Zobrazeno 1 - 9
of 9
pro vyhledávání: '"Kazuyoshi Wakida"'
Autor:
Takahiro Satoda, Kazuyoshi Wakida, Takashi Uchida, Emiko Yamanish, Shinji Hiyama, Ishrat Jahan, Chikage Murakami-Kubo, Koichi Hayashida, Emi Karukaya-Kakuo
Publikováno v:
Biomedical Research. 24:205-216
Enamelysin (MMP-20) is a matrix metalloproteinase isolated from the cDNA library of the enamel organ. Although enamelysin is also expressed in the tooth pulp, especially in the odontoblast, the functional significance of enamelysin protein in dentino
Autor:
O.H. Ryu, Kazuyoshi Wakida, H. Jiang, James P. Simmer, Chikage Murakami, Q. Qian, J.J. Chen, John D. Bartlett, Takashi Uchida, Chuhua Zhang, J.C-C. Hu, V. Cttmers
Publikováno v:
Journal of Dental Research. 79:70-76
Enamel Matrix Serine Proteinase 1 (EMSP1) is a proteolytic enzyme that has been isolated from the developing enamel of pig teeth. Its apparent function is to degrade the organic matrix in preparation for enamel maturation. The expression of EMSP1 has
Autor:
Makoto Fukae, Kazuyoshi Wakida, Takahiro Satoda, Takashi Uchida, Hidehiro Ozawa, James P. Simmer, Norio Amizuka, Chikage Murakami
Publikováno v:
Histochemistry and Cell Biology. 111:297-303
Amelogenins are the most abundant constituent in the enamel matrix of developing teeth. Recent investigations of rodent incisors and molar tooth germs revealed that amelogenins are expressed not only in secretory ameloblasts but also in maturation am
Autor:
Hidemi Kurihara, Chikage Murakami, Masaharu Shimizu, Takashi Uchida, Yasuo Yamakoshi, N. Dohi, James P. Simmer, Makoto Fukae, Yasuhiro Yamamoto, T. Tanabe, Kazuyoshi Wakida
Publikováno v:
Cell and Tissue Research. 293:313-325
Enamelins comprise an important family of the enamel matrix proteins. Porcine tooth germs were investigated immunochemically and immunocytochemically using two antibodies: a polyclonal antibody raised against the porcine 89-kDa enamelin (89 E) and an
Autor:
Osamu Takahashi, Yasuko Iwai, N. Dohi, Chikage Murakami, Makoto Fukae, James P. Simmer, Takashi Uchida, Kazuyoshi Wakida, Takahiro Satoda
Publikováno v:
European Journal of Oral Sciences. 106:308-314
We investigated expression of ameloblastin and sheathlin, recently cloned enamel matrix proteins from the rat and pig, in forming enamel immunocytochemically and immunochemically, using region-specific antibodies. The results obtained from the rat an
Autor:
Naofumi Dohi, Osamu Takahashi, Chikage Murakami, Takahiro Satoda, Takashi Uchida, Kazuyoshi Wakida
Publikováno v:
Journal of Histochemistry & Cytochemistry. 45:1329-1340
Rat ameloblastin is a recently cloned tooth-specific enamel matrix protein containing 422 amino acid residues. We investigated the expression of this protein during the matrix formation stage of the rat incisor immunohistochemically and immunochemica
Autor:
Makoto Fukae, Takahiro Satoda, N. Dohi, James P. Simmer, Yasuo Yamakoshi, Kazuyoshi Wakida, O.H. Ryu, T. Tanabe, Chikage Murakami, M. Shimizu, Osamu Takahashi, Takashi Uchida
Publikováno v:
Histochemistry and Cell Biology. 107:485-494
Our previous report identified 27- and 29-kDa calcium-binding proteins in porcine immature dental enamel. In this study we revealed that the N-terminal amino acid sequences of the two proteins were identical: LLANPXGXIPNLARGPAGRSRGPPG. The sequence m
Autor:
Kazuyoshi Wakida, Takashi Uchida, Hiromasa Nikai, Ming Zhao, Sunao Sato, Yasusei Kudo, Ikuko Ogawa, Takashi Takata
Publikováno v:
Scopus-Elsevier
The present study attempted to discover the sites of synthesis of various glycosaminoglycans (GAGs) and aggrecan in salivary pleomorphic adenoma (PA) with the use of a highly sensitive and specific post-embedding immunogold-silver staining technique
Autor:
Makoto Fukae, Chikage Murakami, S. K. Lee, T. Tanabe, Takashi Uchida, Yoshihiko Yamada, Kazuyoshi Wakida, John D. Bartlett, O.H. Ryu, James P. Simmer
Publikováno v:
Journal of dental research. 77(8)
The formation of dental enamel is a precisely regulated and dynamic developmental process. The forming enamel starts as a soft, protein-rich tissue and ends as a hard tissue that is is over 95% mineral by weight. Intact amelogenin and its proteolytic