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Macroporous calcium phosphate glass-ceramic prepared by two-step pressing technique and using sucrose as a pore former

机译:通过两步压制技术并以蔗糖为成孔剂制备的大孔磷酸钙微晶玻璃

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Macroporous calcium phosphate glass-ceramic with an initial glass composition of 60CaO center dot 30P(2)O(5)center dot 3TiO(2)center dot 7Na(2)O in mol% was successfully prepared by sintering the mixture compact consisting of calcium phosphate glass and sucrose powders, which was formed using a two-step pressing technique. After burning off the sucrose phase, a 3D interconnected macroporous structure was formed in the sintered body, in which the skeleton consisting of the calcium phosphate glass-ceramic (including beta-calcium pyrophosphate and beta-tricalcium phosphate as the crystalline phases) was transformed from the initial glass during the sintering. The macropores with several hundred microns in diameter and the large interconnection size (similar to 100 mu m), which result from the controllably large-sized sucrose particles and the hot-pressing at a little higher temperature than the sucrose's melting point, are believed to meet the requirements for cell adhesion and bone tissue regeneration well. Moreover, in vitro dissolution behavior study indicates that the calcium phosphate glass-ceramic is soluble to an acetic acid solution of pH 5-7. These, together with the simplicity and feasibility of the innovative fabrication method itself, show that the formed porous glass-ceramic has a promising potential for application to a scaffold for bone tissue engineering. (C) 2005 Springer Science + Business Media, Inc.
机译:通过烧结由钙组成的混合压块成功地制备了初始玻璃组成为60CaO中心点30P(2)O(5)中心点3TiO(2)中心点7Na(2)O的大孔磷酸钙玻璃陶瓷磷酸盐玻璃和蔗糖粉,采用两步压制技术形成。烧掉蔗糖相后,在烧结体中形成3D互连的大孔结构,其中由磷酸钙玻璃陶瓷(包括β-焦磷酸钙和β-磷酸三钙作为结晶相)组成的骨架从烧结过程中的初始玻璃。人们认为,直径为几百微米且互连尺寸较大(约100微米)的大孔是由可控的大尺寸蔗糖颗粒和比蔗糖熔点高一点的温度下的热压所致。满足细胞粘附和骨组织再生的要求。此外,体外溶解行为研究表明磷酸钙玻璃陶瓷可溶于pH 5-7的乙酸溶液。这些以及创新制造方法本身的简单性和可行性表明,所形成的多孔玻璃陶瓷具有有望应用于骨组织工程支架的潜力。 (C)2005年Springer Science + Business Media,Inc.

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