• Title/Summary/Keyword: 3LL cells

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Anti-tumor Effects of Penfluridol through Dysregulation of Cholesterol Homeostasis

  • Wu, Lu;Liu, Yan-Yang;Li, Zhi-Xi;Zhao, Qian;Wang, Xia;Yu, Yang;Wang, Yu-Yi;Wang, Yi-Qin;Luo, Feng
    • Asian Pacific Journal of Cancer Prevention
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    • v.15 no.1
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    • pp.489-494
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    • 2014
  • Background: Psychiatric patients appear to be at lower risk of cancer. Some antipsychotic drugs might have inhibitory effects on tumor growth, including penfluridol, a strong agent. To test this, we conducted a study to determine whether penfluridol exerts cytotoxic effects on tumor cells and, if so, to explore its anti-tumor mechanisms. Methods: Growth inhibition of mouse cancer cell lines by penfluridol was determined using the 3-(4, 5-dimethylthiazol-2-yl)-2, 5-diphenyltetrazolium bromide (MTT) assay. Cytotoxic activity was determined by clonogenic cell survival and trypan blue assays. Animal tumor models of these cancer cells were established and to evaluate penfluridol for its anti-tumor efficacy in vivo. Unesterified cholesterol in cancer cells was examined by filipin staining. Serum total cholesterol and tumor total cholesterol were detected using the cholesterol oxidase/p-aminophenazone (CHOD-PAP) method. Results: Penfluridol inhibited the proliferation of B16 melanoma (B16/F10), LL/2 lung carcinoma (LL/2), CT26 colon carcinoma (CT26) and 4T1 breast cancer (4T1) cells in vitro. In vivo penfluridol was particularly effective at inhibiting LL/2 lung tumor growth, and obviously prolonged the survival time of mice bearing LL/2 lung tumors implanted subcutaneously. Accumulated unesterified cholesterol was found in all of the cancer cells treated with penfluridol, and this effect was most evident in LL/2, 4T1 and CT26 cells. No significant difference in serum cholesterol levels was found between the normal saline-treated mice and the penfluridol-treated mice. However, a dose-dependent decrease of total cholesterol in tumor tissues was observed in penfluridol-treated mice, which was most evident in B16/F10-, LL/2-, and 4T1-tumor-bearing mice. Conclusion: Our results suggested that penfluridol is not only cytotoxic to cancer cells in vitro but can also inhibit tumor growth in vivo. Dysregulation of cholesterol homeostasis by penfluridol may be involved in its anti-tumor mechanisms.

The effect of TakliSodoksan extract on anti-tumor action and immune-function (托裡消毒散이 抗腫瘍 및 免疫作用에 미치는 效果)

  • Choi, Woong;Choi, Jung-hwa
    • The Journal of Korean Medicine Ophthalmology and Otolaryngology and Dermatology
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    • v.12 no.1
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    • pp.79-98
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    • 1999
  • The purpose of this Study was to investigate effect of TakliSodokSan(TSS) on the anti-tumor, immunocytes and nitric oxide(NO) production from mice peritoneal macrophages. This Study estimated the proliferation of L1210 cell lines, A431 cell lines, Hep-G2 cell lines, K562 cell lines, 3T3 cell lines, mouse thymocytes and mouse splenocytes and NO production from pcritoneal macrophages in vitro, and estimated the proliferation of L1210 cells, thymocytes and splenocytcs, NO production from peritoneal macrophages and body weight in L1210 cells-transplanted mice in vivo. The results were obtained as follows; 1. TSS inhibited significantly the proliferation of L1210, A431, Hep-G2, K562 cell lines in vitro. 2. TSS accelerated the proliferation of mice thymocytes and splenocytes in vitro. 3. TSS was not increased the nitric oxide production from mice peritoneal macrophages in vitro. 4. TSS inhibited significantly the proliferation of L1210 cells in Ll210 cells∼transplanted mice. 5. TSS accelerated the proliferation of mice thymocytes and splenocytes In L1210 cells-transplanted mice. 6. TSS was increased significantly the nitric oxide production from mice peritoneal macrophages in L1210 cells-transplanted mice. 7. TSS was increased the body weight as comparing with control group in Ll210 cells-transplanted mice.

