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首页> 外文期刊>Polymer Degradation and Stability >Electron-beam treatment of poly(lactic acid) to control degradation profiles
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Electron-beam treatment of poly(lactic acid) to control degradation profiles

机译:聚乳酸的电子束处理以控制降解曲线

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摘要

Bioresorbable polymers such as polylactide (PLA) and polylactide-co-glycolide (PLGA) have been used successfully as biomaterials in a wide range of medical applications. However, their slow degradation rates and propensity to lose strength before mass have caused problems. A central challenge for the development of these materials is the assurance of consistent and predictable in vivo degradation. Previous work has illustrated the potential to influence polymer degradation using electron beam (e-beam) radiation. The work addressed in this paper investigates further the utilisation of e-beam radiation in order to achieve a more surface specific effect. Variation of e-beam energy was studied as a means to control the effective penetrative depth in poly-i-lactide (PLLA). PLLA samples were exposed to e-beam radiation at individual energies of 0.5 MeV, 0.75 MeV and 1.5 MeV. The near-surface region of the PLLA samples was shown to be affected by e-beam irradiation with induced changes in molecular weight, morphology, flexural strength and degradation profile. Moreover, the depth to which the physical properties of the polymer were affected is dependent on the beam energy used. Computer modelling of the transmission of each e-beam energy level used corresponded well with these findings.
机译:可生物吸收的聚合物,例如聚丙交酯(PLA)和聚丙交酯-共-乙交酯(PLGA),已成功地用作广泛的医学应用中的生物材料。然而,它们的缓慢降解速率和在质量之前就失去强度的趋势引起了问题。开发这些材料的一个主要挑战是如何保证体内降解的持续性和可预测性。先前的工作表明了使用电子束(电子束)辐射影响聚合物降解的潜力。本文所研究的工作进一步研究了电子束辐射的利用,以实现更具体的表面效果。研究了电子束能量的变化,以控制聚丙交酯(PLLA)的有效穿透深度。 PLLA样品分别以0.5 MeV,0.75 MeV和1.5 MeV的能量暴露于电子束辐射下。 PLLA样品的近表面区域受电子束辐射的影响,引起分子量,形态,抗弯强度和降解曲线的变化。而且,聚合物的物理性能受到影响的深度取决于所使用的束能量。这些使用的每个电子束能级的传输的计算机模型与这些发现非常吻合。

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