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通过电子束辐照控制聚合物生物吸收的厚度。

Through-thickness control of polymer bioresorption via electron beam irradiation.

机构信息

School of Mechanical and Aerospace Engineering, Queen's University Belfast, Belfast BT9 5AH, UK.

出版信息

Acta Biomater. 2011 Feb;7(2):548-57. doi: 10.1016/j.actbio.2010.09.012. Epub 2010 Sep 16.

Abstract

Predicable and controlled degradation is not only central to the accurate delivery of bioactive agents and drugs, it also plays a vital role in key aspects of bone tissue engineering. The work addressed in this paper investigates the utilisation of e-beam irradiation in order to achieve a controlled (surface) degradation profile. This study focuses on the modification of commercially and clinically relevant materials, namely poly(L-lactic acid) (PLLA), poly(L-lactide-hydroxyapatite) (PLLA-HA), poly(L-lactide-glycolide) co-polymer (PLG) and poly(L-lactide-DL-lactide) co-polymer (PLDL). Samples were subjected to irradiation treatments using a 0.5MeV electron beam with delivered surface doses of 150 and 500 kGy. In addition, an acrylic attenuation shield was used for selected samples to control the penetration of the e-beam. E-beam irradiation induced chain scission in all polymers, as characterized by reduced molecular weights and glass transition temperatures (T(g)). Irradiation not only produced changes in the physical properties of the polymers but also had associated effects on surface erosion of the materials during hydrolytic degradation. Moreover, the extent to which both mechanical and hydrolytic degradation was observed is synonymous with the estimated penetration of the beam (as controlled by the employment of an attenuation shield).

摘要

可预测和可控的降解不仅是生物活性药物准确传递的核心,而且在骨组织工程的关键方面也起着至关重要的作用。本文研究了利用电子束辐照来实现可控(表面)降解轮廓。本研究集中于对商业和临床相关材料的改性,即聚(L-乳酸)(PLLA)、聚(L-乳酸-羟基磷灰石)(PLLA-HA)、聚(L-乳酸-乙交酯)共聚物(PLG)和聚(L-乳酸-DL-乳酸)共聚物(PLDL)。采用 0.5MeV 电子束对样品进行辐照处理,辐照表面剂量分别为 150 和 500kGy。此外,还使用丙烯酸衰减屏蔽对选定的样品进行辐照,以控制电子束的穿透。电子束辐照诱导所有聚合物的链断裂,其特征是分子量和玻璃化转变温度(T(g))降低。辐照不仅改变了聚合物的物理性质,而且对材料在水解降解过程中的表面侵蚀也有相关影响。此外,观察到的机械和水解降解的程度与束的估计穿透(通过衰减屏蔽的使用进行控制)是一致的。

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