2004-2002年
Scopus による被引用回数 15 回以上の英文論文のみを掲載
(全 24 報の英文論文中 17 報が該当; 2008 年 4 月 1 日現在)
- Yoshitake J, Akaike T, Akuta T, Tamura F, Ogura T, Esumi H, and Maeda H.
Nitric oxide as an endogenous mutagen for Sendai virus without antiviral activity.
J Virol. 78: 8709-8719 (2004).
- Tamura F, Nakagawa R, Akuta T, Okamoto S, Hamada S, Maeda H, Kawabata S and Akaike T.
Proapoptotic effect of proteolytic activation of matrix metalloproteinases by Streptococcus pyogenes thiol proteinase (Streptococcus pyrogenic exotoxin B).
Infect Immun. 72: 4836-4847 (2004).
- Okamoto T, Akuta T, Tamura F, van der Vliet A, and Akaike T.
Molecular mechanism for activation and regulation of matrix metalloproteinases during bacterial infections and respiratory inflammation.
Biol Chem. 385: 997-1006 (2004).
- Okamoto T, Gohil K, Finkelstein EI, Bove P, Akaike T, and van der Vliet A.
Multiple contributing roles for NOS2 in LPS-induced acute airway inflammation in mice.
Am J Physiol Lung Cell Mol Physiol. 286: L198-L209 (2004).
- Greish K, Sawa T, Fang J, Akaike T, and Maeda H.
SMA-doxorubicin, a new polymeric micellar drug for effective targeting to solid tumours.
J Control Release. 97: 219-230 (2004).
- Fang J, Sawa T, Akaike T, Greish K, and Maeda H.
Enhancement of chemotherapeutic response of tumor cells by a heme oxygenase inhibitor, pegylated zinc protoporphyrin.
Int J Cancer. 109: 1-8 (2004).
- Fang J, Akaike T, and Maeda H.
Antiapoptotic role of heme oxygenase (HO) and the potential of HO as a target in anticancer treatment.
Apoptosis. 9: 27-35 (2004).
- Tanaka S, Akaike T, Fang J, Beppu T, Ogawa M, Tamura F, Miyamoto Y, and Maeda H.
Antiapoptotic effect of haem oxygenase-1 induced by nitric oxide in experimental solid tumour.
Br J Cancer. 88: 902-909 (2003).
- Sawa T, Akaike T, Ichimori K, Akuta T, Kaneko K, Nakayama H, Stuehr DJ, and Maeda H.
Superoxide generation mediated by 8-nitroguanosine, a highly redox-active nucleic acid derivative.
Biochem Biophys Res Commun. 311: 300-306 (2003).
- Morikawa K, Shimokawa H, Matoba T, Kubota H, Akaike T, Talukder MA, Hatanaka M, Fujiki T, Maeda H, Takahashi S, and Takeshita A.
Pivotal role of Cu,Zn-superoxide dismutase in endothelium-dependent hyperpolarization.
J Clin Invest. 112: 1871-1879 (2003).
- Matoba T, Shimokawa H, Morikawa K, Kubota H, Kunihiro I, Urakami-Harasawa L, Mukai Y, Hirakawa Y, Akaike T, and Takeshita A.
Electron spin resonance detection of hydrogen peroxide as an endothelium-derived hyperpolarizing factor in porcine coronary microvessels.
Arterioscler Thromb Vasc Biol. 23: 1224-1230 (2003).
- Fang J, Sawa T, Akaike T, Akuta T, Sahoo SK, Khaled G, Hamada A, and Maeda H.
In vivo antitumor activity of pegylated zinc protoporphyrin: targeted inhibition of heme oxygenase in solid tumor.
Cancer Res. 63: 3567-3574 (2003).
- Akaike T, Okamoto S, Sawa T, Yoshitake J, Tamura F, Ichimori K, Miyazaki K, Sasamoto K, and Maeda H.
8-Nitroguanosine formation in viral pneumonia and its implication for pathogenesis.
Proc Natl Acad Sci U S A. 100: 685-690 (2003).
