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首页> 外文期刊>Acta biomaterialia >Synthesis and characterization of segmented poly(esterurethane urea) elastomers for bone tissue engineering.
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Synthesis and characterization of segmented poly(esterurethane urea) elastomers for bone tissue engineering.

机译:用于骨组织工程的分段聚(氨基甲酸酯脲)弹性体的合成与表征。

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摘要

Segmented polyurethanes have been used extensively in implantable medical devices, but their tunable mechanical properties make them attractive for examining the effect of biomaterial modulus on engineered musculoskeletal tissue development. In this study, a family of segmented degradable poly(esterurethane urea)s (PEUURs) were synthesized from 1,4-diisocyanatobutane, a poly(epsilon-caprolactone) (PCL) macrodiol soft segment and a tyramine-1,4-diisocyanatobutane-tyramine chain extender. By systematically increasing the PCL macrodiol molecular weight from 1100 to 2700Da, the storage modulus, crystallinity and melting point of the PCL segment were systematically varied. In particular, the melting temperature, T(m), increased from 21 to 61 degrees C and the storage modulus at 37 degrees C increased from 52 to 278MPa with increasing PCL macrodiol molecular weight, suggesting that the crystallinity of the PCL macrodiol contributed significantly to the mechanical properties of the polymers. Bone marrow stromal cells were cultured on rigid polymer films under osteogenic conditions for up to 21 days. Cell density, alkaline phosphatase activity, and osteopontin and osteocalcin expression were similar among PEUURs and comparable to poly(d,l-lactic-coglycolic acid). This study demonstrates the suitability of this family of PEUURs for tissue engineering applications, and establishes a foundation for determining the effect of biomaterial modulus on bone tissue development.
机译:分段聚氨酯已在植入式医疗设备中广泛使用,但其可调的机械性能使其对检查生物材料模量对工程性骨骼肌肉组织发育的影响具有吸引力。在这项研究中,由1,4-二异氰酸根合丁烷,聚ε-己内酯(PCL)大二醇软链段和酪胺-1,4-二异氰酸根合丁烷-酪胺扩链剂。通过系统地将PCL大二醇的分子量从1100Da增加到2700Da,PCL段的储能模量,结晶度和熔点得到系统地改变。尤其是,随着PCL大分子二醇分子量的增加,熔融温度T(m)从21摄氏度增加到61摄氏度,37摄氏度下的储能模量从52兆帕增加到278兆帕,这表明PCL大二醇的结晶度对聚合物的机械性能。在成骨条件下,在刚性聚合物膜上培养骨髓基质细胞长达21天。 PEUUR之间的细胞密度,碱性磷酸酶活性以及骨桥蛋白和骨钙蛋白表达相似,与聚(d,l-乳酸-乙醇酸)相当。这项研究证明了该系列PEUUR在组织工程应用中的适用性,并为确定生物材料模量对骨组织发育的影响奠定了基础。

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