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細胞番号 : 細胞名
RCB0434 : J774.1  update : 2024/03/27
細胞特性(Comment:英)Macrophage-like cell
細胞特性(日)マウス・マクロファージ細胞株。薬剤処理によって活性化する。前細胞名はJ774A.1である。
細胞特性(寄託者記述:英)
細胞特性(寄託者記述:日)
使用条件(英)There is no restriction regarding use for basic researches. In relation to commercial use and use for patent filing, first of all please contact the RIKEN BRC.
使用条件(日)基礎的研究につきましては、使用制限はありません。商業利用や特許取得を目的とする場合は、事前に必ず理研細胞バンクに連絡をすること。
備考(英)
備考(日)
提供申込書類(英) Order Form(C-0005.pdf)   MTA(C-0007.pdf)   MTA(C-0007p.pdf)  
Regarding MTA between user institutions and RIKEN BRC, there are two kinds of MTA, not-for-profit academic purpose (C-XXXX) and for-profit research purpose (C-XXXXp) , depending on the sort of user institutions and the purposes of use. Please use an appropriate MTA(to see). In relation to commercial use and use for patent filing, first of all Please contact RIKEN BRC (cellbank.brc@riken.jp).
提供申込書類(日) 依頼書C-0001.pdf   同意書(非営利学術目的)C-0003.pdf   同意書(営利目的)C-0003p.pdf  
提供同意書は、使用機関の種類や目的に応じて、非営利学術目的 (C-XXXX) と営利目的 (C-XXXXp) の2種類があります。該当する提供同意書をご使用ください(詳細)。特許等の取得及び商業利用等は事前に必ず cellbank.brc@riken.jp までご連絡ください。
提供手数料 手数料とお支払いについてはこちらをご覧ください。
細胞基本情報 寄託者 Sakagami, Hiroshi
樹立者 Peter, Ralph
寄託日 1989
別名 J774A.1
動物種 _mouse < Mammals
動物系統名 BALB/c
性別 Female
採取組織 ascites
細胞分類 other
入手歴 Nagumo, Noboru (Showa Univ.)
細胞寿命 infinite
細胞形態 other (macrophage-like)
Cellosaurus(Expasy) CVCL_4770
細胞培養・検査情報
寄託時情報
ロット情報
培地・試薬情報 培地・試薬一覧はこちらをご覧ください。
培養形態 Suspension cells
培地 RPMI1640 + 10% FBS
培養方法 浮遊細胞の培養に関する一般的な注意
抗生物質 Free
継代方法 dilution
継代密度 1 : 10 split
継代・培地交換頻度 Subculture : 2 times/week
培養最適温度 37 ℃
二酸化炭素濃度 5 %
凍結培地 Medium + 10% DMSO
凍結方法 Slow freezing
マイコプラズマ (-)
マウス系統検査 OK
アイソザイム検査 LD, NP
画像情報
寄託時情報
ロット情報
文献情報 Reference(英) 7件
Reference(日) 3件
利用者成果(英) 101件
利用者成果(日) 2件

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Reference(英)
1185  Sakagami H, Ikeda M, Konno K  Stimulation of tumor necrosis factor-induced human myelogenous leukemic cell differentiation by high molecular weight PSK subfraction.  Biochem Biophys Res Commun  1989  162:597-603  PubMed ID: 2757633   DOI: 10.1016/0006-291x(89)92352-8
1189  Sakagami H, Ikeda M, Unten S, Takeda K, Murayama J, Hamada A, Kimura K, Komatsu N, Konno K  Antitumor activity of polysaccharide fractions from pine cone extract of Pinus parviflora Sieb. et Zucc.  Anticancer Res  1987  7:1153-9  PubMed ID: 3481681  
1294  Ralph P, Nakoinz I  Direct toxic effects of immunopotentiators on monocytic, myelomonocytic, and histiocytic or macrophage tumor cells in culture.  Cancer Res  1977  37:546-50  PubMed ID: 318922  
716  Ralph P, Nakoinz I  Antibody-dependent killing of erythrocyte and tumor targets by macrophage-related cell lines: enhancement by PPD and LPS.  J Immunol  1977  119:950-54  PubMed ID: 894031  
1141  Ralph P, Moore, M A, Nilsson K  Lysozyme synthesis by established human and murine histiocytic lymphoma cell lines.  J Exp Med  1976  143:1528-33  PubMed ID: 1083890   DOI: 10.1084/jem.143.6.1528
1176  Ralph P, Prichard J, Cohn M  Reticulum cell sarcoma: an effector cell in antibody-dependent cell-mediated immunity.  J Immunol  1975  114:898-905  PubMed ID: 1089721  
