• 제목/요약/키워드: Tumor control

검색결과 2,010건 처리시간 0.035초

구강 편평상피세포암 동위종양 모델에서 내피세포의 수용체 타이로신 인산화효소에 대한 표적치료 (TARGETING RECEPTOR TYROSINE KINASE ON ENDOTHELIAL CELLS IN AN ORTHOTOPIC TUMOR MODEL OF ORAL SQUAMOUS CELL CARCINORMA)

  • 박영욱;김소희
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제35권2호
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    • pp.55-65
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    • 2009
  • Purpose: We determined the therapeutic effects of blockade of epidermal growth factor(EGF) and vascular endothelial growth factor(VEGF) receptor tyrosine kinases on the growth of oral squamous cell carcinoma(OSCC) xenografted in athymic nude mice. Experimental Design: We investigated the in vivo antitumor effects of a tyrosine kinase inhibitor for EGFR and VEGFR-2, AEE788 in a mouth floor(orthotopic) tumor model. Nude mice with orthotopic tumors were randomized to receive AEE788, paclitaxel, a combination of AEE788 and paclitaxel, or control. Antitumor mechanisms of AEE788 were determined by immunohistochemical/immunofluorescent and apoptosis assays. Results: Tumors of mice treated with AEE788 demonstrated down-regulation of phosphorylated EGFR, phosphorylated VEGFR and their downstream mediators(pMAPK and pAkt), decreased proliferative index, decreased microvessel density(MVD). As a result, growth of the primary tumor and nodal metastatic potentials were inhibited by AEE788. Conclusion: These data show that EGFR and VEGFR can be molecular targets for the treatment of OSCC.

Proteus vulgaris RH-90에서 추출하여 감마선 조사시킨 Lipopolysaccharide(LPS)의 항암 및 면역활성에 미치는 영향 (Antitumor and Immunological Activities of ${\gamma}$-ray Irradiated Lipopolysaccharide Extracted from proteus vulgaris RH-90)

  • 류병호;박우열김희숙박종옥
    • KSBB Journal
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    • 제6권1호
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    • pp.45-54
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    • 1991
  • The aims of this study were investigated the antitumor effects and immunological activities of lipopolysaccharides (LPS) extracted from Proteus vulgaris RH-90 toward sarcoma-180 cells. LPS extracted from Proteus vulgris RH-90 was irradiated with gamma ray for detoxification. The tumor incidence of sarcoma-180 occurs all group which injected with gamma ray irradiated LPS and tumor of sarcoma-180 was necrotized with breeding in the injected group of l0$\mu\textrm{g}$ LPS. The inhibition ratio of tumor growth showed at the highest level of 60.88% when 5$\mu\textrm{g}$ gamma ray irradiated LPS was injected into mice. The prolongation ratio of life showed 20.72% when injected into mice with gamma ray irradiated LPS of 5$\mu\textrm{g}$. In the effect of immunological activity, the number of circurating leucocyte and peritoneal exudate cells were increased significantly in the treatment group than that control group, and dose-dependent response indicated by the increase of weights of immunorgans which revealed the improvement of immunity. The effect of macrophage on phagocytes, there were not found the differences between phagocytic and corrected phagocytic index.

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Toxicity and Carcinogenicity of Dichlorodiphenyltrichloroethane (DDT)

  • Harada, Takanori;Takeda, Makio;Kojima, Sayuri;Tomiyama, Naruto
    • Toxicological Research
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    • 제32권1호
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    • pp.21-33
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    • 2016
  • Dichlorodiphenyltrichloroethane (DDT) is still used in certain areas of tropics and subtropics to control malaria and other insect-transmitted diseases. DDT and its metabolites have been extensively studied for their toxicity and carcinogenicity in animals and humans and shown to have an endocrine disrupting potential affecting reproductive system although the effects may vary among animal species in correlation with exposure levels. Epidemiologic studies revealed either positive or negative associations between exposure to DDT and tumor development, but there has been no clear evidence that DDT causes cancer in humans. In experimental animals, tumor induction by DDT has been shown in the liver, lung, and adrenals. The mechanisms of hepatic tumor development by DDT have been studied in rats and mice. DDT is known as a non-genotoxic hepatocarcinogen and has been shown to induce microsomal enzymes through activation of constitutive androstane receptor (CAR) and to inhibit gap junctional intercellular communication (GJIC) in the rodent liver. The results from our previously conducted 4-week and 2-year feeding studies of p,p'-DDT in F344 rats indicate that DDT may induce hepatocellular eosinophilic foci as a result of oxidative DNA damage and leads them to hepatic neoplasia in combination with its mitogenic activity and inhibitory effect on GJIC. Oxidative stress could be a key factor in hepatocarcinogenesis by DDT.