- Wu J, Akaike T, Hayashida K, Miyamoto Y, Nakagawa T, Miyakawa K, Muller-Esterl W, and Maeda H.
Identification of bradykinin receptors in clinical cancer specimens and murine tumor tissues.
Int J Cancer. 98: 29-35 (2002).
- Sahoo SK, Sawa T, Fang J, Tanaka S, Miyamoto Y, Akaike T, and Maeda H.
Pegylated zinc protoporphyrin: a water-soluble heme oxygenase inhibitor with tumor-targeting capacity.
Bioconjug Chem. 13: 1031-1038 (2002).
- Okamoto T, Valacchi G, Gohil K, Akaike T, and van der Vliet A.
S-Nitrosothiols inhibit cytokine-mediated induction of matrix metalloproteinase-9 in airway epithelial cells.
Am J Respir Cell Mol Biol. 27: 463-473 (2002).
- Fang J, Sawa T, Akaike T, and Maeda H.
Tumor-targeted delivery of polyethylene glycol-conjugated D-amino acid oxidase for antitumor therapy via enzymatic generation of hydrogen peroxide.
Cancer Res. 62: 3138-3143 (2002).
- Alam MS, Akaike T, Okamoto S, Kubota T, Yoshitake J, Sawa T, Miyamoto Y, Tamura F, and Maeda H.
Role of nitric oxide in host defense in murine salmonellosis as a function of its antibacterial and antiapoptotic activities.
Infect Immun. 70: 3130-3142 (2002).
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2001-1998年
Scopus による被引用回数 30 回以上の英文論文のみを掲載
(全 43 報の英文論文中 18 報が該当; 2008 年 4 月 1 日現在)
- Wu J, Akaike T, Hayashida K, Okamoto T, Okuyama A, and Maeda H.
Enhanced vascular permeability in solid tumor involving peroxynitrite and matrix metalloproteinases.
Jpn J Cancer Res. 92: 439-451 (2001).
- Okamoto T, Akaike T, Sawa T, Miyamoto Y, van der Vliet A, and Maeda H.
Activation of matrix metalloproteinases by peroxynitrite-induced protein S-glutathiolation via disulfide S-oxide formation.
J Biol Chem. 276: 29596-29602 (2001).
- Akaike T.
Role of free radicals in viral pathogenesis and mutation
Reviews in Medical Virology. 11: 87-101 (2001).
- Yogo K, Shimokawa H, Funakoshi H, Kandabashi T, Miyata K, Okamoto S, Egashira K, Huang P, Akaike T, and Takeshita A.
Different vasculoprotective roles of NO synthase isoforms in vascular lesion formation in mice.
Arterioscler Thromb Vasc Biol. 20: E96-E100 (2000).
- Suga M, Iyonaga K, Okamoto T, Gushima Y, Miyakawa H, Akaike T, and Ando M.
Characteristic elevation of matrix metalloproteinase activity in idiopathic interstitial pneumonias.
Am J Respir Crit Care Med. 162: 1949-1956 (2000).
- Sawa T, Akaike T, and Maeda H.
Tyrosine nitration by peroxynitrite formed from nitric oxide and superoxide generated by xanthine oxidase.
J Biol Chem. 275: 32467-32474 (2000).
- Akaike T, Fujii S, Kato A, Yoshitake J, Miyamoto Y, Sawa T, Okamoto S, Suga M, Asakawa M, Nagai Y, and Maeda H.
Viral mutation accelerated by nitric oxide production during infection in vivo.
FASEB J. 14: 1447-1454 (2000).
- Akaike T, and Maeda H.
Nitric oxide and virus infection.
Immunology. 101: 300-308 (2000).
- Sawa T, Nakao M, Akaike T, Ono K, and Maeda H.
Alkylperoxyl radical-scavenging activity of various flavonoids and other phenolic compounds: implications for the anti-tumor-promoter effect of vegetables.
J Agric Food Chem. 47: 397-402 (1999).
