首页> 外文会议>Mechanisms of photobiomodulation therapy XI >Biochemical Changes on the Repair of Surgical Bone Defects Grafted with Biphasic Synthetic Micro-Granular HA + β-Tricalcium Phosphate Induced by Laser and LED Phototherapies Assessed by Raman Spectroscopy
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Biochemical Changes on the Repair of Surgical Bone Defects Grafted with Biphasic Synthetic Micro-Granular HA + β-Tricalcium Phosphate Induced by Laser and LED Phototherapies Assessed by Raman Spectroscopy

机译:激光和LED光疗诱导的两相合成微颗粒HA +β-磷酸三钙移植修复骨缺损的生化变化

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This work aimed the assessment of the biochemical changes during bone mineralization induced by laser and LED irradiation in an animal model of bone repair using a spectral model based on Raman spectroscopy. Six groups were studied: Clot, Laser (λ780 nm, 70 mW), LED (λ850 nm ± 10 nm, 150 mW), Biomaterial (biphasic synthetic micro-granular hydroxyapatite (HA) + β-tricalcium phosphate), Laser + Biomaterial and LED + Biomaterial. When indicated, defects were further irradiated at 48 h interval during 2 wks, 20 J/cm2 per session. At 15th and 30th days, femurs were dissected and spectra of the defects were collected. Raman spectra were submitted to a model to estimate the relative amount of collagen, phosphate HA and carbonate HA, by using spectra of pure collagen, biomaterial and basal bone, respectively. At 15th days, the use of biomaterial associated to phototherapy reduced the collagen formation, whereas the amount of carbonate HA was not different in all groups. The phosphate HA was higher in the groups that received biomaterial grafts. At 30th days, it was observed an increase of collagen for the group Laser + Biomaterial, and a reduction in the carbonate HA for the LED + Biomaterial. The phosphate HA was higher for the groups LED + Biomaterial and Laser + Biomaterial, while decreased for the group Biomaterial. These results indicated that the use of Laser and LED phototherapies improved the repair of bone defects grafted with the biomaterial by increasing the collagen deposition and phosphate HA.
机译:这项工作的目的是使用基于拉曼光谱的光谱模型评估在骨骼修复动物模型中由激光和LED辐射诱导的骨骼矿化过程中的生化变化。研究了六组:凝块,激光(λ780nm,70 mW),LED(λ850nm±10 nm,150 mW),生物材料(双相合成微颗粒羟基磷灰石(HA)+β-磷酸三钙),激光+生物材料和LED +生物材料。当指示时,在2周内以48 h的间隔进一步照射缺陷,每次疗程20 J / cm2。在第15和30天,解剖股骨并收集缺陷的光谱。通过分别使用纯胶原蛋白,生物材料和基底骨的光谱,将拉曼光谱提交给模型,以估计胶原蛋白,磷酸盐HA和碳酸盐HA的相对量。在第15天,与光疗相关的生物材料的使用减少了胶原蛋白的形成,而所有组中碳酸盐HA的含量并没有不同。在接受生物材料移植的组中,磷酸盐HA较高。在第30天,观察到激光+生物材料组的胶原蛋白增加,而LED +生物材料的碳酸盐HA降低。 LED +生物材料和激光+生物材料组的磷酸盐HA较高,而生物材料组的磷酸盐HA降低。这些结果表明,激光和LED光疗的使用通过增加胶原蛋白沉积和磷酸盐HA,改善了生物材料移植的骨缺损的修复。

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