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Bone grafts and biomaterials substitutes for bone defect repair: A?review

机译:骨移植物和生物材料替代品可修复骨缺损:A?review

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Bone grafts have been predominated used to treat bone defects, delayed union or non-union, and spinal fusion in orthopaedic clinically for a period of time, despite the emergency of synthetic bone graft substitutes. Nevertheless, the integration of allogeneic grafts and synthetic substitutes with host bone was found jeopardized in long-term follow-up studies. Hence, the enhancement of osteointegration of these grafts and substitutes with host bone is considerably important. To address this problem, addition of various growth factors, such as bone morphogenetic proteins (BMPs), parathyroid hormone (PTH) and platelet rich plasma (PRP), into structural allografts and synthetic substitutes have been considered. Although clinical applications of these factors have exhibited good bone formation, their further application was limited due to high cost and potential adverse side effects. Alternatively, bioinorganic ions such as magnesium, strontium and zinc are considered as alternative of osteogenic biological factors. Hence, this paper aims to review the currently available bone grafts and bone substitutes as well as the biological and bio-inorganic factors for the treatments of bone defect.
机译:尽管有人工合成骨替代物的紧急情况,但骨移植已在临床上占主导地位,用于治疗骨缺损,延迟的愈合或不愈合以及骨科临床上的脊柱融合。然而,在长期的后续研究中发现异基因移植物和合成替代物与宿主骨的整合受到损害。因此,增强这些移植物和替代物与宿主骨的骨整合非常重要。为了解决这个问题,已经考虑将各种生长因子,例如骨形态发生蛋白(BMP),甲状旁腺激素(PTH)和富含血小板的血浆(PRP)添加到结构同种异体移植物和合成替代物中。尽管这些因素的临床应用已显示出良好的骨形成,但是由于高成本和潜在的不利副作用,它们的进一步应用受到限制。可替代地,诸如镁,锶和锌的生物无机离子被认为是成骨生物因子的替代物。因此,本文旨在综述目前可用的骨移植物和骨替代物以及用于治疗骨缺损的生物学和生物无机因素。

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