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Application of a 3D printed customized implant for canine cruciate ligament treatment by tibial tuberosity advancement

机译:3D打印定制植入物在胫骨结节性增生治疗犬十字韧带中的应用

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摘要

Fabrication of customized implants based on patient bone defect characteristics is required for successful clinical application of bone tissue engineering. Recently a new surgical procedure, tibial tuberosity advancement (TTA), has been used to treat cranial cruciate ligament (CrCL) deficient stifle joints in dogs, which involves an osteotomy and the use of substitutes to restore the bone. However, limitations in the use of non-biodegradable implants have been reported. To overcome these limitations, this study presents the development of a bioceramic customized cage to treat a large domestic dog assigned for TTA treatment. A cage was designed using a suitable topology optimization methodology in order to maximize its permeability whilst maintaining the structural integrity, and was manufactured using low temperature 3D printing and implanted in a dog. The cage material and structure was adequately characterized prior to implantation and the in vivo response was carefully monitored regarding the biological response and patient limb function. The manufacturing process resulted in a cage composed of brushite, monetite and tricalcium phosphate, and a highly permeable porous morphology. An overall porosity of 59.2% was achieved by the combination of a microporosity of approximately 40% and a designed interconnected macropore network with pore sizes of 845 μm. The mechanical properties were in the range of the trabecular bone although limitations in the cage's reliability and capacity to absorb energy were identified. The dog's limb function was completely restored without patient lameness or any adverse complications and also the local biocompatibility and osteoconductivity were improved. Based on these observations it was possible to conclude that the successful design, fabrication and application of a customized cage for a dog CrCL treatment using a modified TTA technique is a promising method for the future fabrication of patient-specific bone implants, although clinical trials are required.
机译:基于患者骨缺损特征的定制植入物的制造对于骨组织工程的成功临床应用是必需的。最近,一种新的外科手术方法,即胫骨结节进展术(TTA),已被用于治疗犬的颅十字韧带(CrCL)不足的窒息关节,这涉及截骨术和使用替代物来恢复骨骼。然而,已经报道了使用不可生物降解的植入物的限制。为了克服这些局限性,本研究提出了一种生物陶瓷定制笼子的开发,该笼子用于治疗分配给TTA治疗的大型家犬。为了使用笼子,并采用适当的拓扑优化方法设计了笼子,以便在保持结构完整性的同时最大化其通透性,并使用低温3D打印技术制造并植入狗中。在植入之前,先对笼子的材料和结构进行充分表征,并仔细监测体内反应,以了解生物学反应和患者肢体功能。在制造过程中,形成了由透钙磷石,褐铁矿和磷酸三钙组成的笼子,并具有高渗透性的多孔形态。通过将约40%的微孔率与设计的互连大孔网络(孔径为845μm)相结合,可实现59.2%的总孔隙率。尽管确定了笼子的可靠性和吸收能量的能力受到限制,但其机械性能在小梁骨范围内。狗的肢体功能完全恢复,没有患者la行或任何不良并发症,并且局部生物相容性和骨传导性得到改善。基于这些观察,有可能得出结论,尽管临床试验尚在进行中,但采用改良的TTA技术成功地设计,制造和应用定制的笼罩用于狗CrCL治疗的方法是未来制造患者专用骨植入物的有前途的方法。需要。

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