1177  Ralph P, Nakoinz I  Phagocytosis and cytolysis by a macrophage tumour and its cloned cell line.  Nature  1975  257:393-4  PubMed ID: 1101071   DOI: 10.1038/257393a0

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Reference(日)
1190  Ikeda,   マウスマクロファージ様株化細胞J774.1による分化誘導因子の自発的産生と松かさ制癌性多糖によるその産生の促進  昭和医学会雑誌  1988  48:449-454    DOI: 10.14930/jsma1939.48.449
1233  Seguchi M, Yoshida K  バイオテクノロジ-素材としての培養細胞 ホルモン・生理活性物質  蛋白質 核酸 酵素  1988  33:1152   
1234  吉村昭彦  バイオテクノロジ-素材としての培養細胞 ホルモン・生理活性物質  蛋白質 核酸 酵素  1988  33:1153-1154   

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利用者成果(英)
21540  Takouda J, Nakamura M, Murasaki A, Shimosako W, Hidaka A, Honda S, Tanimura S, Ishibashi F, Kawasaki N, Ishihara J, Fukuda T, Takeda K.  Identification of Azalamellarin N as a Pyroptosis Inhibitor.  Biol Pharm Bull  2024  47(1):28-36  PubMed ID: 38171777   DOI: 10.1248/bpb.b23-00569
21568  Sakurai C, Yamashita N, Azuma K, Hatsuzawa K.  VAMP5 promotes Fcγ receptor-mediated phagocytosis and regulates phagosome maturation in macrophages.  Mol Biol Cell  2024  mbcE23040149  PubMed ID: 38265888   DOI: 10.1091/mbc.E23-04-0149
21079  Nakanishi T, Izumi M, Suzuki R, Yamaguchi K, Sugamoto K, Erickson L, Kawahara S.  In vitro characterization of anti-inflammatory activities of 3RS, 7R, 11R-phytanic acid.  J Dairy Res  2023  1-8  PubMed ID: 36815363   DOI: 10.1017/S0022029923000146
21096  Yamada H, Uemura A, Miyasaka R.  8(R)-hydroxy-eicosapentaenoic acid (8R-HEPE) induces transcription of cholesterol efflux receptors via activation of liver X receptor in macrophages.  Biosci Biotechnol Biochem  2023    PubMed ID: 36881721   DOI: 10.1093/bbb/zbad025
21252  Koga A, Thongsiri C, Kudo D, Phuong DND, Iwamoto Y, Fujii W, Nagai-Yoshioka Y, Yamasaki R, Ariyoshi W.  Mechanisms Underlying the Suppression of IL-1β Expression by Magnesium Hydroxide Nanoparticles.  Biomedicines  2023  11(5)  PubMed ID: 37238962   DOI: 10.3390/biomedicines11051291
21530  Watanabe N, Tamai R, Kiyoura Y.  Alendronate augments lipid A‑induced IL‑1β release by ASC‑deficient RAW264 cells via AP‑1 activation.  Exp Ther Med  2023  26(6):577  PubMed ID: 38023354   DOI: 10.3892/etm.2023.12276
21567  Saito H, Nishimura M, Sato R, Yamauchi Y.  Quantitative Determination of Cholesterol Hydroxylase Specificities by GC-MS/MS in Living Mammalian Cells.  Bio Protoc  2023  14(2):e4924  PubMed ID: 38268974   DOI: 10.21769/BioProtoc.4924
15283  Umezawa A, Maruyama C, Endo Y, Suenaga Y, Shijo Y, Kameyama N, Sato A, Nishitani A, Ayaori M, Waki M, Teramoto T, Ikewaki K.  Effects of Dietary Education Program for the Japan Diet on Cholesterol Efflux Capacity: A Randomized Controlled Trial  J Atheroscler Thromb  2022  29(6):881-893  PubMed ID: 34024872   DOI: 10.5551/jat.62832
20481  Kurane T, Matsunaga T, Ida T, Sawada K, Nishimura A, Fukui M, Umemura M, Nakayama M, Ohara N, Matsumoto S, Akaike T, Matsuzaki G, Takaesu G.  GRIM-19 is a target of mycobacterial Zn2+ metalloprotease 1 and indispensable for NLRP3 inflammasome activation.  FASEB J  2022  36(1):e22096  PubMed ID: 34907600   DOI: 10.1096/fj.202101074RR
