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Effect of polymer molecular weight on the bone biological activity of biodegradable polymer/calcium phosphate cement composites.

机译:聚合物分子量对可生物降解的聚合物/磷酸钙水泥复合材料的骨生物学活性的影响。

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摘要

Previous studies demonstrated that the addition of biodegradable polymer microparticles to calcium phosphate (CaP) cement improves the cement's degradative behavior without affecting its handling characteristics, especially its injectability and moldability. We investigated the influence of molecular weight of polymeric microparticles included in CaP cement on implant degradation and bone formation in critical-sized defects. Forty rats received cranial defects filled with formulations of CaP cement and poly(DL-lactic-co-glycolic acid) (PLGA) microparticles. Microparticles consisted of 100% high- (HMW) or low-molecular-weight (LMW) PLGA or mixtures of these (25%, 50%, or 75%). Implantation time was 12 weeks. Porosity measurements showed that the 100% HMW group was significantly less porous than the other groups. Histology and histomorphometry revealed significantly greater implant degradation in the 100% LMW group. Defect bridging was mainly seen in the 75% and 100% LMW groups, with the highest amount of bone in the 100% LMW formulation. These results suggest that LMW PLGA microparticles are associated with better bone formation than HMW PLGA, which is most likely explained by the greater degradation of LMW PLGA microparticles. In conclusion, CaP cement composites with high percentages of LMW PLGA microparticles show good bone transductive behavior, with complete defect bridging. The 100% LMW group turned out to be the best formulation.
机译:先前的研究表明,将可生物降解的聚合物微粒添加到磷酸钙(CaP)水泥中可改善水泥的降解性能,而不会影响其处理特性,尤其是其可注射性和可模塑性。我们研究了CaP水泥中包含的聚合物微粒的分子量对临界尺寸缺损中植入物降解和骨形成的影响。 40只大鼠的颅骨缺损充满了CaP水泥和聚(DL-乳酸-乙醇酸共聚物)(PLGA)微粒的配方。微粒由100%高分子量(HMW)或低分子量(LMW)PLGA或它们的混合物(25%,50%或75%)组成。植入时间为12周。孔隙率测量表明,100%HMW组的孔隙率明显低于其他组。组织学和组织形态学分析显示,在100%LMW组中植入物的降解明显更大。缺陷桥接主要见于75%和100%LMW组,在100%LMW配方中骨量最多。这些结果表明,LMW PLGA微粒比HMW PLGA具有更好的骨骼形成,这很可能是LMW PLGA微粒降解程度更大的原因。总之,具有高百分比的LMW PLGA微粒的CaP水泥复合材料表现出良好的骨传导性能,具有完全的缺陷桥接。事实证明100%LMW组是最好的配方。

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