• Title/Summary/Keyword: mouse tumor

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Application of Apoptogenic Pretreatment to Enhance Anti-tumor Immunity of Granulocyte-Macrophage Colony Stimulating Factor (GM-CSF)-secreting CT26 Tumor Cells

  • Jun, Do-Youn;Jaffee, Elizabeth M;Kim, Young-Ho
    • IMMUNE NETWORK
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    • v.5 no.2
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    • pp.110-116
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    • 2005
  • Background: As an attempt to develop a strategy to improve the protective immune response to GM-CSF-secreting CT26 (GM-CSF/CT26) tumor vaccine, we have investigated whether the apoptogenic treatment of GM-CSF/CT26 prior to vaccination enhances the induction of anti-tumor immune response in mouse model. Methods: A carcinogeninduced mouse colorectal tumor, CT26 was transfected with GM-CSF gene using a retroviral vector to generate GM-CSF-secreting CT26 (CT26/GM-CSF). The CT26/GM-CSF was treated with ${\gamma}$-irradiation or mitomycin C to induce apoptosis and vaccinated into BALB/c mice. After 7 days, the mice were injected with a lethal dose of challenge live CT26 cells to examine the protective effect of tumor vaccination in vivo. Results: Although both apoptotic and necrotic CT26/GM-CSF vaccines were able to enhance anti-tumor immune response, apoptotic CT26/GM-CSF induced by pretreatment with ${\gamma}$-irradiation (50,000 rads) was the most potent in generating the anti-tumor immunity, and thus 100% of mice vaccinated with the apoptotic cells remained tumor free for more than 60 days after tumor challenge. Conclusion: Apoptogenic pretreatment of GM-CSF-secreting CT26 tumor vaccine by ${\gamma}$-irradiation (50,000 rads) resulted in a significant enhancement in inducing the protective anti-tumor immunity. A rapid induction of apoptosis of CT26/GM-CSF tumor vaccine at the vaccine site might be critical for the enhancement in anti-tumor immune response to tumor vaccine.

Effects of Ginseng Saponin Fraction and Cyclophosphamide on the Tumoricidal Activity of Mouse Macrophage and the Antitumor Effect (생쥐의 대식세포 종양치사활성과 항암효과에 미치는 인삼 Saponin 분획물과 Cyclophosphamide의 영향)

  • Jeon, Hye-Gyeong;Kim, Se-Chang;Jeong, No-Pal
    • Journal of Ginseng Research
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    • v.15 no.2
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    • pp.99-105
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    • 1991
  • This experiment was performed to investigate the effects of ginseng saponin fraction and cyclophosphamide (CY) on the tumor development, the antitumor effect and the tumoricidal activity of mouse macrophage. When mice were treated with saponin or CY following inoculation with Sarcoma 180, tumor development was inhibited and survival ratio increased, and a combination of both treatments further inhibited the tumor development. Tumoricidal activity of macrophage was effectively increased at 10-7% concentration of CY and it was further increased when macrophage was cotreated with saponin and CY. Tumoricidal activity of macrophage was greatest at the third day after inoculating tumor cell. Both saponin and CY increased the chemiluminescence of macrophage, but CY had no effect on releasing TNF, unlike saponin.

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Inhibition of DMBA-Induced Mouse Epidermal Carcinogenesis by Astaxanthin-Containing Egg Yolks (DMBA로 유발한 Mouse 피부암에 대한 Astaxanthin이 함유된 난황의 항암효과)

  • Lee, Sang-Ho;Park, Cheol-U;Lee, Yeong-Chun;Choe, Ui-Seong;Kim, Mu-Nam;Ha, Yeong-Rae
    • Environmental Mutagens and Carcinogens
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    • v.18 no.1
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    • pp.22-25
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    • 1998
  • Anticarcinogenic activity of astaxanthin-containing egg yolks (designate AEY) was investigated for 7,12-dimethylbenz[a]anthracene (DMBA)-induced two stage mouse epidermal carcinogenesis. Female ICR mouse (6-7 weeks of age) were house in a humidity-and-temperature-controlled facility and subjected to feed and water ad libitum. AEY (10 mg/0.2 ml acetone) was painted on the back of mice 7 days, 3 days and 5 min before DMBA treatment (50 nmole/0.2 ml acetone). One week later after DMBA treatment, 6 ${\mu}g$ tetradecanoyl 12-phorbol 13-O-acetate (TPA) dissolved in 0.2 ml acetone was applied on the mouse twice weekly over a period of 22 weeks. No sample was given to control mice. Control egg yolk (CEY) and astaxanthin-containing oil (designate AO) from Phaffia rhodozyma were used as positive controls. Mouse treated with AEY exhibited 10 tumors per mouse whereas control mouse exhibited 15 tumors per mouse, the fact that 33% reduction of tumor per mouse by AEY treatment. Tumor incidence was also reduced to 15% by AEY treatment when compared to that of control group. Such effects were also seen in CEY and AO treatment groups, but leaser extent. AO gave reduction of food intake and body weights relative to those of AEY and CEY, indicating toxicity of AO. These results suggest that AEY exhibits anticarcinogenic activity for DMBA-induced mouse epidermal carcinogenesis.

