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阳极氧化涂层联合光生物调节能否优化去卵巢动物模型的骨愈合?

Is an anodizing coating associated to the photobiomodulation able to optimize bone healing in ovariectomized animal model?

机构信息

Department of Diagnosis and Surgery, Aracatuba School of Dentistry, São Paulo State University (UNESP), Araçatuba, São Paulo, Brazil.

Technological Plasma Laboratory (LaPTec), Experimental Campus of Sorocaba, São Paulo State University (UNESP), Sorocaba, São Paulo, Brazil.

出版信息

J Photochem Photobiol B. 2021 Apr;217:112167. doi: 10.1016/j.jphotobiol.2021.112167. Epub 2021 Feb 26.

Abstract

This in vivo study investigated whether the bioactivity of anodizing coating, produced by plasma electrolytic oxidation (PEO), on mini-plate in femur fracture could be improved with the association of photobiomodulation (PBM) therapy. From the 20 ovariectomized Wistar female rats, 8 were used for model characterization, and the remaining 12 were divided into four groups according to the use of PBM therapy by diode laser (808 nm; power: 100 mW; energy: 6.0 J; energy density: 212 J/cm; power density: 3.5 W/cm) and the type of mini-plate surface (commercially pure titanium mini-plate -cpTi- and PEO-treated mini-plate) as follow: cpTi; PEO; cpTi/PBM; and PEO/PBM. After 60 days of surgery, fracture healing underwent microstructural, bone turnover, histometric, and histologic adjacent muscle analysis. Animals of groups with PEO and PBM showed greater fracture healing than cpTi control group under histometric and microstructural analysis (P < 0.05); however, bone turnover was just improved in PBM's groups (P < 0.05). there was no difference between cpTi and PEO without PBM (P > 0.05). Adjacent muscle analysis showed no metallic particles or muscle alterations in all groups. PEO and PBM are effective strategies for bone repair in fractures, however their association does not provide additional advantages.

摘要

这项体内研究旨在探讨通过等离子电解氧化(PEO)在股骨骨折迷你板上生成的阳极氧化涂层的生物活性是否可以通过光生物调节(PBM)治疗联合得到改善。在 20 只去卵巢 Wistar 雌性大鼠中,8 只为模型特征描述组,其余 12 只大鼠根据二极管激光(808nm;功率:100mW;能量:6.0J;能量密度:212J/cm;功率密度:3.5W/cm)的 PBM 治疗和迷你板表面类型(纯钛迷你板-cpTi-和 PEO 处理迷你板)分为 4 组:cpTi;PEO;cpTi/PBM;和 PEO/PBM。手术后 60 天,对骨折愈合进行了微观结构、骨转换、组织学和相邻肌肉组织学分析。在组织学和微观结构分析中,PEO 和 PBM 组的骨折愈合比 cpTi 对照组更好(P<0.05);然而,只有 PBM 组的骨转换得到改善(P<0.05)。cpTi 与未接受 PBM 的 PEO 之间没有差异(P>0.05)。所有组的相邻肌肉分析均未显示出金属颗粒或肌肉改变。PEO 和 PBM 是骨折骨修复的有效策略,但它们的联合使用并没有提供额外的优势。

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