首页> 外文会议>2011 IEEE 37th Annual Northeast Bioengineering Conference >Sub-micron scale mechanical characterization of polyglactin sutures subjected to hydrolysis and enzymatic degradation
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Sub-micron scale mechanical characterization of polyglactin sutures subjected to hydrolysis and enzymatic degradation

机译:水解和酶促降解的多聚乳酸缝合线的亚微米级机械表征

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Nano-indentation studies using atomic force microscopy (AFM) were introduced to investigate the effects of hydrolysis degradation on mechanical properties of polyglactin 910 monofilament sutures. The polyglactin 910 sutures were immersed in phosphate buffered saline (PBS) solution of pH 5, 7.4, 10 without enzyme and pH 7.4 with esterase enzyme. After that, the samples were incubated at 37 °C under an oscillation of 80 rpm. Samples were removed for testing after 7, 14, 21 and 28 days. The effects of degradation on gradation of Young''s modulus values across fiber cross-section were studied by doing progressive nano-indentation from center to surface of cross section of the sutures. Results indicate that the pH 7.4 condition hydrolysis degradation did not have a significant impact on variation of Young''s modulus values of the polyglactin 910 sutures from the center to the surface after different degradation times. And the Young''s modulus from the original samples to sutures after 4 weeks degradation have a decreasing trend, but not including the first week. Then the SEM, FTIR and Tensile test were conducted to investigate the mechanical and chemical properties of polyglactin 910 monofilament sutures.
机译:介绍了使用原子力显微镜(AFM)进行的纳米压痕研究,以研究水解降解对polyglactin 910单丝缝合线机械性能的影响。将polyglactin 910缝线浸入pH 5、7.4、10(无酶)和pH 7.4(含酯酶)的磷酸盐缓冲盐水(PBS)溶液中。之后,将样品在37℃下以80 rpm的振荡温育。在7、14、21和28天后取出样品进行测试。通过从缝合线横截面的中心到表面进行渐进的纳米压痕,研究了降解对整个纤维横截面的杨氏模量值渐变的影响。结果表明,在不同的降解时间后,pH 7.4条件水解降解对聚丙烯酰胺910缝线从中心到表面的杨氏模量值变化没有显着影响。从原始样品到4周降解后的缝合线的杨氏模量都有下降的趋势,但不包括第一周。然后进行了SEM,FTIR和拉伸试验,研究了聚乳酸910单丝缝合线的力学和化学性能。

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