Bone induction and bone repair by composites of bone morphogenetic protein and biodegradable synthetic polymers.

S Miyamoto, K Takaoka
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Abstract

We developed adequate delivery systems for bone morphogenetic protein (BMP) to express its bone-inducing activity by combining it with biodegradable synthetic polymers, these causing no unfavorable tissue reaction or anti-BMP effect. Their efficacy was tested for ectopic bone formation in mice and reconstruction of large segmental bone defects of the tibiae in rabbits. Composites of semipurified BMP and polylactic acid--polyethylene glycol block copolymer (PLA-PEG), and composites of BMP, PLA-PEG and lactic acid--glycolic acid copolymer (PLGA) were implanted under the fasciae of the dorsal muscles of mice. Three weeks after implantation, both the BMP/PLA-PEG and BMP/PLA-PEG/PLGA composites were completely absorbed and replaced by newly induced bone with hematopoietic marrow. Because the BMP/PLA-PEG composite is a viscous semiliquid and the BMP/PLA-PEG/PLGA composite is a plastic and moldable, the former can be used as an injectable bone-inducing material and the latter as a plastic mold. The BMP/PLA-PEG/PLGA composites were implanted in large segmental bone defects in the tibiae in rabbits. Twelve weeks after implantation, the bone defect was completely restored by a newly formed bone mass of the original thickness and structure.

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骨形态发生蛋白与生物可降解合成聚合物复合材料的骨诱导与骨修复。
我们开发了足够的骨形态发生蛋白(BMP)递送系统,通过将其与可生物降解的合成聚合物结合来表达其诱导骨的活性,这些系统不会引起不利的组织反应或抗BMP作用。对其在小鼠异位骨形成和家兔胫骨大节段骨缺损重建中的作用进行了试验。将半纯化BMP -聚乳酸-聚乙二醇嵌段共聚物(PLA-PEG)复合材料,以及BMP - PLA-PEG -乳酸-乙醇酸共聚物(PLGA)复合材料植入小鼠背肌筋膜下。植入3周后,BMP/PLA-PEG和BMP/PLA-PEG/PLGA复合材料均被完全吸收,并被新生的造血骨髓诱导骨所取代。由于BMP/PLA-PEG复合材料是一种粘性半液体,而BMP/PLA-PEG/PLGA复合材料具有可塑性和模塑性,因此前者可以用作可注射的诱导骨材料,后者可以用作塑料模具。将BMP/PLA-PEG/PLGA复合材料植入兔胫骨大节段性骨缺损。植入12周后,骨缺损完全修复,形成具有原有厚度和结构的新骨块。
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