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Influence of Hwanhonsan Extract against Chemically Induced and Xenografted Mice Tumor (환혼산(還魂散)이 실험적(實驗的)으로 유발(誘發)한 종양(腫瘍)에 미치는 영향(影響))

  • Song, Hyo-Won;Ryu, Do-Gon;Cho, Dong-Ki;Um, Sang-Sub;Kang, Sung-Do;Go, Jeoin-Soo;Sung, Yeun-Kyung;Yun, Young-Gap;Cho, Nam-Su;Lee, Chun-Woo;Kang, Soon-Soo
    • Journal of Oriental Physiology
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    • v.14 no.2 s.20
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    • pp.229-237
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    • 1999
  • Hwanhonsan has been used for curing tumor as a Oriental medicine without any experimental evidence to support the rational basis for their clinical use. This experiment was carried out to evaluate the possible therapeutic or antitumoral effects of Hwanhonsan extract against cancer, and to study some mechanisms responsible for its effect. Some kind of tumors were induced by the typical application of 3-methylcholanthrene(MCA) or by the implantation of malignant tumor cells such as leukemia cells(3LL cells) or sarcoma cells(S180 cells) and FasII cells. Treatment of the Hwanhonsan extract(daily 1 mg/mouse, i.p.) was continued for 7 days prior to tumor induction and after that the treatment was lasted for 20 hrs. Against squamous cell carcinoma induced by MCA, Hwanhonsan decreased. not only the frequency of tumor production but also the number and weight of tumors per tumor bearing mice(TBM). Hwanhonsan also significantly suppressed the development of 3LL cells and S180 cells implanted tumors by frequency and their size, and some developed tumors were regressed by the continuous treatment of Hwanhonsan extract into TBM. However, when tumor was induced by FsaII cells implantation, the growth of implanted cells in mice was delayed by the water extract of Hwanhonsan until 7 days and then rapid growth ensued. In vitro treatment of Hwanhonsan extract had no inhibitory effect on the tumor induced by some kind of cell lines such as A431 cells strain but it significantly inhibited the proliferation of 3LL cells, S180 cells. These results suggested that Hwanhonsan extract exhibited a significant prophylactic benefits against tumors and its antitumor activity was manifested depending on the type of tumor cells.

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Differentiation of the Fetal Rat Pulmonary Epithelial Cells in Organotypic Culture (기관형 배양에서 흰쥐 태자 폐상피세포의 분화)

  • 홍혜남;조운복
    • The Korean Journal of Zoology
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    • v.35 no.3
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    • pp.295-307
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    • 1992
  • In order to study the differentiation of the epithelial cells during the development of fetal rat lung tissue, histological changeB in organotypic culture and in vivo were examined. Light microscopy and scanning electron microscopy were used to analvre the histological change in rat lung from the 15th nary of gestation to the 111th nary after birth. In organotypic culture system, the pulmonary epithelial cell differentiation was studied by scanning electron microscopy. The results obtained from this study were as follows. 1. During deveiopment of lung, the glandular stage lasted from the Isth day to the lsth naut of gestation; the canalicular stage from the 17th nay to the 19th naut of gestation; the saccuiar stage from 20th nary to the birth. Alveolar stage was observed at the 3rd nary of postnatal rat lung. 2. In organotvpic culture of fetal rat lung cells organized alveolar-like structures resembling those of in uiuo state were observed on the gelatin matrix. In contrast with in vivo state, fetal lung cells formed group of type ll pneumocytes predominently along the contours of the matrix. These cells have large apical surface, short microvilli and secreted materials which may be sunactant. These results suggested that an orsanotypic culture retaining epithelial- -mesenchvmal relationships is appropriate culture model to study the pulmonary epithelial cell (especially type ll pneumocvte) differentation.