IMAGING IN RADIATION THERAPY

  • Kim Si-Yong;Suh Tae-Suk
    • Nuclear Engineering and Technology
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    • 제38권4호
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    • pp.327-342
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    • 2006
  • Radiation therapy is an important part of cancer treatment in which cancer patients are treated using high-energy radiation such as x-rays, gamma rays, electrons, protons, and neutrons. Currently, about half of all cancer patients receive radiation treatment during their whole cancer care process. The goal of radiation therapy is to deliver the necessary radiation dose to cancer cells while minimizing dose to surrounding normal tissues. Success of radiation therapy highly relies on how accurately 1) identifies the target and 2) aim radiation beam to the target. Both tasks are strongly dependent of imaging technology and many imaging modalities have been applied for radiation therapy such as CT (Computed Tomography), MRI (Magnetic Resonant Image), and PET (Positron Emission Tomogaphy). Recently, many researchers have given significant amount of effort to develop and improve imaging techniques for radiation therapy to enhance the overall quality of patient care. For example, advances in medical imaging technology have initiated the development of the state of the art radiation therapy techniques such as intensity modulated radiation therapy (IMRT), gated radiation therapy, tomotherapy, and image guided radiation therapy (IGRT). Capability of determining the local tumor volume and location of the tumor has been significantly improved by applying single or multi-modality imaging fur static or dynamic target. The use of multi-modality imaging provides a more reliable tumor volume, eventually leading to a better definitive local control. Image registration technique is essential to fuse two different image modalities and has been In significant improvement. Imaging equipments and their common applications that are in active use and/or under development in radiation therapy are reviewed.

흉부질환의 자기공명영상 (Magnetic Resonance Imaging in Thoracic Disease)

  • 송군식
    • Tuberculosis and Respiratory Diseases
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    • 제40권4호
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    • pp.345-352
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    • 1993
  • The role of magnetic resonance(MR) imaging in the evaluation of thoracic disease has been limited Nontheless, MR has inherent properties of better contrast resolution than CT allowing tissue-specific diagnosis. MR has capability of direct imaging in sagittal, coronal, and oblique planes which provide better anatomic information than axial images of CT such as lesions in the pulmonary apex, aorticopulmonary window, peridiaphragmatic region, and subcarinal region. MR is sensitive to blood flow making it an ideal imaging modality for the evaluation of cardiovascular system of the thorax without the need for intravenous contrast media. Technical developments and better control of motion artifacts have resulted in improved image quality, and clinical applications of MR imaging in thoracic diseases have been expanded. Although MR imaging is considered as a problem-solving tool in patients with equivocal CT findings, MR should be used as the primary imaging modality in the following situations: 1) Evaluation of the cardiovascular abnormalities of the thorax 2) Evaluation of the superior sulcus tumors 3) Evaluation of the chest wall invasion or mediastinal invasion by tumor 4) Evaluation of the posterior mediastinal mass, especially neurogenic tumor 5) Differentiation of fibrosis and residual or recurrent tumor, especially in lymphoma 6) Evaluation of brachial plexopathy With technical developments and fast scan capabilities, clinical indications for MR imaging in thorax will increase in the area of pulmonary parenchymal and pulmonary vascular imaging.