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Inhibitory Effect of D-pinitol on Both Growth and Recurrence of Breast Tumor from MDA-MB-231 Cancer Cells (D-Pinitol의 유방암 증식 및 재발 억제 효능)

  • Kim, Yoon-Seob;Park, Ji-Sung;Kim, Minji;Hwang, Bang Yeon;Lee, Chong-Kil;Song, Sukgil
    • Korean Journal of Pharmacognosy
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    • v.45 no.2
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    • pp.174-180
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    • 2014
  • D-Pinitol, an anti-diabetic substance, is a naturally occurring compound found in legumes. In this study, we investigated the inhibitory effect of D-pinitol on growth and recurrence of breast cancer. When D-pinitol was treated on MDA-MB-231 or MCF-7 breast cancer cells, it was observed that the viability of the two cancer cell lines was reduced in MTT assay. In order to examine the effect on the growth of breast tumor, mouse xenograft assay was carried out. On day 0, nine millions cells of MDA-MB-231 were injected subcutaneously into nude mouse and D-pinitol was administered orally at the dose of 500 mg/kg or 1000 mg/kg body weight for consecutive 45 days. Tumor size was reduced in dose-dependent manner upto 95.4% in 1000 mpk-treated group, compared with the non-treated control group. When D-pinitol was co-administrated with $4{\mu}g$ of doxorubicin, recurrence of breast tumor was delayed by two weeks, compared with the mouse group of doxorubicin monotherapy. Consistent with this data, it was observed that the population of cancer stem cells (CSCs), responsible for recurrence of cancer, within tumor mass was significantly reduced. Taken together, D-pinitol inhibits the growth of breast cancer and relapse of the tumor by suppressing the proliferation of CSCs.

Anti-tumor Efficacy of a Hepatocellular Carcinoma Vaccine Based on Dendritic Cells Combined with Tumor-derived Autophagosomes in Murine Models

  • Su, Shu;Zhou, Hao;Xue, Meng;Liu, Jing-Yu;Ding, Lei;Cao, Meng;Zhou, Zhen-Xian;Hu, Hong-Min;Wang, Li-Xin
    • Asian Pacific Journal of Cancer Prevention
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    • v.14 no.5
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    • pp.3109-3116
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    • 2013
  • The majority of hepatocellular carcinoma (HCC) patients have a poor prognosis with current therapies, and new approaches are urgently needed. We have developed a novel therapeutic cancer vaccine platform based on tumor cell derived autophagosomes (DRibbles) for cancer immunotherapy. We here evaluated the effectiveness of DRibbles-pulsed dendritic cell (DC) immunization to induce anti-tumor immunity in BALB/c mouse HCC and humanized HCC mouse models generated by transplantation of human HCC cells (HepG2) into BALB/c-nu mice. DRibbles were enriched from H22 or BNL cells, BALB/c-derived HCC cell lines, by inducing autophagy and blocking protein degradation. DRibbles-pulsed DC immunization induced a specific T cell response against HCC and resulted in significant inhibition of tumor growth compared to mice treated with DCs alone. Antitumor efficacy of the DCs-DRibbles vaccine was also demonstrated in a humanized HCC mouse model. The results indicated that HCC/DRibbles-pulsed DCs immunotherapy might be useful for suppressing the growth of residual tumors after primary therapy of human HCC.

In Vivo Antitumor Efficacy of Cw252053, A Folate-based Thymidylate Synthase Inhibitor

  • Oh, Se-Woong;Ha, Jong-Ryul;Baek, Du-Jong
    • Archives of Pharmacal Research
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    • v.24 no.4
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    • pp.323-326
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    • 2001
  • Previous studies have demonstrated that CW252053, a quinazoline antifolate, exhibits potent inhibitory activity against thymidylate synthase (TS) as well as cytotoxic activity against tumor cell lines in vitro. In this studys, we evaluated the in vivo antitumor efficacy of CW252053 in the mouse tumor model. Female B6D2F$_1$ mice were injected with LY3.7. 2C TK-/- (thymidine kinase deficient mouse Iymphoma) cells into the gastrocnemius muscle. Then, CW252053 was administered twice daily by intraperitoneal injection for 10 days, and tumor growth was monitored daily by leg diameter measurement. All animals in the vehicle, 5-FU, and low dose (30mgmg/kg CW252053 treated groups died between days 12 and 23 because of the tumor burden. In contrast, dosing with 60 mg/kg of CW252053 produced a cure rat against tumor growth of 37.5% and a survival rate of 50%. Even more significantly, a higher dose of CW252053 (120 mg/kg) elicited both a 100% cure rate and a 100% survival rate at the termination of the study, confirming that this compound has very potent in vivo antitumor activity against tumor growth. During the experimental period of this study no signs of toxicity were observed even at the high CW252053 dosage rate of 120 mg/kg.

