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用于骨科应用的功能梯度可生物降解复合螺钉的制造工艺优化及力学评估

Optimization of the Manufacturing Process and Mechanical Evaluation of a Functionally Graded Biodegradable Composite Screw for Orthopedic Applications.

作者信息

Zargar Kharazi Anosheh, Hosseini Emad, Shafaat Amir, Fathi Mohammad Hosein

机构信息

Department of Biomaterials and Tissue Engineering, School of Advanced Technologies in Medicine, Isfahan University of Medical Sciences, Isfahan, Iran.

Physiology Research Center, Isfahan University of Medical Sciences, Isfahan, Iran.

出版信息

J Med Signals Sens. 2023 Aug 31;13(4):300-306. doi: 10.4103/jmss.jmss_5_23. eCollection 2023 Oct-Dec.

Abstract

BACKGROUND

Metal screws are commonly used for fracture fixations. However, the high modulus of elasticity relative to bones and releasing metallic ions by the metal screw needed a second surgery to remove the implant after the healing period. Furthermore, the removal of metal screws following the healing of the bone is a serious problem that can lead to refracture due to the presence of holes in the screw. Bioresorbable screws can overcome most of the problems associated with metallic screws which motivated research on manufacturing nonmetallic screws.

METHODS

In this study, three-layer poly L-lactic acid/bioactive glass composite screws were manufactured according to functionally graded material theory, by the forging process. All of the physical and chemical parameters in the manufacturing stages from making composite layers to the forging process were optimized to obtain suitable mechanical properties and durability off the screw in load-bearing positions.

RESULTS

The tri-layer composite screw with unidirectional, ±20° angled, and random fibers orientation from core to shell shows a flexural load of 661.5 ± 20.3 (N) with a decrease about 31% after 4-week degradation. Furthermore, its pull-out force was 1.8 ± 0.1 (N) which is considerably more than the degradable polymeric screws. Moreover, the integrity of the composite screws was maintained during the degradation process.

CONCLUSIONS

By optimizing the manufacturing process and composition of the composite and crystallinity, mechanical properties (flexural, torsion, and pull-out) were improved and making it a perfect candidate for load-bearing applications in orthopedic implants. Improving the fiber/matrix interface through the use of a coupling agent was also considered to preserve the initial mechanical properties. The manufactured screw is sufficiently robust enough to replace metals for orthopedic load-bearing applications.

摘要

背景

金属螺钉常用于骨折固定。然而,相对于骨骼而言,其弹性模量较高,并且金属螺钉会释放金属离子,这就需要在愈合期后进行二次手术取出植入物。此外,在骨骼愈合后取出金属螺钉是一个严重的问题,由于螺钉上存在孔洞,可能导致再次骨折。可生物吸收螺钉能够克服与金属螺钉相关的大多数问题,这激发了对制造非金属螺钉的研究。

方法

在本研究中,根据功能梯度材料理论,通过锻造工艺制造了三层聚L-乳酸/生物活性玻璃复合螺钉。从制备复合层到锻造过程的制造阶段中的所有物理和化学参数都进行了优化,以获得适合螺钉在承重位置的机械性能和耐久性。

结果

从核心到外壳具有单向、±20°角向和随机纤维取向的三层复合螺钉显示出661.5±20.3(N)的弯曲载荷,在4周降解后下降约31%。此外,其拔出力为1.8±0.1(N),大大超过了可降解聚合物螺钉。而且,复合螺钉在降解过程中保持完整。

结论

通过优化复合材料的制造工艺、组成和结晶度,改善了机械性能(弯曲、扭转和拔出),使其成为骨科植入物承重应用的理想候选材料。还考虑通过使用偶联剂来改善纤维/基体界面,以保持初始机械性能。制造的螺钉足够坚固,足以替代骨科承重应用中的金属。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b930/10559302/3e37c1467261/JMSS-13-300-g001.jpg

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