참고문헌
- Vaccine v.18 no.27 Ex vivo targeting of the macrophage mannose receptor generates anti-tumor CTL responses Apostolopoulos, V.;Barnes, N.;Pietersz, G.A.;McKenzie, I.F. https://doi.org/10.1016/S0264-410X(00)00090-6
- Cancer Res v.54 no.4 In vitro generation of human cytolytic T-cells specific for peptides derived from the HER-2/neu protooncogene protein Disis, M.L.;Smith, J.W.;Murphy, A.E.;Chen, W.;Cheever, M.A.
- Blood v.91 no.12 The role of tumor necrosis factor alpha in modulating the quantity of peripheral blood-derived, cytokine-driven human dendritic cells and its role in enhancing the quality of dendritic cell function in presenting soluble antigens to CD4+ T cells in vitro Chen, B.;Shi, Y.;Smith, J.D.;Choi, D.;Geiger, J.D.;Mule, J.J.
- Infect Immun v.69 no.6 Human peripheral blood T cells, monocytes, and macrophages secrete macrophage inflammatory proteins 1alpha and 1beta following stimulation with heat-inactivated Brucella abortus Zaitseva, M.;King, L.R.;Manischewitz, J.;Dougan, M.;Stevan, L.;Golding, H.;Golding, B. https://doi.org/10.1128/IAI.69.6.3817-3826.2001
- Cancer Res v.45 no.10 Macrophages and metastasis--a biological approach to cancer therapy Fidler, I.J.
- Ciba Found Symp v.141 Macrophage therapy of cancer metastasis Fidler, I.J.
- Cancer Immunol Immunother v.45 no.2 Restoration of macrophage tumoricidal activity by bleomycin correlates with the decreased production of transforming growth factor beta in rats bearing KDH-8 hepatoma cells Yuan, L.;Kobayashi, M.;Kuramitsu, Y.;Li, Y.;Matsushita, K.;Hosokawa, M. https://doi.org/10.1007/s002620050404
- Eur J Immunol v.27 no.9 Priming of cytotoxic T lymphocytes by five heat-aggregated antigens in vivo: conditions, efficiency, and relation to antibody responses Speidel, K.;Osen, W.;Faath, S.;Hilgert, I.;Obst, R.;Braspenning, J.;Momburg, F.;Hammerling, G.J.;Rammensee, H.G. https://doi.org/10.1002/eji.1830270938
- Immunol Lett v.86 no.3 A dynamical perspective of CTL cross-priming and regulation: implications for cancer immunology Wodarz, D.;Jansen, V.A. https://doi.org/10.1016/S0165-2478(03)00023-3
- J Immunol v.168 no.4 Proteasome-assisted identification of a SSX-2-derived epitope recognized by tumor-reactive CTL infiltrating metastatic melanoma Ayyoub, M.;Stevanovic, S.;Sahin, U.;Guillaume, P.;Servis, C.;Rimoldi, D.;Valmori, D.;Romero, P.;Cerottini, J.C.;Rammensee, H.G.;Pfreundschuh, M.;Speiser, D.;Levy, F. https://doi.org/10.4049/jimmunol.168.4.1717
- Mem Inst Oswaldo Cruz v.86 no.Sup. 2 Immunomodulating Chinese herbal medicines Li, X.Y. https://doi.org/10.1590/S0074-02761991000600036
- Immunopharmacol Immunotoxicol v.12 no.2 Panax ginseng as a potential immunomodulator: studies in mice Kim, J.Y.;Germolec, D.R.;Luster, M.I. https://doi.org/10.3109/08923979009019672
- J Ethnopharmacol v.79 no.3 Effect of Acanthopanax senticosus stem on mast cell-dependent anaphylaxis Yi, J.M.;Hong, S.H.;Kim, J.H.;Kim, H.K.;Song, H.J.;Kim, H.M. https://doi.org/10.1016/S0378-8741(01)00403-2
- Int J Immunopharmacol v.13 no.5 Immunomopharmacological effects of polysaccharides from Acanthopanax senticosus on experimental animals Shen, M.L.;Zhai, S.K.;Chen, H.L.;Luo, Y.D.;Tu, G.R.;Ou, D.W. https://doi.org/10.1016/0192-0561(91)90075-I
- Planta Med v.69 no.7 In vivo anti-inflammatory and antinociceptive effects of liriodendrin isolated from the stem bark of Acanthopanax senticosus Jung, H.J.;Park, H.J.;Kim, R.G.;Shin, K.M.;Ha, J.;Choi, J.W.;Kim, H.J.;Lee, Y.S.;Lee, K.T. https://doi.org/10.1055/s-2003-41127
- Oncol Rep v.7 no.6 Induction of apoptosis by Acanthopanax senticosus HARMS and its component, sesamin in human stomach cancer KATO III cells Hibasami, H.;Fujikawa, T;Takeda, H.;Nishibe, S.;Satoh, T.;Fujisawa, T.;Nakashima, K.
- J Biol Chem v.257 no.22 Isolation and characterization of viscumin, a toxic lectin from Viscum album L. (mistletoe) Olsnes, S.;Stripe, F.;Sandvig, K.;Pihl, A.
