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Smart Injectable Self-Setting Monetite Based Bioceramics for Orthopedic Applications

机译:骨科应用的基于智能可注射自凝定的褐铁矿生物陶瓷

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摘要

The present study is the first of its kind dealing with the development of a specific bioceramic which qualifies as a potential material in hard-tissue replacements. Specifically, we report the synthesis and evaluation of smart injectable calcium phosphate bone cement (CPC) which we believe will be suitable for various kinds of orthopedic and spinal-fusion applications. The smart nature of this next generation orthopedic implant is attained by incorporating piezoelectric barium titanate (BT) particles into monetite-based (dicalcium phosphate anhydrous, DCPA) CPC composition. The main goal is to take advantage of the piezoelectric properties of BT, as electromechanical effect plays a vital role in fracture healing at the defect site and bone integration with the implant. Furthermore, radiopacity of BT would help in easy detection of the CPC presence at the fracture site during surgery. Results reveal that BT addition favors important properties of bone cement such as good compressive strength, injectability, bioactivity, biocompatibility, and even washout resistance. Most importantly, the self-setting nature of the bone cements are not compromised with BT incorporation. The in vitro results confirm that the developed bone-cement abides by the standard orthopedic requirements making it apt for real-time prosthetic materials.
机译:本研究是涉及特定生物陶瓷开发的同类研究中的首例,该生物陶瓷有资格作为硬组织替代物中的潜在材料。具体来说,我们报告了智能可注射磷酸钙骨水泥(CPC)的合成和评估,我们认为它们适用于各种骨科和脊柱融合应用。通过将压电钛酸钡(BT)颗粒掺入到基于沸石的(无水磷酸二钙,DCPA)CPC组合物中,可以实现这种下一代骨科植入物的巧妙特性。主要目标是利用BT的压电特性,因为机电效应在缺陷部位的骨折愈合以及与植入物的骨整合中起着至关重要的作用。此外,BT的射线不透性将有助于在手术过程中轻松检测骨折部位的CPC。结果表明,BT的加入有利于骨水泥的重要性能,例如良好的抗压强度,可注射性,生物活性,生物相容性,甚至耐冲洗性。最重要的是,骨水泥的自凝结性不会因BT掺入而受到损害。体外结果证实,开发的骨水泥符合标准的骨科要求,使其适合于实时修复材料。

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