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Featured researches published by Akira Nakai.


Acta Biomaterialia | 2017

Biocompatible nanostructured solid adhesives for biological soft tissues

Masahiro Okada; Akira Nakai; Emilio Satoshi Hara; Tetsushi Taguchi; Takayoshi Nakano; Takuya Matsumoto

Over the past few years, the development of novel adhesives for biological soft tissue adhesion has gained significant interest. Such adhesives should be non-toxic and biocompatible. In this study, we synthesized a novel solid adhesive using nanostructured hydroxyapatite (HAp) and evaluated its physical adhesion properties through in vitro testing with synthetic hydrogels and mouse soft tissues. The results revealed that HAp-nanoparticle dispersions and HAp-nanoparticle-assembled nanoporous plates showed efficient adhesion to hydrogels. Interestingly, the HAp plates showed different adhesive properties depending upon the shape of their nanoparticles. The HAp plate made up of 17nm-sized nanoparticles showed an adhesive strength 2.2times higher than that of the conventional fibrin glue for mouse skin tissues. STATEMENT OF SIGNIFICANCE The present study indicates a new application of inorganic biomaterials (bioceramics) as a soft tissue adhesive. Organic adhesives such as fibrin glues or cyanoacrylate derivatives have been commonly used clinically. However, their limited biocompatibility and/or low adhesion strength are some drawbacks that impair their clinical application. In this study, we synthesized a novel solid adhesive with biocompatible and biodegradable HAp nanoparticles without the aid of organic molecules, and showed a rapid and strong adhesion of mouse soft tissues compared to conventional fibrin glues. Given the importance of wet adhesion in biomedicine and biotechnology applications, our results will help not only in developing an efficient approach to close incised soft tissues, but also in finding novel ways to integrate soft tissues with synthetic hydrogels (such as drug reservoirs).


Journal of Medicinal Chemistry | 1987

Synthesis and beta-lactamase inhibitory properties of 2 beta-[(1,2,3-triazol-1-yl)methyl]-2 alpha-methylpenam-3 alpha-carboxylic acid 1,1-dioxide and related triazolyl derivatives.

Ronald G. Micetich; Samarendra N. Maiti; Paul Spevak; Tse W. Hall; Shigeru Yamabe; Naobumi Ishida; Motoaki Tanaka; Tomio Yamazaki; Akira Nakai; Kazuo Ogawa


Archive | 1987

2beta-substituted-methylpenicillanic acid derivatives, and salts and esters thereof

Sigeru Torii; Hideo Tanaka; Motoaki Tanaka; Shozo Yamada; Akira Nakai; Hisashi Ohbayashi; Tomoyasu Ohno


Archive | 1988

Process for preparing penicillanic acid derivatives

Masatoshi Taniguchi; Michio Sasaoka; Kiyotoshi Matsumura; Ichiro Kawahara; Kenji C O Otsuka Kagaku K Kase; Daisuke Suzuki; Shigeru Torii; Hideo Tanaka; Motoaki Tanaka; Akira Nakai


Archive | 1987

2 β-substituted thiomethylpenicillin derivatives and their preparation and use

Sigeru Torii; Hideo Tanaka; Motoaki Tanaka; Shozo Yamada; Akira Nakai; Hisashi Ohbayashi


Archive | 1989

Process for preparing 2 beta-substituted-methylpenicillin derivatives

Sigeru Torii; Hideo Tanaka; Motoaki Tanaka; Shozo Yamada; Akira Nakai


Archive | 1989

Process for preparing 2β-substituted-methylpenicillin derivatives

Sigeru Torii; Hideo Tanaka; Motoaki Tanaka; Shozo Yamada; Akira Nakai


Bulletin of the Chemical Society of Japan | 1989

A Facile Reductive Removal of Bromine Atom(s) of 6,6-Dibromo- and 6-Bromopenicillanate Derivatives in a Pb/Al Bimetal System

Hideo Tanaka; Motoaki Tanaka; Akira Nakai; Yasumi Katayama; Sigeru. Torii


Archive | 1989

Process for preparing 2 alpha -methyl-2 beta -(1,2,3-triazol-1-yl)methylpenam-3 alpha -carboxylic acid derivatives

Sigeru Torii; Hideo Tanaka; Motoaki Tanaka; Shozo Yamada; Akira Nakai


Archive | 1986

2BETA-SUBSTITUTED THIOMETHYLPENICILLIN DERIVATIVE

Akira Nakai; Hisashi Obayashi; Hideo Tanaka; Motoaki Tanaka; Shigeru Torii; Shozo Yamada

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