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Study on Effect of Takrisodokyeum Extract on Antitumoral Activity and Immune Response (탁리소독음(托裏消毒飮)의 항종양(抗腫瘍) 효과(效果) 및 면역조절반응(免疫調節反應)에 관(關)한 연구(硏究))

  • Yang Ki-Ho
    • Herbal Formula Science
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    • v.5 no.1
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    • pp.147-168
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    • 1997
  • Tish study was carried out to evaluate the possible therapeutic or antitumoral effects of Takrisodokyeum extract against tumor, and immunomodulatory effect. Some kinds of tumor were induced by the typical application of 3-methylcholanthrene (MCA) or by the implantation(s.c) of malignant tumor cells such as leukemia cells(3LL cells) or sarcoma cells(S-I80 and Fas II cells). Treatment of the Takrisodokyeum water-extract(daily 1mg mouse, i.p.) was continued for 7 days prior to tumor induction and after that the treatment was lasted for 15 days. Against squamous cell carcinoma induced by MCA, Takrisodokyeum decreased not only the frequency of tumor production but also the number and the weight of tumors per tumor bearing mice (TBM). Takrisodokyeum also significantly suppressed the development of 3LLcell and S-180 cell by frequency and their size, and some developed tumors were regressed by the continuous treatment of Takrisodokyeum extract into TBM. However, when tumor was induced by FsaII cell-implantation, the growth of implanted cells in mice was delayed by the water extract of Takrisodokyeum until day 7 and then rapid growth ensued. In vitro, treatment of Takrisodokyeum extract had no effect on the growth of some kind of cell lines such as FsaII, A-131 strain but significantly inhibited the proliferation of 3LL, S-180 cells. Takrisodokyeum also stimulated the migrative ability of leucocyte, the MIF and IL 2-production of T lymphocytes, but not IL 6 production of B cells. Takrisodokyeum enhanced Arthus reaction and DTH to sheep erythrocytes, and NK cells activities. These results demonstrated that Takrisodokyeum extract different results according to the type of tumor cells. And these results also suggested that antitumor effect of Takrisodokyeum might be chiefly due to nonspecific enhancement of NK cell activities and cell-mediated immune responses.

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Modulation of adipogenesis and lipolysis by green tea in 3T3- Ll adipocytes

  • Kim, J.H.;Kim, Y.K.;Lee, J.C.;Ahn, S.M.;Park, J.E.;Lee, .B.G.;Chang, I.S.
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 2003.11a
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    • pp.111-111
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    • 2003
  • Green tea have been widely reported as functional foods because of their various bioactivities. In the present study, we used 3T3-Ll cells model of white adipocytes to clarify whether green tea and its main pharmaceutically effective compounds (EGCG, caffeine and theanine) prevent obesity. Cellular viability, glycerol-3-phosphate dehydrogenase activity, glycerol release and HSL mRNA levels were checked. Glycerol release into the medium was significantly increased by the cells treated with green tea extract. Glycerol release into the medium was significantly increased by the cells treated with green tea extract. Caffeine and theanine from green tea showed some level of lipolytic activity, and glycerol-3-phosphate dehydrogenase activity was remarkably decreased by EGCG. These results suggest that green tea has anti-obesity effect through inhibition of adipogenesis and stimulation of lipolysis. Catechins and theanine of green tea might be the factors responsible for the modulation of lipid metabolism and adipocyte differentiation.

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Antiproliferative and Antioxidative Activities of Methanol Extracts of Echinacea angustifolia (Echinacea angustifolia 메탄올 추출물의 암세포 증식억제 및 항산화 효과)