20764  Takenaka Y, Tanaka R, Kitabatake K, Kuramochi K, Aoki S, Tsukimoto M.  Profiling Differential Effects of 5 Selective Serotonin Reuptake Inhibitors on TLRs-Dependent and -Independent IL-6 Production in Immune Cells Identifies Fluoxetine as Preferred Anti-Inflammatory Drug Candidate.  Front Pharmacol  2022  13:874375  PubMed ID: 35814203   DOI: 10.3389/fphar.2022.874375
20944  Saito H, Tachiura W, Nishimura M, Shimizu M, Sato R, Yamauchi Y.  Hydroxylation site-specific and production-dependent effects of endogenous oxysterols on cholesterol homeostasis: Implications for SREBP-2 and LXR.  J Biol Chem  2022  102733  PubMed ID: 36423680   DOI: 10.1016/j.jbc.2022.102733
13905  Tobita K, Hoshi F, Ohki T, Watanabe I.  Protein denature extracts of Lactobacillus crispatus KT-11 strain promote interleukin 12p40 production via Toll-like receptor 2 in J774.1 cell culture  J Food Biochem  2021  45(2):e13599.  PubMed ID: 33368417   DOI: 10.1111/jfbc.13599
20183  Tamai R, Mashima I, Kiyoura Y.  Alendronate Augments Lipid A-Induced IL-1α Release via Activation of ASC but Not Caspase-11.  Inflammation  2021    PubMed ID: 34080091   DOI: 10.1007/s10753-021-01489-w
20276  Lohning A, Kidachi Y, Kamiie K, Sasaki K, Ryoyama K, Yamaguchi H.  6-(methylsulfinyl)hexyl isothiocyanate (6-MITC) from Wasabia japonica alleviates inflammatory bowel disease (IBD) by potential inhibition of glycogen synthase kinase 3 beta (GSK-3β).  Eur J Med Chem  2021  216:113250  PubMed ID: 33691258   DOI: 10.1016/j.ejmech.2021.113250
20287  Zhang T, Tsutsuki H, Islam W, Ono K, Takeda K, Akaike T, Sawa T.  ATP exposure stimulates glutathione efflux as a necessary switch for NLRP3 inflammasome activation.  Redox Biol  2021  41:101930  PubMed ID: 33740502   DOI: 10.1016/j.redox.2021.101930
15290  Thongsiri C, Nagai-Yoshioka Y, Yamasaki R, Adachi Y, Usui M, Nakashima K, Nishihara T, Ariyoshi W.  Schizophyllum commune β-glucan: Effect on interleukin-10 expression induced by lipopolysaccharide from periodontopathic bacteria  Carbohydr Polym  2021  253:117285  PubMed ID: 33278951   DOI: 10.1016/j.carbpol.2020.117285
16070  Kamada K, Matsushita T, Yamashita T, Matsumoto T, Iwaguro H, Sobajima S, Kuroda R.  Attenuation of Knee Osteoarthritis Progression in Mice through Polarization of M2 Macrophages by Intra-Articular Transplantation of Non-Cultured Human Adipose-Derived Regenerative Cells  J Clin Med  2021  10(19):4309  PubMed ID: 34640324   DOI: 10.3390/jcm10194309
11977  Tamai R, Suzuki K, Mashima I, Kiyoura Y.  MPMBP down-regulates Toll-like receptor (TLR) 2 ligand-induced proinflammatory cytokine production by inhibiting NF-κB but not AP-1 activation.  Int. Immunopharmacol.  2020    PubMed ID: 31901621   DOI: 10.1016/j.intimp.2019.106085
12981  Watanabe S, Usui-Kawanishi F, Karasawa T, Kimura H, Kamata R, Komada T, Inoue Y, Mise N, Kasahara T, Takahashi M.  Glucose regulates hypoxia-induced NLRP3 inflammasome activation in macrophages.  J Cell Physiol  2020    PubMed ID: 32115713   DOI: 10.1002/jcp.29659
