首页> 外文期刊>Journal of biomaterials applications >Feasibility evaluation of low-crystallinity -tricalcium phosphate blocks as a bone substitute fabricated by a dissolution-precipitation reaction from -tricalcium phosphate blocks
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Feasibility evaluation of low-crystallinity -tricalcium phosphate blocks as a bone substitute fabricated by a dissolution-precipitation reaction from -tricalcium phosphate blocks

机译:低结晶性磷酸钙块作为由磷酸钙块的溶解 - 沉淀反应制造的骨代替的磷酸钙嵌段的可行性评价

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摘要

Although sintered -tricalcium phosphate blocks have been used clinically as artificial bone substitutes, the crystallinity of -tricalcium phosphate, which might dominate biocompatibility, is extremely high. The objective of this study is to evaluate the feasibility of fabricating low-crystallinity -tricalcium phosphate blocks, which are expected to exhibit good biocompatibility via a dissolution-precipitation reaction of -tricalcium phosphate blocks as a precursor under hydrothermal conditions at 200 degrees C for 24 h. Although -tricalcium phosphate is a metastable phase, the presence of Mg2+ in the reaction solution inhibits the formation of its corresponding stable phase and induces -tricalcium phosphate formation under acidic conditions. It was found that low-crystallinity -tricalcium phosphate blocks could be fabricated from -tricalcium phosphate blocks immersed in 1.0mol/L MgCl2+0.1mol/L NaH2PO4 solution while maintaining the shape of the -tricalcium phosphate blocks. The crystallite size of the fabricated -tricalcium phosphate blocks was 42nm, which was substantially smaller than that of the sintered -tricalcium phosphate blocks. When the fabricated -tricalcium phosphate blocks were implanted into bone defects in rabbit femurs, they exhibited excellent tissue responses. In particular, the initial osteoconductivity (two and four weeks) was substantially greater than that of sintered -tricalcium phosphate blocks.
机译:虽然临床上已经使用烧结的磷酸钙嵌段作为人造骨替代品,但磷酸钙的结晶度可能使生物相容性占主导地位,非常高。本研究的目的是评估制造低结晶度磷酸钙嵌段的可行性,这预计通过磷酸钙嵌段的溶解 - 沉淀反应在200℃下的水热条件下作为前体表现出良好的生物相容性H。虽然磷酸钙是亚稳态相,但反应溶液中的Mg 2 +的存在抑制其相应的稳定相的形成,并在酸性条件下诱导磷酸钙形成。结果发现,低结晶度磷酸钙嵌段可以由浸入1.0mol / L MgCl 2 + 0.1mol / L NaH2PO4溶液中浸入1.0mol / L MgCl 2 + 0.1mol / L NaH2PO4溶液的同时,同时保持磷酸钙块的形状。制造的磷酸钙嵌段的微晶尺寸为42nm,其基本上小于烧结磷酸钙嵌段的微小。当拟合磷酸钙嵌段植入兔股骨中的骨缺陷时,它们表现出优异的组织反应。特别地,初始骨导电性(两到四周)基本上大于烧结磷酸钙嵌段的骨质导电性。

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