  • Lee Joon-Kyoung;Koo Seung-Ja
    • Korean journal of food and cookery science
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    • v.21 no.3 s.87
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    • pp.311-318
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    • 2005
  • Echinacea, also blown as the purple coneflower, is a herbal medicine that has been used for centuries, customarily as a treatment for the common cold, coughs, bronchitis, upper respiratory infections, and some inflammatory conditions. We investigated the effects of methanol extracts of Echinacea angustifolia on the cytotoxicity against cancer cells $(HepG_2,\;3LL,\;HL60,\;L1210)$ and antioxidative activity. From the test results, each part of Echinaceashowed a cytotoxic effect against the cancer cell lines, and this cytotoxic effect increased with increasing sample concentration. At 1.0 mg/mL concentration the relative cytotoxic activities of the flower bud, leaf, stern and root parts were $90.5\%,\;52.7\%,\;37.1\%\;and\;19.2\%$, respectively, in $HepG_2$ cells, and $75.5\%,\;93.3\%,\;81.2\%,\;and\;75.1\%$ respectively, in HL60 cells, as evaluated by MTT assay. $IC_{50}(50\%\;inhibitory\;concentration)$ of the methanol extracts of the Echinacea flower bud was 0.214 mg/mL on /$HepG_2$ cells, and that of the Echinacea leaf and root was 0.166 mg/mL and 0.210 mg/mL, respectively, on HL60 cells. After /$HepG_2$ cells were incubated for 6 days at $37^{\circ}C$ with various concentrations of each part, the cell number increased while the inhibition rate on the /$HepG_2$ cell growth decreased. The antioxidative activities of the flower bud, leaf, stem and root parts were $59.0\%$ (0.75 mg/mL), $80.76\%$ (0.5 mg/mL), $95.5\%$ (0.25mg/mL) and $98.15\%$ (0.25 mg/mL), respectively, as evaluated by electron donating ability. These results indicated that Echinacea angustifolia has strong anticancer and antioxidative effects in vitro.

The anti-tumor effect of combined treatment with arsenic trioxide and interferone-α on transplanted murine Lewis lung carcinoma

  • Seo, Deug-Log;Yang, Je-Hoon;Won, Chung-Kil;Kim, Myeong-Ok;Lee, Jong-Hwan;Kwark, Soo-Dong;Koh, Phil-Ok
    • Korean Journal of Veterinary Research
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    • v.45 no.1
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    • pp.17-23
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    • 2005
  • In the present study, we expected the anti-tumor effect by combined treatment of arsenic trioxide and interferon (IFN)-${\alpha}$ on murine Lewis lung carcinoma (LL2) cells through in vivo study. As a experimental model, LL2 cells ($1{\times}10^{6}$/mouse) were injected subcutaneously into the back region of mice. When the tumor volume reached $100mm^3$, mice were treated with 1 mg/kg arsenic trioxide, 50000 IU IFN-${\alpha}$, or arsenic trioxide and IFN-${\alpha}$. The development of tumor cells was significantly inhibited by combined treatment with arsenic trioxide and IFN-${\alpha}$. In arsenic trioxide and IFN-${\alpha}$ treated group, apoptotic index was reached a peak valve at 48 hr after the treatment and it was restored to approximately the control level at 8 days. Also, positive signals of Bax and Bad were increased at 48 to 96 hr and decreased at 8 day. Whereas, positive cells of Bcl-2 were steadily decreased at 12 to 48 hr and restored to the background level at 8 days. Our data showed that immunoreactivity of Bcl-2 was decreased at 12 to 48 hr, while positive signals of Bax and Bad were increased in accordance with apoptotic index at these times. In conclusion, our results suggest that the combined treatment with arsenic trioxide and IFN-${\alpha}$ significantly inhibited the growth of LL2 tumor cells and induced apoptosis through the up and down-regulation of Bcl-2 gene family.

Effects of Gunleetang Gagambang Extract on Antitumoral Immunological Response and the Side Effect Induced by Antitumoral Agents (군리탕가감방(君理湯加減方)이 항종양(抗腫瘍) 면역반응(免疫反應)과 항암제로 유발(誘發)한 부작용(副作用)에 미치는 영향(影響))