- Inoue K, Akaike T, Miyamoto Y, Okamoto T, Sawa T, Otagiri M, Suzuki S, Yoshimura T, and Maeda H.
Nitrosothiol formation catalyzed by ceruloplasmin. Implication for cytoprotective mechanism in vivo.
J Biol Chem. 274: 27069-27075 (1999).
- Fujii S, Akaike T, and Maeda H.
Role of nitric oxide in pathogenesis of herpes simplex virus encephalitis in rats.
Virology. 256: 203-212 (1999).
- Doi K, Akaike T, Fujii S, Tanaka S, Ikebe N, Beppu T, Shibahara S, Ogawa M, and Maeda H.
Induction of haem oxygenase-1 nitric oxide and ischaemia in experimental solid tumours and implications for tumour growth.
Br J Cancer. 80: 1945-1954 (1999).
- Wu J, Akaike T, and Maeda H.
Modulation of enhanced vascular permeability in tumors by a bradykinin antagonist, a cyclooxygenase inhibitor, and a nitric oxide scavenger.
Cancer Res. 58: 159-165 (1998).
- Sawa T, Akaike T, Kida K, Fukushima Y, Takagi K, and Maeda H.
Lipid peroxyl radicals from oxidized oils and heme-iron: implication of a high-fat diet in colon carcinogenesis.
Cancer Epidemiol Biomarkers Prev. 7: 1007-1012 (1998).
- Noguchi Y, Wu J, Duncan R, Strohalm J, Ulbrich K, Akaike T, and Maeda H.
Early phase tumor accumulation of macromolecules: a great difference in clearance rate between tumor and normal tissues.
Jpn J Cancer Res. 89: 307-314 (1998).
- Maeda H, Okamoto T, and Akaike T.
Human matrix metalloprotease activation by insults of bacterial infection involving proteases and free radicals.
Biol Chem. 379: 193-200 (1998).
- Maeda H, and Akaike T.
Nitric oxide and oxygen radicals in infection, inflammation, and cancer.
Biochemistry (Mosc). 63: 854-865 (1998).
- Akaike T, Suga M, and Maeda H.
Free radicals in viral pathogenesis: molecular mechanisms involving superoxide and NO.
Proc Soc Exp Biol Med. 217: 64-73 (1998).
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1997年以前
Scopus による被引用回数 50 回以上の英文論文のみを掲載
(全 55 報の英文論文中 19 報が該当; 2008 年 4 月 1 日現在)
- Umezawa K, Akaike T, Fujii S, Suga M, Setoguchi K, Ozawa A, and Maeda H.
Induction of nitric oxide synthesis and xanthine oxidase and their roles in the antimicrobial mechanism against Salmonella typhimurium infection in mice.
Infect Immun. 65: 2932-2940 (1997).
- Okamoto T, Akaike T, Suga M, Tanase S, Horie H, Miyajima S, Ando M, Ichinose Y, and Maeda H.
Activation of human matrix metalloproteinases by various bacterial proteinases.
J Biol Chem. 272: 6059-6066 (1997).
- Okamoto T, Akaike T, Nagano T, Miyajima S, Suga M, Ando M, Ichimori K, and Maeda H.
Activation of human neutrophil procollagenase by nitrogen dioxide and peroxynitrite: a novel mechanism for procollagenase activation involving nitric oxide.
Arch Biochem Biophys. 342: 261-274 (1997).
- Hooper DC, Bagasra O, Marini JC, Zborek A, Ohnishi ST, Kean R, Champion JM, Sarker AB, Bobroski L, Farber JL, Akaike T, Maeda H, and Koprowski H.
Prevention of experimental allergic encephalomyelitis by targeting nitric oxide and peroxynitrite: implications for the treatment of multiple sclerosis.
Proc Natl Acad Sci U S A. 94: 2528-2533 (1997).
- Akaike T, Inoue K, Okamoto T, Nishino H, Otagiri M, Fujii S, and Maeda H.
Nanomolar quantification and identification of various nitrosothiols by high performance liquid chromatography coupled with flow reactors of metals and Griess reagent.
