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光动力植入物在体内放射治疗对弯曲刚度影响的初步研究。

Pilot study on the in-vitro effect of radiation therapy on bending stiffness of intramedullary photodynamic implants.

机构信息

Division of Orthopaedic Oncology, Department of Orthopaedic Surgery, Massachusetts General Hospital, Harvard Medical School, Boston, MA, USA.

Department of Neurosurgery, Massachusetts General Hospital, Harvard Medical School, Boston, MA, USA.

出版信息

J Orthop Surg Res. 2024 Nov 21;19(1):779. doi: 10.1186/s13018-024-05272-z.

Abstract

Photodynamic implants are an increasingly popular minimally invasive option for the surgical treatment of metastatic bone disease. Following surgery, adjuvant radiation therapy (RT) is frequently administered to achieve better disease control and improve patient quality of life, but the role of RT in implant failures associated with photodynamic implants remains unclear. The aim of this study is to determine if the therapeutic RT range of 10-50 Gy affects the biomechanical properties of photodynamic implants. For the experimental group, 15 photodynamic implants were divided evenly into 5 groups that were exposed to different doses of RT (10, 20, 30, 40 and 50 Gy). The control group consisted of 14 non-irradiated photodynamic implants. Four-point bending tests were conducted on all implants to determine bending stiffness. One-way ANOVA was conducted. Bending stiffness (N/mm) mean ± standard deviation for the non-irradiated control group was 38.0 ± 1.2. Bending stiffness (N/mm) mean ± standard deviation for the irradiated experimental groups was 39.2 ± 1.0. No significant difference was found between any groups. RT doses at a range of 10-50 Gy do not affect the bending stiffness of photodynamic implants. The yield and ultimate failure loads were 263.4 ± 5.2 (N) and 305.9 ± 5.5 (N) in the non-irradiated group vs. 266.8 ± 6.4 (N) and 306.8 ± 6.4 (N) in the irradiated group, respectively. The lack of statistical significance in the difference in stiffness, yield, and ultimate load properties among the groups means that it is less likely that RT at the evaluated doses contributes to intrinsic implant failure. Further studies need to be conducted to conclude the potential effect of RT on other mechanical properties of photodynamic implants.

摘要

光动力植入物是一种越来越受欢迎的微创选择,用于治疗转移性骨疾病。手术后,常采用辅助放射治疗(RT)以更好地控制疾病并提高患者生活质量,但 RT 在与光动力植入物相关的植入物失败中的作用尚不清楚。本研究旨在确定治疗性 RT 范围 10-50Gy 是否会影响光动力植入物的生物力学特性。实验组的 15 个光动力植入物被平均分为 5 组,分别接受不同剂量的 RT(10、20、30、40 和 50Gy)。对照组由 14 个未辐照的光动力植入物组成。对所有植入物进行四点弯曲试验以确定弯曲刚度。进行单因素方差分析。未辐照对照组的弯曲刚度(N/mm)平均值±标准差为 38.0±1.2。辐照实验组的弯曲刚度(N/mm)平均值±标准差为 39.2±1.0。组间无显著差异。10-50Gy 的 RT 剂量不会影响光动力植入物的弯曲刚度。在未辐照组中,屈服和极限失效载荷分别为 263.4±5.2(N)和 305.9±5.5(N),而在辐照组中,屈服和极限失效载荷分别为 266.8±6.4(N)和 306.8±6.4(N)。组间刚度、屈服和极限载荷特性差异无统计学意义,这意味着在评估剂量下的 RT 不太可能导致植入物的内在失效。需要进一步研究以得出 RT 对光动力植入物其他机械性能的潜在影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3053/11580481/cc30efb20536/13018_2024_5272_Fig1_HTML.jpg

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