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基于 3D 打印技术的股骨头坏死新型动物模型。

A novel animal model of osteonecrosis of the femoral head based on 3D printing technology.

机构信息

Second Affiliated Hospital of Xi'an Jiaotong University, Xi'an, China.

出版信息

J Orthop Surg Res. 2023 Aug 3;18(1):564. doi: 10.1186/s13018-023-04050-7.

Abstract

BACKGROUND

Osteonecrosis of the femoral head (ONFH) is a prevalent orthopedic condition characterized by the disruption of blood supply to the femoral head, leading to ischemia of internal tissues, subchondral bone fractures, necrosis, and eventual collapse of the weight-bearing portion of the femoral head. This condition results in severe functional impairment, pain, and even disability of the hip joint. Existing animal models of ONFH have limitations in replicating the natural disease progression accurately. Thus, there is a critical need to develop a novel animal model capable of better simulating localized pressure on the human femoral head to facilitate ONFH-related research.

METHODS

In this study, we present a novel approach for modeling ONFH, which involves integrating stress factors into the modeling process through the utilization of 3D printing technology and principles of biomechanics. A total of 36 animals were randomly assigned to six groups, where they received either the novel modeling technique or the traditional hormone induction method. Subsequently, an 8-week treatment period was implemented, followed by conducting micro-CT scans and histological evaluations to assess tissue outcomes.

RESULTS

The study evaluated the cytotoxicity of the material used in the new model, and it was observed that the material did not exhibit any cytotoxic effects on cells. Additionally, the novel model successfully replicated the pathological features of ONFH, including femoral head collapse, along with a substantial presence of empty bone lacunae, cartilage defects, and subchondral bone fractures in the subchondral bone region.

CONCLUSION

In conclusion, our study provides evidence that the new model shows the ability to simulate the progression of the disease, making it a valuable tool for research in this field and can contribute to the development of better treatment strategies for this debilitating condition. It holds great promise for advancing our understanding of the pathogenesis of ONFH and the potential therapeutic interventions for this challenging clinical problem.

摘要

背景

股骨头坏死(ONFH)是一种常见的骨科疾病,其特征是股骨头血供中断,导致内部组织缺血、软骨下骨骨折、坏死,最终股骨头承重部分塌陷。这种疾病会导致严重的功能障碍、疼痛,甚至髋关节残疾。现有的股骨头坏死动物模型在准确复制自然疾病进展方面存在局限性。因此,迫切需要开发一种新的动物模型,能够更好地模拟人股骨头的局部压力,以促进与股骨头坏死相关的研究。

方法

本研究提出了一种新的股骨头坏死模型制作方法,该方法通过利用 3D 打印技术和生物力学原理将应力因素纳入模型制作过程。总共 36 只动物被随机分配到六个组中,分别接受新模型制作技术或传统激素诱导方法的治疗。然后进行 8 周的治疗期,之后进行 micro-CT 扫描和组织学评估以评估组织结果。

结果

本研究评估了新材料在新模型中的细胞毒性,结果表明该材料对细胞没有任何细胞毒性作用。此外,新模型成功复制了股骨头坏死的病理特征,包括股骨头塌陷,以及大量空骨陷窝、软骨缺陷和软骨下骨骨折。

结论

总之,我们的研究表明新模型能够模拟疾病的进展,因此是该领域研究的有价值工具,并有助于开发治疗这种使人衰弱疾病的更好策略。它为我们深入了解股骨头坏死的发病机制以及对这一具有挑战性的临床问题的潜在治疗干预措施提供了巨大的希望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb31/10398913/4d0a2293bb99/13018_2023_4050_Fig1_HTML.jpg

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