Bone implants--a challenge to materials science.

Annales chirurgiae et gynaecologiae Pub Date : 1999-01-01
K H Karlsson
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Abstract

The review paper discusses the conditions for obtaining in vivo a composite from a synthetic, inorganic material and collagen fibres. Bone itself is a composite containing collagen fibres and hydroxoapatite crystals. The crystal size is, however, far smaller than can be made using conventional methods of ceramics technology. The paper discusses therefore the possibilities to synthesize the apatite in a gel. The requirements of initial load bearing can be met by forming the gel on the surface of glass particle, sintered to a porous body. In the pores calcium ions react with the gel to form (= SiO)Ca+ complexes. When the phosphate concentration in the pore is high enough to exceed the solubility product of apatite, the calcium-gel complexes release the calcium and highly dispersed apatite crystallites are precipitated in the gel. These give the gel the osteoconductive properties observed for bioactive glasses. Glass compositions, which give a gel surface enough hydrated to form calcium complexes, are discussed.

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骨植入物——对材料科学的挑战。
本文讨论了从合成无机材料和胶原纤维中获得体内复合材料的条件。骨本身是一种含有胶原纤维和羟基磷灰石晶体的复合物。然而,晶体尺寸远远小于使用传统陶瓷技术方法所能制造的晶体尺寸。因此,本文讨论了在凝胶中合成磷灰石的可能性。通过在玻璃颗粒表面形成凝胶,烧结成多孔体,可以满足初始承载的要求。在孔隙中,钙离子与凝胶反应形成(= SiO)Ca+络合物。当孔隙中的磷酸盐浓度高到超过磷灰石的溶解度时,钙-凝胶复合物释放出钙,凝胶中析出高度分散的磷灰石晶体。这使得凝胶具有生物活性玻璃的骨导电性。讨论了使凝胶表面足够水合形成钙配合物的玻璃组合物。
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