Yasuyuki Shiozaki
Okayama University
17 Papers
27 Citations
Yasuyuki Shiozaki is an academic researcher from Okayama University. The author has contributed to research in topics: Perforation (oil well) & In vivo. The author has an hindex of 8, co-authored 15 publications.
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Papers
A novel, visible light-induced, rapidly cross-linkable gelatin scaffold for osteochondral tissue engineering
Tetsuro Mazaki,Yasuyuki Shiozaki,Kentaro Yamane,Aki Yoshida,Mariko Nakamura,Yasuhiro Yoshida,Di Zhou,Takashi Kitajima,Masato Tanaka,Yoshihiro Ito,Toshifumi Ozaki,Akihiro Matsukawa +11 more
TL;DR: This novel, photo-cross-linkable gelatin appears to be a promising scaffold for the treatment of osteochondral injury.
miRNA-133a-5p Inhibits the Expression of Osteoblast Differentiation-Associated Markers by Targeting the 3' UTR of RUNX2.
Wei Zhang,Yonggang Wu,Yasuyuki Shiozaki,Yoshihisa Sugimoto,Tomoyuki Takigawa,Masato Tanaka,Akihiro Matsukawa,Toshifumi Ozaki +7 more
TL;DR: The study suggests that miRNA-133a-5p might be an important target to inhibit osteoblast differentiation in osteoporosis.
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Enhanced in vivo osteogenesis by nanocarrier-fused bone morphogenetic protein-4
Yasuyuki Shiozaki,Takashi Kitajima,Tetsuro Mazaki,Aki Yoshida,Masato Tanaka,Akihiro Umezawa,Mariko Nakamura,Yasuhiro Yoshida,Yoshihiro Ito,Toshifumi Ozaki,Akihiro Matsukawa +10 more
TL;DR: In vivo osteogenic capability of an engineered bone morphogenetic protein-4 (BMP4) fusion protein fused with a nanosized carrier, collagen-binding domain (CBD) enhanced the retention of BMP4 in the bone, thereby promoting augmented osteogenic responses in the absence of a scaffold.
Bone engineering by phosphorylated-pullulan and β-TCP composite.
Tomohiro Takahata,Takumi Okihara,Yasuhiro Yoshida,Kumiko Yoshihara,Yasuyuki Shiozaki,Aki Yoshida,Kentaro Yamane,Noriyuki Watanabe,Masahide Yoshimura,Mariko Nakamura,Masao Irie,Bart Van Meerbeek,Masato Tanaka,Toshifumi Ozaki,Akihiro Matsukawa +14 more
TL;DR: PPL/β-TCP composite may be useful for bone engineering, and in vivo osteoconductivity and in vitro evaluation of the mechanical properties of PPL demonstrated both PPL and PPL/ β- TCP composites have higher shear bond strength than materials in current clinical use.
Clinical accuracy of three-dimensional fluoroscopy (IsoC-3D)-assisted upper thoracic pedicle screw insertion
Yoshihisa Sugimoto,Yasuo Ito,Masao Tomioka,Tetsuya Shimokawa,Yasuyuki Shiozaki,Tetsuro Mazaki,Masato Tanaka +6 more
TL;DR: This study reduced pedicle screw misplacement at the level of the C7 and upper thoracic (T1-6) vertebrae using the three-dimensional fluoroscopy navigation system.