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In vivo evaluation of bioactive glass foams associated with platelet-rich plasma in bone defects

机译:骨缺损中与富含血小板血浆相关的生物活性玻璃泡沫的体内评估

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摘要

The objective of this study was to evaluate the use of bioactive glass foams produced by the sol-gel process, associated or not with platelet-rich plasma (PRP), in the regeneration of bone defects. Mongrel dogs (n = 14) were divided into two groups after having their superior first premolar removed. A small piece of vestibular bone from the alveolus was intentionally removed. The area was filled with bioactive glass foam produced by the sol-gel method. Two groups were tested: group A was the glass foam; group B was the same material associated with PRP, prepared from each animal. The other side of alveolar bone was used as a control group, in which the bone defect did not receive any biomaterial. The thickness of the bone area was measured before and after the intervention. After a period of 60 days implantation, the right and left bones were measured again, and a bone biopsy on both regions was conducted for histological analysis. The findings show an increase of bone thickness for both materials implanted compared to the control group. Group B, implanted with bioactive glass foam associated with PRP, showed a thicker bone area compared to Group A. Histological results indicate bone formation for both materials used. However, the bioactive glass associated with PRP gave rise to a more mature bone formation. These results show that bioactive glass foams processed by a sol-gel method is effective in maintaining the thickness of the alveolar ridge, and the use of PRP associated with the foams improve bone formation.
机译:这项研究的目的是评估通过溶胶-凝胶法生产的生物活性玻璃泡沫(无论是否与富血小板血浆(PRP)相关)在骨缺损再生中的应用。杂种犬(n = 14)在去除它们的上颌第一前磨牙后被分为两组。故意从肺泡中取出一小块前庭骨。该区域充满了通过溶胶-凝胶法生产的生物活性玻璃泡沫。测试了两组:A组是玻璃泡沫; A组是玻璃泡沫。 B组是与从每只动物制备的PRP相关的相同材料。牙槽骨的另一侧用作对照组,其中骨缺损未接受任何生物材料。在介入之前和之后测量骨区域的厚度。植入60天后,再次测量左右骨骼,并对两个区域进行骨骼活检以进行组织学分析。研究结果表明,与对照组相比,两种材料的骨厚度均增加。与A组相比,B组植入了与PRP相关的生物活性玻璃泡沫,其骨骼面积更大。组织学结果表明,两种材料均会形成骨骼。然而,与PRP相关的生物活性玻璃引起了更成熟的骨形成。这些结果表明,通过溶胶-凝胶法加工的生物活性玻璃泡沫在保持牙槽的厚度方面是有效的,并且与泡沫相关的PRP的使用改善了骨的形成。

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