13022  Bracamonte ME, Álvarez AM, Sosa AM, Hoyos CL, Lauthier JJ, Cajal SP, Juarez M, Uncos RE, Sánchez-Valdéz FJ, Acuña L, Diosque P, Basombrío MA, Nasser JR, Hashiguchi Y, Korenaga M, Barroso PA, Marco JD.  High performance of an enzyme linked immunosorbent assay for American tegumentary leishmaniasis diagnosis with Leishmania (Viannia) braziliensis amastigotes membrane crude antigens.  PLoS One  2020    PubMed ID: 32379842   DOI: 10.1371/journal.pone.0232829
13348  Noritake K, Aki T, Isa S, Uemura K.  Pyroptotic cell death by exposure to 1-butanol in H9c2 cardiomyoblastoma cells.  Heliyon  2020    PubMed ID: 33294662   DOI: 10.1016/j.heliyon.2020.e05503
13734  Matsugaki A, Matsumoto S, Nakano T.  A Novel Role of Interleukin-6 as a Regulatory Factor of Inflammation-Associated Deterioration in Osteoblast Arrangement  Int J Mol Sci  2020  21(18):6659  PubMed ID: 32932973   DOI: 10.3390/ijms21186659
20124  Tan XW, Kobayashi K, Shen L, Inagaki J, Ide M, Hwang SS, Matsuura E.  Antioxidative attributes of rice bran extracts in ameliorative effects of atherosclerosis-associated risk factors.  Heliyon  2020  6(12):e05743  PubMed ID: 33376820   DOI: 10.1016/j.heliyon.2020.e05743
14498  Hirano S, Kanno S.  Relevance of autophagy markers to cytotoxicity of zinc compounds in macrophages  Toxicol In Vitro  2020  65:104816  PubMed ID: 32126253   DOI: 10.1016/j.tiv.2020.104816
12304  Tomo Shimizu, Osamu Miyazaki, Takeo Iwamoto, Tomoyuki Usui, Ryo Sato, Chika Hiraishi, Hiroshi Yoshida  A new method for measuring cholesterol efflux capacity uses stable isotope-labeled, not radioactive-labeled, cholesterol  J Lipid Res  2019  60(11):1959-1967  PubMed ID: 31455616   DOI: 10.1194/jlr.D086884
10747  Tamai R, Kiyoura Y.  Alendronate augments lipid A-induced IL-1β release and Smad3/NLRP3/ASC-dependent cell death.  Life Sci.  2018  198:8-17  PubMed ID: 29438662   DOI: 10.1016/j.lfs.2018.02.014
10832  Kitamura H, Saito N, Fujimoto J, Nakashima KI, Fujikura D.  Brazilian propolis ethanol extract and its component kaempferol induce myeloid-derived suppressor cells from macrophages of mice in vivo and in vitro.  BMC Complement Altern Med  2018  18:138  PubMed ID: 29720160   DOI: 10.1186/s12906-018-2198-5
11239  Yano H, Uchida M, Saito T, Aoki T, Kremenik MJ, Oyanagi E.  Reduction of Real-Time Imaging of M1 Macrophage Chemotaxis toward Damaged Muscle Cells is PI3K-Dependent.  Antioxidants (Basel)  2018    PubMed ID: 30297636   DOI: 10.3390/antiox7100138
9855  Konda N, Saeki N, Nishino S, Ogawa K.  Truncated EphA2 likely potentiates cell adhesion via integrins as well as infiltration and/or lodgment of a monocyte/macrophage cell line in the red pulp and marginal zone of the mouse spleen, where ephrin-A1 is prominently expressed in the vasculature.  Histochem. Cell Biol.  2017  147:317-339  PubMed ID: 27665280   DOI: 10.1007/s00418-016-1494-8
10402  Zhang R, Inagawa H, Takahashi M, Kawanishi H, Kazumura K, Tsuchiya H, Morishita N, Kobayashi Y, Masaki T, Kobara H, Soma GI.  Measurement of the Phagocytic Activity of Human Peripheral Blood Using a Highly Sensitive Fluorometric Detection Device Without Hemolysis.  Anticancer Res.  2017  37:3897-3903  PubMed ID: 28668892   DOI: 10.21873/anticanres.11771
