Hayakawa Tohru, Takahashi Kenichi, Okada Hiroyuki, Yoshinari Masao, Hara Hiroki, Mochizuki Chihiro, Yamamoto Hirotsugu, Sato Mitsunobu
Department of Dental Biomaterials, Nihon University School of Dentistry, 2-870-1, Sakaecho-nishi, Matsudo, Chiba 271-8587, Japan.
J Mater Sci Mater Med. 2008 May;19(5):2087-96. doi: 10.1007/s10856-007-3293-1. Epub 2007 Oct 30.
The influence of thin carbonate-containing apatite (CA) coating on trabecular bone response to cylindrical titanium fiber mesh (porosity of 85%, pore size of 200-300 microm, 2.8 mm diameter x 6 mm length) implants was investigated. Thin CA coatings were deposited by the so-called molecular precursor method. Molecular precursor solution was obtained by adding dibutylammonium diphosphate salt to Ca-EDTA/amine ethanol solution by adjusting Ca/P = 1.67. Sintered cylindrical titanium fiber mesh was immersed into molecular precursor solution and then tempered at 600 degrees C for 2 h. The immersion and tempering process was repeated three times. An adherent thin CA film could be deposited on the inside of titanium fiber mesh. After the immersion of a CA-coated titanium fiber mesh in simulated body fluid, apatite crystals precipitated on the titanium fiber mesh. Uncoated and CA-coated titanium fiber mesh was inserted into the trabecular bone of the left and right femoral condyles of rabbits. Histological and histomorphometrical evaluation revealed a significantly greater amount of bone formation inside the porous area of the CA-coated titanium fiber mesh after 12 weeks of implantation. The present results suggested that a thin CA-coated titanium mesh has better osteoconductivity and will be useful for a three-dimensional scaffold.
研究了含碳酸磷灰石(CA)的薄涂层对松质骨对圆柱形钛纤维网(孔隙率85%,孔径200 - 300微米,直径2.8毫米×长度6毫米)植入物反应的影响。薄CA涂层通过所谓的分子前驱体法沉积。通过将二丁基磷酸二铵盐加入到Ca - EDTA/胺乙醇溶液中并调节Ca/P = 1.67来获得分子前驱体溶液。将烧结的圆柱形钛纤维网浸入分子前驱体溶液中,然后在600℃下回火2小时。浸入和回火过程重复三次。可以在钛纤维网内部沉积一层附着的薄CA膜。将涂有CA的钛纤维网浸入模拟体液后,磷灰石晶体在钛纤维网上沉淀。将未涂层和涂有CA的钛纤维网分别植入兔左右股骨髁的松质骨中。组织学和组织形态计量学评估显示,植入12周后,涂有CA的钛纤维网多孔区域内的骨形成量明显更多。目前的结果表明,薄CA涂层钛网具有更好的骨传导性,将可用于三维支架。