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Tissue Response to and Degradation Rate of Photocrosslinked Trimethylene Carbonate-Based Elastomers Following Intramuscular Implantation

机译:肌内植入后光交联的碳酸三亚甲基酯基弹性体的组织响应和降解速率

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摘要

Cylindrical elastomers were prepared through the UV-initiated crosslinking of terminally acrylated, 8,000 Da star-poly(trimethylene carbonate-co-ε-caprolactone) and star-poly(trimethylene carbonate-co-d,l-lactide). These elastomers were implanted intramuscularly into the hind legs of male Wistar rats to determine the influence of the comonomer on the weight loss, tissue response, and change in mechanical properties of the elastomer. The elastomers exhibited only a mild inflammatory response that subsided after the first week; the response was greater for the stiffer d,l-lactide-containing elastomers. The elastomers exhibited weight loss and sol content changes consistent with a bulk degradation mechanism. The d,l-lactide-containing elastomers displayed a nearly zero-order change in Young’s modulus and stress at break over the 30 week degradation time, while the ε-caprolactone-containing elastomers exhibited little change in modulus or stress at break.
机译:圆柱形弹性体是通过将末端丙烯酸的8,000 Da星形聚(碳酸三亚甲基酯-co-ε-己内酯)和星形聚(碳酸三亚甲基酯-co-d,l-丙交酯)紫外线引发的交联制备的。将这些弹性体肌肉内植入雄性Wistar大鼠的后腿,以确定共聚单体对体重减轻,组织反应和弹性体力学性能变化的影响。弹性体仅表现出轻度的炎症反应,并在第一周后消退。对于较硬的含d,l-丙交酯的弹性体,响应更大。弹性体表现出重量损失和溶胶含量变化,与本体降解机理一致。在30周的降解时间内,含d,l-丙交酯的弹性体的杨氏模量和断裂应力几乎呈现零级变化,而含ε-己内酯的弹性体的断裂模量或应力几乎没有变化。

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