  • Yui, Guyng-Tea;Moon, Suk-Jae;Moon, Goo;Won, Jin-Hee
    • THE JOURNAL OF KOREAN ORIENTAL ONCOLOGY
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    • v.4 no.1
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    • pp.71-87
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    • 1998
  • Even though appropriate immune response is necessary for the survival of the individual, excessive or insufficient immune Response might cause autoimmune or allergic disease. So the immune response must be controlled to the degree that is beneficial for the well being of the individual. This study was undertaken to know the effects of Gunleetang Gagambang on the immune system of the mouse. Gunleetang Gagambang has been used for cure of tumor as a traditional medicine without any experimental evidence to support the rational basis for its clinical use. This study was carried out to evaluate the possible therapeutic or antitumoral effects of Gunleetang Gagambang extract against tumor, and to carry out some mechanisms responsible for its effect. Some kinds of tumor were induced by the typical application of 3-methylcholanthrene(MCA) or by the implantation(s.c) of malignant tumor cells such as leukemia cells(3LL cells) or sarcoma cells(S180 cells). Treatment of the Gunleetang Gagambang on water-extract(dailly 1mg/mouse, i. p.) was continued for 7 days prior to tumor induction and after that the treatment was lasted for 20 days. Against squamous cell carcinoma induced by MCA, Gunleetang Gagambang decreased not only the frequency of tumor production but also the number and the weight of tumors per tumor bearing mice(TBM). Gunleetang Gagambang on also significantly suppressed the development of 3LL cell and S180 cell-implanted tumors in occurrence-frequency and their size. and some developed tumors were regressed by the continuous treatment of Gunleetang Gagambang extract into TBM. In vitro, treatment of Gunleetang Gagambang extract had no effect on the growth of some kinds of cell line such as FsaII, A431 strain but significantly inhibited the proliferation of 3LL, S180 cells and augmented the DNA synthesis of mitogen-activated lymphocytes. Gunleetang Gagambang also stimulated the migrative ability of leukocyte, the MIF and IL-2 production of T lymphocytes, but not IL 6 production of B cells. Gunleetang Gagambang administration to mice enhanced NK cells activities. These results demonstrated that Gunleetang Gagambang extract exhibited a significant prophylactic benefits against tumors and its antitumor activity was manifested depending on the type of tumor cells. And these results also suggested that effect of Gunleetang Gagambang might be chiefly due to nonspecitie enhancement of NK cell activities and cell-mediated immune responses.

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The Effects of Bujeong hangamtang on antitumor Immune Response (부정항암탕(扶正抗癌湯)이 항종양(抗腫瘍) 면역반응(免疫反應)에 미치는 영향(影響))

  • Im, Mi-Yang;Moon, Sook-Jea;Moon, Gu;Won, Jin-Hee;Jeon, Byung-Hoon
    • The Journal of Korean Medicine
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    • v.19 no.1
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    • pp.234-250
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    • 1998
  • Bujeonghangamtang(扶正抗癌湯) has been used for cure of tumor as a traditional medicine without any experimental evidence to support the rational basis for its clinical use. This study was carroed out to evaluate the possible therapeutic or antitumoral effects of Bujeonghangamtang extract against tumor, and to carry out some mechanisms responsible for its effect. Some kinds of tumor were induced by .the typical application of 3-methylcholanthrene (MCA) or by the implantation(s.c) of malignant tumor cells such as leukemia cells(3LL cells) or sarcoma cells(Sl80 cells). Treatment of the Bujeonghangamtang water-extract (dailly 1mg/mouse, i. p.) was continued for 7 days prior to tumor induction and after that the treatment was lasted for 20 days. Against squamous cell carcinoma induced by MCA, Bujeonghangamtang decreased not only the frequency of tumor production but also the number and the weight of tumors per tumor bearing mice (TBM). Bujeongmngamtang also significantly suppressed the development of 3LL cell and S180 cell-implanted tumors in occurence-frequency and their size, and some developed tumors were regressed by the continuous treatment of Bujeonghangamtang extract into TBM. In vitro, treatment of Bujeonghangamtang extract had no effect on the growth of some kinds of cell line such as FsaII, A431 strain but significantly inhibited the proliferation of 3LL, S180 cells and augmented the DNA synthesis of mitogen-activated lymphocytes. Bujeonghangamtang also stimulated the migrative ability of leukocyte, the MIF and IL-2 production of T lymphocytes, but not IL 6 production of B cells. Bujeonghangamtang-administration to mice enhanced NK cells attivities. These results demonstrated that Bujeonghangamtang extract exhibited a significant prophylactic benefits against tumors and its antitumor activity was manifested depending on the type of tumor cells. And these results also suggested that effect of Bujeonghangamtang might be chiefly due to nonspecific enhancement of NK cell activities and cell-mediated immune responses.

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