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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Changes in the mechanical properties of dermal sheep collagen during in vitro degradation.
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Changes in the mechanical properties of dermal sheep collagen during in vitro degradation.

机译:体外降解过程中真皮绵羊胶原蛋白力学性能的变化。

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摘要

The changes in tensile strength, elongation at break, and high strain modulus of dermal sheep collagen (DSC) during in vitro degradation using bacterial collagenase were studied. The changes in mechanical properties were compared with the change in weight of the samples as a function of degradation time. DSC was crosslinked with either glutaraldehyde (GA) or hexamethylene diisocyanate (HMDIC). During degradation, the changes in mechanical properties of the N-DSC, H-DSC or G-DSC samples were more pronounced than the changes in the weight of the samples. Of the mechanical properties studied, the tensile strength was most susceptible to degradation of the DSC samples. After 2.5 h, N-DSC samples had lost only 55% of their initial weight, but the samples had no tensile strength left. Similar results were obtained for H-DSC, which retained no tensile strength after 24 h degradation, whereas only 45% of the initial weight was lost. G-DSC lost 3.5% of its weight after 24 h degradation, but only 25% of the initial tensile strength remained.
机译:研究了使用细菌胶原酶体外降解过程中真皮绵羊胶原蛋白(DSC)的拉伸强度,断裂伸长率和高应变模量的变化。将机械性能的变化与样品重量的变化作为降解时间的函数进行比较。 DSC用戊二醛(GA)或六亚甲基二异氰酸酯(HMDIC)交联。在降解过程中,N-DSC,H-DSC或G-DSC样品的机械性能变化比样品重量的变化更为明显。在所研究的机械性能中,拉伸强度最容易受到DSC样品降解的影响。 2.5小时后,N-DSC样品仅损失了其初始重量的55%,但样品没有剩余拉伸强度。对于H-DSC,获得了类似的结果,H-DSC在降解24小时后没有保持拉伸强度,而仅损失了初始重量的45%。降解24小时后,G-DSC失去了3.5%的重量,但仅保留了25%的初始拉伸强度。

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