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首页> 外文期刊>Polymer Composites >Influences of Degradability, Bioactivity, and Biocompatibility of the Calcium Sulfate Content on a Calcium Sulfate/Poly(amino acid) Biocomposite for Orthopedic Reconstruction
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Influences of Degradability, Bioactivity, and Biocompatibility of the Calcium Sulfate Content on a Calcium Sulfate/Poly(amino acid) Biocomposite for Orthopedic Reconstruction

机译:硫酸钙含量的降解性,生物活性和生物相容性对用于骨科重建的硫酸钙/聚氨基酸生物复合材料的影响

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摘要

The inorganic content in a bioceramic/polymer composite is considered to play an important role in promoting bone healing after implantation in vivo. In this study, two calcium sulfate/poly(amino acid) (CS/PAA) composites with CS content proportions of 50% (mass fraction, 50CS/PAA) and 65% (65CS/PAA) were synthesized via the in situ melting polymerization method, and the degradability, bioactivity, and biocompatibility of the composites were evaluated. The results indicated that 41.5% of weight loss of the 50CS/PAA was observed after soaking in simulated body fluid (SBF) for 16 weeks, whereas 56.2% of weight loss of the 65CS/PAA was observed. These results suggested that the CS content in the composite affected the degradability of the composite. After being soaked in SBF for 1 week, formation of an apatite layer was observed on the surfaces of both composites without obvious differences. The co-culture results of the composites and the MG-63 cells confirmed that 65CS/PAA exhibited higher proliferation and a higher alkaline phosphatase (ALP) activity than did 50CS/PAA. The implantations in bone defects of rabbits for 3 months revealed that both composites had good biocompatibility and were capable of guiding new bone formation without causing any inflammation. However, faster degradability of the 65CS/PAA composite was observed in vivo, indicating that the higher CS content in the composite results in higher degradability. In conclusion, the CS content in the composite for orthopedic reconstruction has distinct effects on the degradability, OD value, and ALP activity of the composites, whereas it has little effect on the bioactivity and bone formation. (C) 2015 Society of Plastics Engineers
机译:生物陶瓷/聚合物复合物中的无机含量被认为在体内植入后在促进骨愈合中起重要作用。在这项研究中,通过原位熔融聚合合成了两种CS含量分别为50%(质量分数,50CS / PAA)和65%(65CS / PAA)的硫酸钙/聚氨基酸(CS / PAA)复合材料。方法,并评价了复合材料的降解性,生物活性和生物相容性。结果表明,在模拟体液(SBF)中浸泡16周后,观察到50CS / PAA的重量减轻了41.5%,而观察到65CS / PAA的重量减轻了56.2%。这些结果表明,复合材料中的CS含量影响复合材料的降解性。在SBF中浸泡1周后,在两种复合材料的表面均观察到形成了磷灰石层,没有明显差异。复合材料和MG-63细胞的共培养结果证实,与50CS / PAA相比,65CS / PAA表现出更高的增殖和更高的碱性磷酸酶(ALP)活性。在兔子的骨缺损中植入3个月后,发现这两种复合材料都具有良好的生物相容性,并且能够引导新的骨形成而不会引起任何炎症。但是,在体内观察到65CS / PAA复合材料具有更快的降解性,表明复合材料中较高的CS含量导致较高的降解性。总之,用于骨科重建的复合材料中CS含量对复合材料的降解性,OD值和ALP活性具有明显的影响,而对生物活性和骨形成的影响很小。 (C)2015年塑料工程师学会

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