表皮生长因子和透明质酸对大鼠股骨骨折模型骨折愈合影响的研究。

Barış Can Kuzuca, Mahmut Nedim Doral, Laura Mangiavini, Ersin Sapmaz, Nicola Maffulli, Murat Koken
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引用次数: 0

摘要

目的:本研究旨在研究外源性表皮生长因子和透明质酸支架在大鼠股骨骨折模型骨折愈合中的作用。方法:48只雄性Wistar Albino大鼠,每只平均体重392克(范围=350-450克),年龄8.2个月(6-9个月),用于本实验研究。所有手术均由一名外科医生对左股骨进行。所有大鼠均发生开放性股骨骨折。将动物随机分为四组中的一组:对照组(12)、EGF组(12个)、HA组(12个子组)和联合组(12子组)。在第4周和第6周,使用生物力学和组织学方法对样本进行处理和分析。结果:在两个实验时间点,与对照组、EGF组和HA组相比,联合组的骨折愈合在所有参数上都有显著改善。在手术后第四周和第六周,EGF和HA组的骨折愈合在组织学评估中比对照组显著增加。此外,与EGF、HA和对照组相比,在4周和6周的时间点,联合组的骨痂组织的生物力学特征存在显著差异。结论:本研究表明,局部EGF和HA支架结合可促进骨愈合,并在组织学和生物力学上增强骨痂。使用EGF-HA联合支架可能是创伤外科未来的一种可能策略。证据级别:不适用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation into the effect of epidermal growth factor and hyaluronic acid on fracture healing in a rat femoral fracture model.

Objective: This study aimed to investigate the role of an exogenous Epidermal Growth Factor and a hyaluronic acid-based scaffold on fracture healing in a rat femoral fracture model Methods: Forty-eight male Wistar-Albino rats, each weighing a mean 392 grams (range= 350-450 grams) and aged 8.2 months (6-9 months), were used for this experimental study. All surgical procedures were performed on the left femur by a single surgeon. An open femoral fracture was created in all rats. The animals were randomly divided into one of the four groups: Control (12), EGF (12), HA (12) and Combined (12). In the 4th and sixth weeks, samples were processed and analyzed using biomechanical and histological methods.

Results: Fracture healing was significantly improved in the Combined group compared to the control one, EGF and HA groups in all parameters at both experimental time points. At the fourth and sixth weeks after surgery, fracture healing in the EGF and HA groups was significantly increased at histological evaluation compared to controls. In addition, compared with EGF, HA and Control groups, a significant difference in callus tissue was detected in the Combined group at 4 and 6-week time points in biomechanical features.

Conclusion: This study has shown that combining local EGF and HA scaffold accelerates bone healing and strengthens the bony callus histologically and biomechanically. Using EGF-HA combined scaffolds may represent a possible future strategy in trauma surgery.

Level of evidence: N/A.

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