10425  Sangkanjanavanich N, Kawai M, Kakuda T, Takai S.  Rescue of an intracellular avirulent Rhodococcus equi replication defect by the extracellular addition of virulence-associated protein A.  J. Vet. Med. Sci.  2017  79:1323-1326  PubMed ID: 28690290   DOI: 10.1292/jvms.17-0350
10508  Kitamura H, Ishino T, Shimamoto Y, Okabe J, Miyamoto T, Takahashi E, Miyoshi I.  Ubiquitin-Specific Protease 2 Modulates the Lipopolysaccharide-Elicited Expression of Proinflammatory Cytokines in Macrophage-like HL-60 Cells.  Mediators Inflamm.  2017  2017:6909415  PubMed ID: 29138532   DOI: 10.1155/2017/6909415
14248  Kobayashi M, Usui-Kawanishi F, Karasawa T, Kimura H, Watanabe S, Mise N, Kayama F, Kasahara T, Hasebe N, Takahashi M.  The cardiac glycoside ouabain activates NLRP3 inflammasomes and promotes cardiac inflammation and dysfunction  PLoS One  2017  12(5):e0176676  PubMed ID: 28493895   DOI: 10.1371/journal.pone.0176676
14570  Differential Regulation of IL-1β and IL-6 Release in Murine Macrophages  Differential Regulation of IL-1β and IL-6 Release in Murine Macrophages  Inflammation  2017  40(6):1933-1943  PubMed ID: 28766178   DOI: 10.1007/s10753-017-0634-1
7312  Motoyama K, Sako A, Ibrahim Abu Hashim I, Higashi T, Arima H.  Effects of dendrimer/cyclodextrin conjugates as gene transfer carriers on nitric oxide production from macrophages.  J. Pharm. Pharmacol.  2016  68:598-607  PubMed ID: 26076676   DOI: 10.1111/jphp.12439
9562  Hotta A, Fujita O, Uda A, Yamamoto Y, Sharma N, Tanabayashi K, Yamada A, Morikawa S.  Virulence of representative Japanese Francisella tularensis and immunologic consequences of infection in mice.  Microbiol. Immunol.  2016  60:168-76  PubMed ID: 26853540   DOI: 10.1111/1348-0421.12363
9711  Ando T, Komatsu T, Naiki Y, Takahashi K, Yokochi T, Watanabe D, Koide N.  GSK2656157, a PERK inhibitor, reduced LPS-induced IL-1β production through inhibiting Caspase 1 activation in macrophage-like J774.1 cells.  Immunopharmacol Immunotoxicol  2016  38:298-302  PubMed ID: 27251848   DOI: 10.1080/08923973.2016.1192191
9734  Zhang R, Kobayashi Y, Kazumura K, Tsuchiya H, Morishita N, Inagawa H, Soma G.  Development of an Evaluation Device for Phagocytic Activity of New Phagocytes Using Simple and pH-sensitive Particles that Do Not Require Pre-treatment.  Anticancer Res.  2016  36:3613-8  PubMed ID: 27354631  
9739  Hachiya R, Shiihashi T, Shirakawa I, Iwasaki Y, Matsumura Y, Oishi Y, Nakayama Y, Miyamoto Y, Manabe I, Ochi K, Tanaka M, Goda N, Sakai J, Suganami T, Ogawa Y.  The H3K9 methyltransferase Setdb1 regulates TLR4-mediated inflammatory responses in macrophages.  Sci Rep  2016  6:28845  PubMed ID: 27349785   DOI: 10.1038/srep28845
10875    Immune cell response and subsequent bone formation induced by implantation of octacalcium phosphate in a rat tibia defect  RSC Adv  2016  6, 57475-57484    DOI: 10.1039/C6RA10834B
7231  Yoshida K, Maekawa T, Zhu Y, Renard-Guillet C, Chatton B, Inoue K, Uchiyama T, Ishibashi K, Yamada T, Ohno N, Shirahige K, Okada-Hatakeyama M, Ishii S.  The transcription factor ATF7 mediates lipopolysaccharide-induced epigenetic changes in macrophages involved in innate immunological memory.  Nat. Immunol.  2015  16:1034-43  PubMed ID: 26322480   DOI: 10.1038/ni.3257