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Effect of Dietary Phenols on Body Tissue Oxidative State and Cancer Prevention (식이내 페놀류들이 생체조직의 산화상태와 항암작용에 미치는 영향)

  • 김갑순
    • The Korean Journal of Food And Nutrition
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    • v.10 no.1
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    • pp.74-81
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    • 1997
  • In this study, we tried to figure out how phenol effects on cancer prevention, and for this purpose we focused on phenol effects on TBARS and the relationship between TBARS(thiobarbituric acid-reactive substances) and cancer. A protocol using a nutritionally adequate amino acid-based diet and a transgenic mouse model of neurofibromatosis was used to evaluate the effect of dietary phenols on body tissue oxidation and tumor onset. The mice carry the human T-lymphotropic virus type-1 transactivator(texl) gene and spontaneously develop externally visible tumors. Twenty-five male transgenic mice were systematically assigned into five groups, control group, 2 mmol, 4 mmol, 8 mmol catechin/kg diet groups and wine solid group. Mice in control group were without catechin, Mice in wine solid group received red wine 750 mL/kg diet, Mice were examined daily, and the age at which a first tumor appeared was recorded. Transgenic mice consuming catechin and wine solid were older when a first tumor appeared. No tumor was found in one mouse of 4 mmol catechin/kg diet and one mouse of 8 mmol catechin diet group. Levels of TBARS in brain and spleen of 8 mmol catechin group and wine solid group were significantly decreased as compared to the same tissue in control group. TBARS levels in tissues were significantly correlated with tumor onset. Results from this study suggest that dietary phenol effects on cancer prevention through tissue antioxidation in spite of different kinds of phenols.

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Translationally controlled tumor protein (TCTP) downregulates Oct4 expression in mouse pluripotent cells

  • Cheng, Xiang;Li, Junhua;Deng, Jie;Li, Zhenzhen;Meng, Shuyan;Wang, Huayan
    • BMB Reports
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    • v.45 no.1
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    • pp.20-25
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    • 2012
  • The present study aimed to investigate the function of translationally controlled tumor protein (TCTP) in the regulation of Oct4 in mouse embryonic carcinoma P19 cells and mouse J1 embryonic stem (ES) cells. The mRNA level of endogenous TCTP in somatic cells was 2-4 folds higher than that in pluripotent P19 and J1 ES cells. Overexpression of TCTP in mouse pluripotent cells not only reduced the level of Oct4 transcription, but also decreased the pluripotency of stem cells. The N-terminal end of TCTP (amino acids 1-60) played an important role in suppressing the Oct4 promoter. Moreover, overexpression of TCTP in P19 cells suppressed the Oct4 promoter activity in a dose- and a time-dependent manner. In addition, knockdown of TCTP by small interfering RNA increased the expression of Oct4. Our study indicates that TCTP downregulates the Oct4 expression by binding the Sf1 site of Oct4 promoter in mouse pluripotent cells.

Characterization of the CD11c Promoter Which Is Expressed in the Mouse Dendritic Cells (생쥐 수지상세포에서 발현하는 CD11c 프로모터의 규명)

  • Kim, Bon-Gi;Kim, Jung-Sik;Park, Chung-Gyu
    • IMMUNE NETWORK
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    • v.8 no.4
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    • pp.137-142
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    • 2008
  • Background: CD11c, also known as integrin alpha x, is one of the optimum markers of dendritic cells. However, the regulation of the CD11c expression in mouse has not been identified yet. In this study, in order to analyze the regulation of CD11c expression, the promoter of CD11c was cloned and characterized. Methods: To identify the promoter portion, various sizes of what are considered to be CD11c promoter fragments was amplified by polymerase chain reaction (PCR), using mouse genomic DNA as a template. After sequence was obtained, these fragments were transfected into various cell lines including mouse dendritic cell lines such as JAWSII and DC2.4 and L929 as control cell line.. The promoter activity of three promoter fragments was measured and compared by luciferase activity in the transfected cells. Results: Three clones with size of 1kb, 3kb and 6kb were obtained from mouse genomic DNA. Flow cytometry analysis of JAWSII cells revealed that 52% of the cells expressed CD11c, which was confirmed by RT-PCR analysis. On the contrary, L929 and DC 2.4 cells did not express CD11c. The CD11c+ JAWSII cells were enriched from 52% to 90% with cell sorter. The comparative luciferase activity analyisis demonstrated that the region responsible for tissue specific expression was contained within -3 kb and the clone with size of 3 kb particularly showed higher luciferase activity than 6 kb and 1 kb clones. Conclusion: The CD11c promoter region containing the region responsible for tissue specificity was successfully cloned and -3 kb region showed the highest activity.