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Dive into the research topics where Yoshio Kuno is active.

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Featured researches published by Yoshio Kuno.


Pharmaceutical Development and Technology | 2000

Mucoadhesive DL-Lactide/Glycolide Copolymer Nanospheres Coated with Chitosan to Improve Oral Delivery of Elcatonin

Yoshiaki Kawashima; Hiromitsu Yamamoto; Hirofumi Takeuchi; Yoshio Kuno

The purpose of this work was to develop a novel mucoadhesive DL-lactide/glycolide copolymer (PLGA) nanosphere system to improve peptide absorption and prolong the physiological activity following oral administration. The desired PLGA nanospheres with elcatonin were prepared by the emulsion solvent diffusion method to coat the surface of the resultant nanospheres with a mucoadhesive polymer such as chitosan, poly(acrylic acid), and sodium alginate. Their mucoadhesive properties were evaluated by measuring the nanospheres adsorbed to a rat everted intestinal sac (in vitro). The chitosan-coated nanospheres showed higher mucoadhesion to the everted intestinal tract in saline than the other polymer-coated nanospheres. There was no mucoadhesion site-specificity of the chitosan-coated nanospheres between duodenal, jejunal, and ileal sacs. The payload of drug in the chitosan-coated nanospheres was successfully increased by using the solvent diffusion method in oil. The pattern of drug release of the resultant nanospheres did not differ markedly from that of uncoated nanospheres. The chitosan-coated nanospheres with elcatonin were administered intragastrically to fasted Wistar rats. The chitosan-coated nanosphere reduced significantly the blood calcium level compared with elcatonin solution and uncoated nanospheres, and the reduced calcium level was sustained for a period of 48 hr. Even under nonfasting conditions, the mucoadhesion of chitosan-coated nanospheres was unaltered and the reduction in blood Ca levels was maintained satisfactorily.


Journal of Controlled Release | 2005

Surface-modified PLGA nanosphere with chitosan improved pulmonary delivery of calcitonin by mucoadhesion and opening of the intercellular tight junctions

Hiromitsu Yamamoto; Yoshio Kuno; Shohei Sugimoto; Hirofumi Takeuchi; Yoshiaki Kawashima


Journal of Controlled Release | 2005

Evaluation of rapidly disintegrating tablets manufactured by phase transition of sugar alcohols.

Yoshio Kuno; Masazumi Kojima; Shuichi Ando; Hiroaki Nakagami


Archive | 2001

Medicinal compositions quickly disintegrating in the oral cavity and process for producing the same

Hiroaki Nakagami; Yoshio Kuno


Archive | 1997

Nanosphere for oral administration containing bioactive peptide

Yoshiaki Kawashima; Yoshio Kuno; Hirofumi Takeuchi; Hiromitsu Yamamoto; 由雄 久野; 浩充 山本; 嘉明 川島; 洋文 竹内


Archive | 2009

Pharmaceutical composition quickly disintegrating in oral cavity and method for producing the same

Yoshio Kuno; Hiroaki Nakagami; 博秋 中上; 由雄 久野


Archive | 2008

Intraorally rapidly disintegrating pharmaceutical composition, and method for production thereof

Hiroaki Nakagami; Yoshio Kuno; Hideaki Tanabe


Archive | 2008

Pharmaceutical composition comprising edoxaban, an anticoagulant

Masazumi Kojima; Yoshio Kuno; Hiroaki Nakagami; Shinji Sagasaki; Koichi Ishidoh; Gaku Sekiguchi


Archive | 2001

Compositions medicales pouvant se desintegrer rapidement dans la cavite buccale et leur procede de production

Hiroaki Nakagami; Yoshio Kuno


Archive | 2001

In der mundhöhle rasch zerfallende medizinische zusammensetzungen und verfahren zu ihrer herstellung

Hiroaki Nakagami; Yoshio Kuno

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Shohei Sugimoto

Gifu Pharmaceutical University

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