7281  Kitahara N, Morisaka H, Aoki W, Takeda Y, Shibasaki S, Kuroda K, Ueda M.  Description of the interaction between Candida albicans and macrophages by mixed and quantitative proteome analysis without isolation.  AMB Express  2015  5:127  PubMed ID: 26179440   DOI: 10.1186/s13568-015-0127-2
7503  Ito M, Matsuoka I.  Inhibition of P2Y6 receptor-mediated phospholipase C activation and Ca(2+) signalling by prostaglandin E2 in J774 murine macrophages.  Eur. J. Pharmacol.  2015  749:124-32  PubMed ID: 25614334   DOI: 10.1016/j.ejphar.2014.12.024
5303  Yu Z, Ono C, Aiba S, Kikuchi Y, Sora I, Matsuoka H, Tomita H.  Therapeutic concentration of lithium stimulates complement C3 production in dendritic cells and microglia via GSK-3 inhibition.  Glia  2015  63(2):257-70  PubMed ID: 25179772   DOI: 10.1002/glia.22749
15013  Hideaki Suzuki  Probiotics Aspergillus oryzae and Lactobacillus sakei reduce IgE and increase Th1 cytokines in an ovalbumin-induced murine model of allergy  Int J Anal Bio-Sci  2015  3:90-06   
15429  Ishikawa T, Ayaori M, Uto-Kondo H, Nakajima T, Mutoh M, Ikewaki K.  High-density lipoprotein cholesterol efflux capacity as a relevant predictor of atherosclerotic coronary diseaseHigh-density lipoprotein cholesterol efflux capacity as a relevant predictor of atherosclerotic coronary disease  Atherosclerosis  2015  242(1):318-22  PubMed ID: 26246268   DOI: 10.1016/j.atherosclerosis.2015.06.028
18841  Takeda S, Kawahara S, Hidaka M, Yoshida H, Watanabe W, Takeshita M, Kikuchi Y, Bumbein D, Muguruma M, Kurokawa M.  Effects of oral administration of probiotics from Mongolian dairy products on the Th1 immune response in mice  Biosci Biotechnol Biochem  2013  77(7):1372-8  PubMed ID: 23832328   DOI: 10.1271/bbb.120624
18845  Tsuchiya K, Nitta N, Sonoda A, Otani H, Takahashi M, Murata K, Shiomi M, Tabata Y, Nohara S.  Atherosclerotic imaging using 4 types of superparamagnetic iron oxides: new possibilities for mannan-coated particles  Eur J Radiol  2013  82(11):1919-25  PubMed ID: 24001603   DOI: 10.1016/j.ejrad.2013.07.017
9257  Yoshimitsu Okazaki, Emiko Gotoh  Metal Ion Effects on Different Types of Cell Line, Metal Ion Incorporation Into L929 and MC3T3-E1 Cells, and Activation of Macrophage-Like J774.1 Cells  Mater Sci Eng C Mater Biol Appl  2013  33(4):1993-2001  PubMed ID: 23498224   DOI: 10.1016/j.msec.2013.01.015
18658  Usui F, Shirasuna K, Kimura H, Tatsumi K, Kawashima A, Karasawa T, Hida S, Sagara J, Taniguchi S, Takahashi M.  Critical role of caspase-1 in vascular inflammation and development of atherosclerosis in Western diet-fed apolipoprotein E-deficient mice  Biochem Biophys Res Commun  2012  425(2):162-8  PubMed ID: 22819845   DOI: 10.1016/j.bbrc.2012.07.058
18846  Tsuchiya K, Nitta N, Sonoda A, Nitta-Seko A, Ohta S, Takahashi M, Murata K, Mukaisho K, Shiomi M, Tabata Y, Nohara S.  Evaluation of atherosclerotic lesions using dextran- and mannan-dextran-coated USPIO: MRI analysis and pathological findings  Int J Nanomedicine  2012  7:2271-80  PubMed ID: 22619561   DOI: 10.2147/IJN.S29417