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Sarcoma-180 세포를 이용한 in vivo에서 감잎의 항암효과 (Antitumor Effect of Persimmon Leaves in vivo using Sarcoma-180 Cells)

  • 문숙희;김광혁;박건영
    • 한국식품영양과학회지
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    • 제25권5호
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    • pp.865-870
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    • 1996
  • 감잎의 시료 중 항돌연변이 효과와 암세포 증식 억제효과가 컸던 감잎의 헥산, 클로로포름 획분 및 감잎 탄닌의 항암효과를 Sarcoma-180 종양세포를 이용하여 살펴 보았다. Sarcoma-180 종양세포에 대한 시료의 세포 독성작용을 관찰한 후 세포에 큰 영향을 주지 않는 범위내에서 고형암 성장저지 효과 및 수명 연장 효과를 살펴 본 결과 감잎의 헥산 획분이 59.6%로 가장 높은 고형암 성장 저지율을 나타냈으며 수명 연장 효과도 대조군의 경우 17.4일인데 반해 헥산 획분을 투여한 경우 생존일수가 23.6일로 가장 큰 수명 연장 효과가 관찰되었다. 면역 관련 장기 중 하나인 비장의 체중에 대한 중량 변화는 대조군의 경우 0.6%인데 반해 감잎의 헥산 및 클로로포름 획분 그리고 감잎 탄닌의 경우 0.7%, 0.8%, 0.8%로 약간의 증가를 나타내었다.

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마우스에서 Sarcoma-180에 대한 Bifidobacterium adolesentis ATCC-15703의 항암 효과 (Antitumor Activity of Bifidobacterium adolesentis ATCC-15703 against Sarcoma 180 in Mice)

  • 김경태;배형석;백영진;이형환
    • 한국미생물·생명공학회지
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    • 제22권3호
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    • pp.322-328
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    • 1994
  • Antitumor and immunoadjuvant activities of Bifidobacterium adolesentis ATCC-15703 were investigated against the ascites and solid forms of tumor induced by Sarcoma 180(S-180) in ICR mice. When 100 $\mu$g of the bacterium was intraperitonealy administered in the mice, the survival rate(T/C %) of the mice was 132% for 50 days after the inoculation of S-180, however the increment of their body weights was suppressed. When the 100 $\mu$g was subcutaneously adminis- tratered at the right grion, the suppresion rate of the tumor growth on the 21st day after inoculation of S-180 were 62.3%. Complete supression of the tumor growth was observed from 2 out of 8 test mice. The bacterium itself appeared to have noncytotoxic substance against the S-180 in vitro. The bacteria] administration markedly enhanced the activity of peritoneal macrophages. The num- ber of peritoneal macrophages at one day after the administration of the 100 $\mu$g increased about 8 times as much as that of the control, and the highest activity of acid phosphatase appeared at 2 days.

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Curcumin-Induced Autophagy Augments Its Antitumor Effect against A172 Human Glioblastoma Cells

  • Lee, Jong-Eun;Yoon, Sung Sik;Moon, Eun-Yi
    • Biomolecules & Therapeutics
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    • 제27권5호
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    • pp.484-491
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    • 2019
  • Glioblastoma is the most aggressive common brain tumor in adults. Curcumin, from Curcuma longa, is an effective antitumor agent. Although the same proteins control both autophagy and cell death, the molecular connections between them are complicated and autophagy may promote or inhibit cell death. We investigated whether curcumin affects autophagy, which regulates curcumin-mediated tumor cell death in A172 human glioblastoma cells. When A172 cells were incubated with $10{\mu}M$ curcumin, autophagy increased in a time-dependent manner. Curcumin-induced cell death was reduced by co-incubation with the autophagy inhibitors 3-methyladenine (3-MA), hydroxychloroquine (HCQ), and LY294002. Curcumin-induced cell death was also inhibited by co-incubation with rapamycin, an autophagy inducer. When cells were incubated under serum-deprived medium, LC3-II amount was increased but the basal level of cell viability was reduced, leading to the inhibition of curcumin-induced cell death. Cell death was decreased by inhibiting curcumin-induced autophagy using small interference RNA (siRNA) of Atg5 or Beclin1. Therefore, curcumin-mediated tumor cell death is promoted by curcumin-induced autophagy, but not by an increase in the basal level of autophagy in rapamycin-treated or serum-deprived conditions. This suggests that the antitumor effects of curcumin are influenced differently by curcumin-induced autophagy and the prerequisite basal level of autophagy in cancer cells.