J Biochem (Tokyo). 122: 459-466 (1997).
- Setoguchi K, Takeya M, Akaike T, Suga M, Hattori R, Maeda H, Ando M, and Takahashi K.
Expression of inducible nitric oxide synthase and its involvement in pulmonary granulomatous inflammation in rats.
Am J Pathol. 149: 2005-2022 (1996).
- Doi K, Akaike T, Horie H, Noguchi Y, Fujii S, Beppu T, Ogawa M, and Maeda H.
Excessive production of nitric oxide in rat solid tumor and its implication in rapid tumor growth.
Cancer. 77: 1598-1604 (1996).
- Akaike T, and Maeda H.
Quantitation of nitric oxide using 2-phenyl-4,4,5,5-tetramethylimidazoline-1-oxyl 3-oxide (PTIO).
Methods Enzymol. 268: 211-221 (1996).
- Akaike T, Noguchi Y, Ijiri S, Setoguchi K, Suga M, Zheng YM, Dietzschold B, and Maeda H.
Pathogenesis of influenza virus-induced pneumonia: involvement of both nitric oxide and oxygen radicals.
Proc Natl Acad Sci U S A. 93: 2448-2453 (1996).
- Yoshida M, Akaike T, Wada Y, Sato K, Ikeda K, Ueda S, and Maeda H.
Therapeutic effects of imidazolineoxyl N-oxide against endotoxin shock through its direct nitric oxide-scavenging activity.
Biochem Biophys Res Commun. 202: 923-930 (1994).
- Maeda H, Akaike T, Yoshida M, and Suga M.
Multiple functions of nitric oxide in pathophysiology and microbiology: analysis by a new nitric oxide scavenger.
J Leukoc Biol. 56: 588-592 (1994).
- Maeda H, Noguchi Y, Sato K, and Akaike T.
Enhanced vascular permeability in solid tumor is mediated by nitric oxide and inhibited by both new nitric oxide scavenger and nitric oxide synthase inhibitor.
Jpn J Cancer Res. 85: 331-334 (1994).
- Doi T, Ando M, Akaike T, Suga M, Sato K, and Maeda H.
Resistance to nitric oxide in Mycobacterium avium complex and its implication in pathogenesis.
Infect Immun. 61: 1980-1989 (1993).
- Akaike T, Yoshida M, Miyamoto Y, Sato K, Kohno M, Sasamoto K, Miyazaki K, Ueda S, and Maeda H.
Antagonistic action of imidazolineoxyl N-oxides against endothelium-derived relaxing factor/.NO through a radical reaction.
Biochemistry. 32: 827-832 (1993).
- Sato K, Akaike T, Kohno M, Ando M, and Maeda H.
Hydroxyl radical production by H2O2plus Cu,Zn-superoxide dismutase reflects the activity of free copper released from the oxidatively damaged enzyme.
J Biol Chem. 267: 25371-25377 (1992).
- Akaike T, Sato K, Ijiri S, Miyamoto Y, Kohno M, Ando M, and Maeda H.
Bactericidal activity of alkyl peroxyl radicals generated by heme-iron-catalyzed decomposition of organic peroxides.
Arch Biochem Biophys. 294: 55-63 (1992).
- Akaike T, Ando M, Oda T, Doi T, Ijiri S, Araki S, and Maeda H.
Dependence on O2¯generation by xanthine oxidase of pathogenesis of influenza virus infection in mice.
J Clin Invest. 85: 739-745 (1990).
- Oda T, Akaike T, Hamamoto T, Suzuki F, Hirano T, and Maeda H.
Oxygen radicals in influenza-induced pathogenesis and treatment with pyran polymer-conjugated SOD.
Science. 244: 974-976 (1989).
- Molla A, Yamamoto T, Akaike T, Miyoshi S, and Maeda H.
Activation of hageman factor and prekallikrein and generation of kinin by various microbial proteinases.
J Biol Chem. 264: 10589-10594 (1989).
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