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Materials (Basel, Switzerland)|August 15, 2017
Effects of Adding Polysaccharides and Citric Acid into Sodium Dihydrogen Phosphate Mixing Solution on the Material Properties of Gelatin-Hybridized Calcium-Phosphate CementKeishi Kiminami, Toshiisa Konishi, Minori Mizumoto, et al.Anticancer Research|August 9, 2015
Advanced Chemoembolization by Anti-angiogenic Calcium-Phosphate Ceramic Microspheres Targeting the Vascular Heterogeneity of Cancer XenograftsMakoto Emoto, Hajime Yoshihisa, Kyoko Yano, et al.Materials Science & Engineering. C, Materials for Biological Applications|November 26, 2013
Mouse embryonic stem cells cultured under serum- and feeder-free conditions maintain their self-renewal capacity on hydroxyapatiteAkiko Nagai, Tatsuya Hattori, Michiko Hirose, et al.Biomaterials|November 17, 2009
The effect of timing in the administration of hepatocyte growth factor to modulate BMP-2-induced osteoblast differentiationToshiki Kawasaki, Yasuo Niki, Takeshi Miyamoto, et al.Journal of Biomedical Materials Research. Part B, Applied Biomaterials|July 25, 2024
Initial bone tissue reactions of hydroxyapatite/collagen-(3-glycidoxypropyl)trimethoxysilane injectable bone pasteTaira Sato, Yuki Shirosaki, Sho Oshima, et al.International Journal of Molecular Sciences|December 10, 2021
Influence of Culture Period on Osteoblast Differentiation of Tissue-Engineered Bone Constructed by Apatite-Fiber Scaffolds Using Radial-Flow BioreactorKitaru Suzuki, Jun Fukasawa, Maiko Miura, et al.Materials Science & Engineering. C, Materials for Biological Applications|October 8, 2013
In vitro and in vivo antimicrobial properties of silver-containing hydroxyapatite prepared via ultrasonic spray pyrolysis routeMichiyo Honda, Yusuke Kawanobe, Ken Ishii, et al.Materials (Basel, Switzerland)|April 9, 2024
Material Design of Porous Hydroxyapatite Ceramics via Inverse Analysis of an Estimation Model for Bone-Forming Ability Based on Machine Learning and Experimental Validation of Biological Hard Tissue ResponsesShota Horikawa, Kitaru Suzuki, Kohei Motojima, et al.Science and Technology of Advanced Materials|July 5, 2021
Bioresorbable porous β-tricalcium phosphate chelate-setting cements with poly(lactic-co-glycolic acid) particles as pore-forming agent: fabrication, material properties, cytotoxicity, and <i>in vivo</i> evaluationAkihiro Ando, Maho Kamikura, Yuko Takeoka, et al.Journal of Biomedical Materials Research. Part B, Applied Biomaterials|November 18, 2017
Fabrication of chelate-setting α-tricalcium phosphate cement using sodium citrate and sodium alginate as mixing solution and its in vivo osteoconductivityToshiisa Konishi, Poon Nian Lim, Michiyo Honda, et al.Pageof 7