Inhibition of ClC-5 suppresses proliferation and induces apoptosis in cholangiocarcinoma cells through the Wnt/β-catenin signaling pathway

  • Shi, Zhe;Zhou, Liyuan;Zhou, Yan;Jia, Xiaoyan;Yu, Xiangjun;An, Xiaohong;Han, Yanzhen
    • BMB Reports
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    • 제55권6호
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    • pp.299-304
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    • 2022
  • Chloride channel-5 (ClC-5), an important branch of the ClC family, is involved in the regulation of the proliferation and cell-fate of a variety of cells, including tumor cells. However, its function in cholangiocarcinoma (CCA) cells remains enigmatic. Here, we discovered that ClC-5 was up-regulated in CCA tissues and CCA cell lines, while ClC-5 silencing inhibited CCA cell proliferation and induced apoptosis. Further mechanism studies revealed that ClC-5 inhibition could inhibit Wnt/β-catenin signaling activity and further activate the mitochondria apoptotic pathway in CCA cells. Furthermore, rescuing Wnt/β-catenin signaling activation eliminated the anti-tumor function of ClC-5 knockdown. Together, our research findings illustrated that ClC-5 inhibition plays an anti-tumor role in CCA cells via inhibiting the activity of the Wnt/β-catenin pathway, which in turn activates the mitochondrial apoptotic pathway.

누드마우스에 이식된 인체대장암에서 I-131표지 항태아성암항원 단일클론항체를 이용한 방사면역치료법 : 치료성적에 관계되는 인자분석 (Radioimmunotherapy of Nude Mice Bearing Human Colon Carcinoma with I-131 Labeled Anti-carcinoembryonic Antigen Monoclonal Antibody)

  • 김병태;이경한;김상은;최용;지대윤;정준기;이명철;고창순;정홍근
    • 대한핵의학회지
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    • 제29권3호
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    • pp.332-342
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    • 1995
  • This study was designed to evaluate the effects of various factors on the therapeutic effect of the I-131 labeled anti-carcinoembryonic antigen monoclonal antibody(anti-CEA antibody). Tetrazolium-based colorimetric assay (MTT) was used to compare in vitro cytotoxicity of 3 Korean colon cancer cell lines (SNU-C2A, SNU-C4, SNU-C5) for selection of proper 2 cell lines in this study. The changes of the size of tumor which was xenografted to nude mice (balb/c nu/nu) were compared in 4 groups (group treated I-131 labeled anti-CEA antibody, group treated with non-radiolabeled anti-CEA antibody, group treated with I-131 labeled anti-human chorionic gonadotropin monoclonal antibody (anti-hCG antibody) as nonspecific antibody, and group injected with normal saline as a control). Immunohistochemical staining and in vivo autoradiography were performed after excision of the xenografted tumor. The results were as below mentioned. The in vitro cytotoxic effect of I-131 labeled anti-CEA antibody is most prominent in SNU-C5 cell line between 3 cancer cell lines. The changes of xenografted tumor size in both SNU-C4 and SNU-5S cell tumors at the thirteenth day after injection of the antibodies were smallest in the group treated with I-131 labeled anti-CEA antibody (SNU-C4/SNU-C5; 324/342%) comparing with other groups, group treated with anti-CEA antibody (622/660%), group treated with I-131 anti-hCG antibody (538/546%), and control group(1030/724%)(P<0.02 in SNU-C4 and P<0.1 in SNU-C5 at the 13th day after injection of antibodies). On the thirteenth day after injection of the antibodies nude mice were sacreficed to count the radiouptake of tumor and to check the changes of tumor size. Correlations between radiouptake and change of tumor size were calculated in each groups and significant negative correlation was only obtained in the group treated with I-131 anti-CEA antibody (p<0.05). There were no correlations between antigenic expression of carcinoembryonic antigen and distribution of anti-CEA antibody in both SNU-C4 and SNU-C5 cell tumors on immunoperoxidase staining. On in vivo autoradiography the distributions of anti-CEA antibody were heterogeneous and the intensities of binding were various in SNU-C4 and SNU-C5 cell tumors. It is concluded that I-131 labeled tumor-specific monoclonal antibody, anti-CEA antibody is effective in suppressing the xenografted tumor growth and the effect is influenced by sensitivity of tumor cell itself to the radiolabeled antibody and other local factors instead of specificity of antibody.

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