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首页> 外文期刊>Journal of Bioactive and Compatible Polymers >Intervertebral Spinal Fusion Using a RP-based PLGA/TCP/ bBMP Biomimetic Grafting Material
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Intervertebral Spinal Fusion Using a RP-based PLGA/TCP/ bBMP Biomimetic Grafting Material

机译:使用基于RP的PLGA / TCP / bBMP仿生移植材料进行椎间融合

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摘要

Three-dimensional highly porous poly(DL-lactic-co-glycolic acid)/ tricalcium phosphate (PLGA/TCP) scaffolds were synthesized via a rapid prototyping (RP) technique. Bovine bone morphogenetic protein (bBMP) was loaded into the biopolymer scaffolds (PLGA/TCP/bBMP). Both the PLGA/TCP scaffolds and the PLGA/TCP/bBMP composites were evaluated by scanning electron microscopy. Lumbar intervertebral body fusion at L2~3 and L4~5 levels were performed on 15 goats using one of the following graft materials: RP synthesized PLGA/TCP scaffolds (group A), PLGA/TCP/bBMP composites (group B), and autogenous iliac bone graft (group C). All animals were sacrificed 24 weeks after surgery and the spine fusions evaluated by manual palpation tests, histological analyses, and radiography. In group A, the histological analyses showed that the PLGA/TCP scaffolds were biocompatible and biodegradable; however, no new bone was found. In group B, highly cellular bone marrow between the new trabecular bone was present in the fusion mass.In group C, there was a lesser amount of new bone. Twenty-four weeks after surgery, the fusion rate of lumbar intervertebral body fusion in group A, B, and C was 10% (1/10), 80% (8/10), and 50% (5/10), respectively. The fusion rate was significantly higher in group B compared with groups of A and C (p<0.01). Based on these results, extracted bBMP can be loaded in vitro into RP-based highly porous structural PLGA/TCP scaffolds to fabricate new graft composites that appear to be more effective for intervertebral spinal fusions. This biomimetic artificial grafting material holds promise as a tool for spine surgery.
机译:通过快速成型(RP)技术合成了三维高度多孔的聚(DL-乳酸-乙醇酸共聚物)/磷酸三钙(PLGA / TCP)支架。将牛骨形态发生蛋白(bBMP)加载到生物聚合物支架(PLGA / TCP / bBMP)中。 PLGA / TCP支架和PLGA / TCP / bBMP复合材料均通过扫描电子显微镜进行评估。使用以下移植材料之一对15只山羊进行L2〜3和L4〜5水平的腰椎椎体融合:RP合成的PLGA / TCP支架(A组),PLGA / TCP / bBMP复合材料(B组)和自体骨移植(C组)。手术后24周将所有动物处死,并通过人工触诊测试,组织学分析和X线摄影评估脊柱融合。在A组中,组织学分析表明PLGA / TCP支架具有生物相容性和可生物降解性。但是,没有发现新的骨头。在B组中,融合小梁中存在新骨小梁之间的高细胞骨髓.C组中新骨的数量较少。手术后二十四周,A,B和C组的腰椎椎体融合术融合率分别为10%(1/10),80%(8/10)和50%(5/10)。 。 B组的融合率明显高于A和C组(p <0.01)。根据这些结果,可以将提取的bBMP体外装载到基于RP的高度多孔结构PLGA / TCP支架中,以制造新的移植复合材料,这些复合材料似乎对于椎间脊柱融合更有效。这种仿生人工移植材料有望作为脊柱手术的工具。

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