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Current Application of β‐tricalcium Phosphate Composites in Orthopaedics

机译:β-磷酸三钙复合材料在骨科中的应用现状

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摘要

Presently, bioceramic materials have been extensively used in spinal surgery as bone grafts; however, there are some limitations for bioceramic materials. Calcium sulfate is rapidly absorbed in vivo, the degradation of which often occurs prior to the formation of new bones. Hydroxyapatite (HA) is hardly absorbed, which blocks the formation of new bones and remodeling, and results in poor local stability or permanent stress concentration. Only β‐tricalcium phosphate (β‐TCP) is relatively balanced between scaffold absorption and bone formation. And it is a good biodegradable ceramic material that could supply a large quantity of calcium ion and sulfate ion as well as scaffold structure for bone regeneration. However, the problem of single β‐TCP is lack of osteoinductivity and osteogenicity, which restricts its application. Therefore β‐TCP composite materials have been used in the field of orthopaedics in recent decades, which fully use excellent properties of other bone repairing materials, such as biodegradability, osteoinductivity, osteogenicity and osteoconductivity. These materials make up for the deficiencies of single β‐TCP and endow β‐TCP with more biological and physical properties.
机译:目前,生物陶瓷材料已广泛用于脊柱外科手术中作为骨移植物。然而,生物陶瓷材料存在一些局限性。硫酸钙在体内迅速吸收,其降解通常发生在新骨骼形成之前。羟基磷灰石(HA)几乎不被吸收,从而阻碍了新骨的形成和重塑,并导致较差的局部稳定性或永久应力集中。支架吸收和骨形成之间只有β-磷酸三钙(β-TCP)相对平衡。它是一种很好的可生物降解的陶瓷材料,可以提供大量的钙离子和硫酸根离子以及用于骨骼再生的支架结构。但是,单个β-TCP的问题是缺乏骨诱导性和成骨性,这限制了其应用。因此,近几十年来,β-TCP复合材料已用于整形外科领域,该材料充分利用了其他骨修复材料的优异性能,例如生物降解性,骨诱导性,成骨性和骨传导性。这些材料弥补了单个β-TCP的不足,并赋予了β-TCP更多的生物学和物理特性。

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