological function, it is necessary to construct an efficient biocompatible bridge (cell-free or implanted with different cell lines as hybrid implant) through the injured area over which axons can grow. Therefore, in this paper, spinal cord and its injury, different strategies to help regeneration of an injured spinal cord are reviewed. In addition, different aspects of designing a biocompatible bridge and its applications and challenges surrounding these issues are also addressed. This knowledge is very important for the development and optimalization of therapies to repair the injured spinal cord.