16144  Hoshi H, Saito H, Iijima H, Uchida M, Wada T, Ito G, Tanaka H, Sawada T, Hirakawa K.  Anti-protein-bound polysaccharide-K monoclonal antibody binds the active structure and neutralizes direct antitumor action of the compound  Oncol Rep  2011  25(4):905-13  PubMed ID: 21249323   DOI: 10.3892/or.2011.1155
8085  Sakagami H, Zhou L, Kawano M, Thet MM, Tanaka S, Machino M, Amano S, Kuroshita R, Watanabe S, Chu Q, Wang QT, Kanamoto T, Terakubo S, Nakashima H, Sekine K, Shirataki Y, Zhang CH, Uesawa Y, Mohri K, Kitajima M, Oizumi H, Oizumi T.  Multiple biological complex of alkaline extract of the leaves of Sasa senanensis Rehder.  In Vivo  2010  24:735-43  PubMed ID: 20952742  
8207  Kaori Yoshino, Kaoru Saijo, Chikako Noro and Yukio Nakamura  Development of a simple method to determine the mouse strain from which cultured cell lines originated  Interdisciplinary Bio Central   2010  2:0014    DOI: 10.4051/ibc.2010.2.4.0014
18844  Ogawa M, Suzuki J, Hirata Y, Nagai R, Isobe M.  A critical role of COX-2 in the progression of neointimal formation after wire injury in mice  Expert Opin Ther Targets  2009  13(5):505-11  PubMed ID: 19344227   DOI: 10.1517/14728220902901120
18325  Kitamura H, Ito M, Yuasa T, Kikuguchi C, Hijikata A, Takayama M, Kimura Y, Yokoyama R, Kaji T, Ohara O.  Genome-wide identification and characterization of transcripts translationally regulated by bacterial lipopolysaccharide in macrophage-like J774.1 cells  Physiol Genomics  2008  33(1):121-32  PubMed ID: 18230670   DOI: 10.1152/physiolgenomics.00095.2007
18330  Shime H, Yabu M, Akazawa T, Kodama K, Matsumoto M, Seya T, Inoue N.  Tumor-secreted lactic acid promotes IL-23/IL-17 proinflammatory pathway  J Immunol  2008  180(11):7175-83  PubMed ID: 18490716   DOI: 10.4049/jimmunol.180.11.7175
18684  Yamaguchi H, Kidachi Y, Umetsu H, Ryoyama K.  L-NAME inhibits tumor cell progression and pulmonary metastasis of r/m HM-SFME-1 cells by decreasing NO from tumor cells and TNF-alpha from macrophages  Mol Cell Biochem  2008  312(1-2):103-12  PubMed ID: 18320293   DOI: 10.1007/s11010-008-9725-5
2594  Ito M, Matsuoka I.  Regulation of purinergic signaling by prostaglandin E2 in murine macrophages  J Pharmacol Sci  2008  107(4):443-50.  PubMed ID: 18678987   DOI: 10.1254/jphs.08087fp
18326  Mise-Omata S, Kuroda E, Niikura J, Yamashita U, Obata Y, Doi TS.  A proximal kappaB site in the IL-23 p19 promoter is responsible for RelA- and c-Rel-dependent transcription  J Immunol  2007  179(10):6596-603  PubMed ID: 17982049   DOI: 10.4049/jimmunol.179.10.6596
18327  Tsuchiya T, Mitsuo E, Hayashi N, Hikita Y, Nakao H, Yamamoto S, Miyamoto K, Tsujibo H.  Vibrio vulnificus damages macrophages during the early phase of infection  Infect Immun  2007  75(9):4592-6  PubMed ID: 17591793   DOI: 10.1128/IAI.00481-07
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15487  草野 崇一, 田村 弘司, 岡崎 勝一郎  フルクタン資化性乳酸菌Lactobacillus plantarum S506株の分離とニンニク発酵食品への応用  日本食品工学会誌  2015  16:125-131    DOI: 10.11301/jsfe.16.125
3083  後藤恵美子、岡崎善光  マウスマクロファージの活性化に及ぼすV, Ni イオン濃度の影響  日本金属学会誌  2005  69:21-220    DOI: 10.2320/jinstmet.69.217



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