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Bone substitutes and photobiomodulation in bone regeneration: A systematic review in animal experimental studies

机译:骨再生中的骨替代和光生物调节:动物实验研究中的系统综述

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In general, bone fractures are able of healing by itself. However, in critical situations such as large bone defects, poor blood supply or even infections, the biological capacity of repair can be impaired, resulting in a delay of the consolidation process or even in non-union fractures. Thus, technologies able of improving the process of bone regeneration are of high demand. In this context, ceramic biomaterials-based bone substitutes and photobiomodulation (PBM) have been emerging as promising alternatives. Thus, the present study performed a systematic review targeting to analyze studies in the literature which investigated the effects of the association of ceramic based bone substitutes and PBM in the process of bone healing using animal models of bone defects. The search was conducted from March and April of 2019 in PubMed, Web of Science and Scopus databases. After the eligibility analyses, 16 studies were included in this review. The results showed that the most common material used was hydroxyapatite (HA) followed by Biosilicate associated with infrared PBM. Furthermore, 75% of the studies demonstrated positive effects to stimulate bone regeneration from association of ceramic biomaterials and PBM. All studies used low-level laser therapy (LLLT) device and the most studies used LLLT infrared. The evidence synthesis was moderate for all experimental studies for the variable histological analysis demonstrating the efficacy of techniques on the process of bone repair stimulation. In conclusion, this review demonstrates that the association of ceramic biomaterials and PBM presented positive effects for bone repair in experimental models of bone defects.
机译:一般来说,骨折可以自行愈合。然而,在严重情况下,如大面积骨缺损、血液供应不良甚至感染,修复的生物能力可能会受损,导致巩固过程延迟,甚至导致骨折不愈合。因此,能够改善骨再生过程的技术具有很高的需求。在这种背景下,基于陶瓷生物材料的骨替代物和光生物调节(PBM)已成为有前途的替代品。因此,本研究进行了系统综述,旨在分析文献中的研究,这些研究使用骨缺损动物模型研究了陶瓷基骨替代物和PBM在骨愈合过程中的作用。该搜索于2019年3月和4月在PubMed、科学网和Scopus数据库中进行。在资格分析之后,16项研究被纳入本次审查。结果表明,最常用的材料是羟基磷灰石(HA),其次是与红外PBM相关的生物硅酸盐。此外,75%的研究表明,陶瓷生物材料与PBM的结合对刺激骨再生有积极作用。所有研究均使用低强度激光治疗(LLLT)设备,大多数研究使用LLLT红外线。对于证明技术对骨修复刺激过程有效性的可变组织学分析的所有实验研究而言,证据综合是适度的。总之,这篇综述表明,在骨缺损的实验模型中,陶瓷生物材料和PBM的结合对骨修复有积极的作用。

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