- Jpn J Cancer Res v.89 no.2 Oral administration of a Kampo (Japanese herbal) medicine Juzen-taiho-to inhibits liver metastasis of colon 26-L5 carcinoma cells Ohnishi, Y.;Fujii, H.;Hayakawa, Y.;Sakukawa, R.;Yamaura, T.;Sakamoto, T.;Tsukada, K.;Fujimaki, M.;Nonome, S.;Komatsu, Y.;Saiki, I. https://doi.org/10.1111/j.1349-7006.1998.tb00550.x
- Cell v.54 no.6 Introduction of soluble protein into the class I pathway of antigen processing and presentation Moore, M.W.;Carbone, F.R.;Bevan, M.J. https://doi.org/10.1016/S0092-8674(88)91043-4
-
J Leukoc Biol
v.49
no.5
Tumor-derived products induce IL-1 a, IL-1 b, TNF
$\gamma$ , and IL-6 gene expression in murine macrophages: distinctions between tumor- and bacterial endotoxin-induced gene expression Evans, R.;Kamdar, S.J.;Duffy, T.M. https://doi.org/10.1002/jlb.49.5.474 - Int J Immunopharmacol v.10 no.5 Low molecular weight immunopotentiators Ruszala-Mallon, V.;Lin, Y.I.;Durr, F.E.;Wang, B.S. https://doi.org/10.1016/0192-0561(88)90066-5
- Med Sci Monit v.9 no.1 Experimental studies of serum cytokine concentration following pancreatic electrolytic ablation Morrison, C.P.;Teague, B.D.;Court, F.G.;Wemyss-Holden, S.A.;Metcalfe, M.S.;Dennison, A.R.;Maddern, G.J.
- Pathol Oncol Res v.3 no.2 Serum Levels of IL-1b, IL-6, TNF-a, sTNF-RI and CRP in Patients with Oral Cavity Cancer Jablonska, E.;Piotrowski, L.;Grabowska, Z. https://doi.org/10.1007/BF02907807
- J Exp Med v.175 no.1 Interleukin 10 and interferon gamma regulation of experimental Trypanosoma cruzi infection Silva, J.S.;Morrissey, P.J.;Grabstein, K.H.;Mohler, K.M.;Anderson, D.;Reed, S.G. https://doi.org/10.1084/jem.175.1.169
- Infect Immun v.64 no.7 Interleukin-12-mediated resistance to Trypanosoma cruzi is dependent on tumor necrosis factor alpha and gamma interferon Hunter, C.A.;Slifer, T.;Araujo, F.
- Curr Opin Immunol v.4 no.3 Cell-mediated cytotoxicity Taylor, M.K.;Cohen, J.J. https://doi.org/10.1016/0952-7915(92)90086-T
- J Exp Med v.187 no.12 Murine macrophages secrete interferon gamma upon combined stimulation with interleukin (IL)-12 and IL-18: A novel pathway of autocrine macrophage activation Munder, M.;Mallo, M.;Eichmann, K.;Modolell, M. https://doi.org/10.1084/jem.187.12.2103
- Cancer Res v.48 no.11 Immunoregulatory effects of interleukin 2 and interferon on syngeneic murine malignant glioma-specific cytotoxic T-lymphocytes Yamasaki, T.;Kikuchi, H.;Yamashita, J.;Handa, H.;Kuwata, S.;Taguchi, M.;Namba, Y.;Nanaoka, M.
- J Immunol v.166 no.2 Regulation of the CTL response by macrophage migration inhibitory factor Abe, R.;Peng, T.;Sailors, J.;Bucala, R.;Metz, C.N. https://doi.org/10.4049/jimmunol.166.2.747
- J Immunol v.143 no.6 Accessory signals in murine cytolytic T cell responses. Dual requirement for IL-1 and IL-6 Renauld, J.C.;Vink, A.;Van Snick, J.
- J Exp Med v.173 no.2 Combined interleukin 1/interleukin 2 therapy of mice injected with highly metastatic Friend leukemia cells: host antitumor mechanisms and marked effects on established metastases Ciolli, V.;Gabriele, L.;Sestili, P.;Varano, F.;Proietti, E.;Gresser, I.;Testa, U.;Montesoro, E.;Bulgarini, D.;Mariani, G.(et al) https://doi.org/10.1084/jem.173.2.313
- J Exp Med v.161 no.5 Regression of established pulmonary metastases and subcutaneous tumor mediated by the systemic administration of high-dose recombinant interleukin 2 Rosenberg, S.A.;Mule, J.J.;Spiess, P.J.;Reichert, C.M.;Schwarz, S.L. https://doi.org/10.1084/jem.161.5.1169
- Ann N Y Acad Sci v.795 Interleukin-12: murine models of a potent antitumor agent Brunda, M.J.;Luistro, L.;Rumennik, L.;Wright, R.B.;Wigginton, J.M.;Wiltrout, R.H.;Hendrzak, J.A.;Palleroni, A.V. https://doi.org/10.1111/j.1749-6632.1996.tb52676.x
- Cancer Res v.50 no.17 Antitumor effects of alpha-interferon and gamma-interferon on a murine renal cancer (Renca) in vitro and in vivo Sayers, T.J.;Wiltrout, T.A.;McCormick, K.;Husted, C.;Wiltroul, R.H.
- Int J Cancer v.37 no.1 Interferon-activated tumor inhibition in vivo. Small amounts of interferon-gamma inhibit tumor growth by eliciting host systemic immunoreactivity Giovarelli, M.;Cofano, F.;Vecchi, A.;Forni, M.;Landolfo, S.;Forni, G. https://doi.org/10.1002/ijc.2910370122
- Cancer Immunol Immunother v.26 no.3 Antitumor effect of recombinant tumor necrosis factor-alpha against murine sarcomas at visceral sites: tumor size influences the response to therapy Mule, J.J.;Asher, A.;Mclntosh, J.;Lafreniere, R.;Lefor, A.;Reichert, C.M.;Rosenberg, S.A.