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Dive into the research topics where Hiroki Kodama is active.

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Featured researches published by Hiroki Kodama.


International Journal of Antimicrobial Agents | 1999

Efficacy of NND-502, a novel imidazole antimycotic agent, in experimental models of Candida albicans and Aspergillus fumigatus infections

Yoshimi Niwano; Naoki Kuzuhara; Yuri Goto; Yukimi Munechika; Hiroki Kodama; Kazuo Kanai; Masanori Yoshida; Tsuneo Miyazaki; Hideyo Yamaguchi

In vitro and in vivo anti-Candida albicans and anti-Aspergillus fumigatus activities of NND-502, a new imidazole-antimycotic, were compared with those of fluconazole (FCZ), itraconazole (ITZ) and/or amphotericin B (AmB). NND-502 exhibited strong in vitro antifungal activity against both fungal species; its MIC against C. albicans was 1-4 times lower than that of FCZ, and its MIC against A. fumigatus was at least 60-2000 times lower than that of ITZ and AmB. In vivo antifungal treatments with each drug were initiated 1 h after inoculation in the experimental models, so that antifungal potential reflected prophylactic activity rather than therapeutic activity. The oral regimen of NND-502 in a murine model of systemic C. albicans infection was much less effective than that of FCZ. In vivo anti-A. fumigatus activity of oral NND-502 in a murine model of systemic infection was apparently superior to that of FCZ and ITZ in terms of prolonging survival. In addition to the murine model of systemic aspergillosis, intravenous NND-502 was shown to be highly effective in a rat model of pulmonary aspergillosis compared with intravenous AmB; 90% of animals survived at a dose of 2.5 mg/kg per day of NND-502 while only 30% of animals escaped death when 5 mg/kg per day of AmB was used. This potent efficacy of NND-502 was also confirmed in a sublethal challenge study in which the administration of the agent at a dose as low as 1.25 mg/kg per day resulted in the significant reduction of organisms in the lung; no comparable effect of AmB was found.


Journal of Pesticide Science | 2005

Flubendiamide, a Novel Insecticide Highly Active against Lepidopterous Insect Pests

Masanori Tohnishi; Hayami Nakao; Takashi Furuya; Akira Seo; Hiroki Kodama; Kenji Tsubata; Shinsuke Fujioka; Hiroshi Kodama; Takashi Hirooka; Tetsuyoshi Nishimatsu


Antimicrobial Agents and Chemotherapy | 1998

In Vitro and In Vivo Antidermatophyte Activities of NND-502, a Novel Optically Active Imidazole Antimycotic Agent

Yoshimi Niwano; Naoki Kuzuhara; Hiroki Kodama; Masanori Yoshida; Tsuneo Miyazaki; Hideyo Yamaguchi


Archive | 2001

Process for the preparation of 2-halobenzoic acids

Hiroki Kodama; Takeshi Katsuhira; Tateki Nishida; Tomokazu Hino; Kenji Tsubata


Current Medicinal Chemistry - Anti-infective Agents | 2003

Lanoconazole and Its Related Optically Active Compound NND-502: Novel Antifungal Imidazoles with a Ketene Dithioacetal Structure

Yoshimi Niwano; Tetsuto Ohmi; Akira Seo; Hiroki Kodama; Hiroyasu Koga; Atsusi Sakai


Pesticide Chemistry: Crop Protection, Public Health, Environmental Safety | 2007

Flubendiamide, a New Insecticide Characterized by Its Novel Chemistry and Biology

Akira Seo; Masanori Tohnishi; Hayami Nakao; Takashi Furuya; Hiroki Kodama; Kenji Tsubata; Shinsuke Fujioka; Hiroshi Kodama; Tetsuyoshi Nishimatsu; Takashi Hirooka


Archive | 1996

Method for treating mycosis using imidazolylacetonitrile derivatives

Hiroki Kodama; Yoshimi Niwano; Kazuo Kanai; Masanori Yoshida


Archive | 1996

Antifungal agent, compound therefor, process for producing the same

Hiroki Kodama; Yoshimi Niwano; Kazuo Kanai; Masanori Yoshida


Archive | 1996

Optically active triazole derivative, process for producing the same, antifungal agent, and use thereof

Hiroki Kodama; Koji Umimoto; Michihiko Kawaguchi; Masahiro Shimosako; Masanori Yoshida


Archive | 1996

Production of Optically Active 2-Halo-1-(Substituted Phenyl)Ethanol and Substituted Styrene Oxide

Hiroki Kodama; Takuya Motokawa; Hiroshi Yamaguchi; Masanori Yoshida

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