Rychter Piotr, Śmigiel-Gac Natalia, Pamuła Elżbieta, Smola-Dmochowska Anna, Janeczek Henryk, Prochwicz Wojciech, Dobrzyński Piotr
Faculty of Mathematics and Natural Sciences, Jan Dlugosz University in Czestochowa, Armii Krajowej 13/15 Av., Czestochowa 42-218, Poland.
Centre of Polymer and Carbon Materials, Polish Academy of Sciences, Curie-Sklodowska 34 St., Zabrze 41-800, Poland.
Materials (Basel). 2016 Jan 20;9(1):64. doi: 10.3390/ma9010064.
The aim of the study was the evaluation of gamma irradiation and electron beams for sterilization of porous scaffolds with shape memory behavior obtained from biodegradable terpolymers: poly(l-lactide--glycolide--trimethylene carbonate) and poly(l-lactide--glycolide--ɛ-caprolactone). The impact of mentioned sterilization techniques on the structure of the scaffolds before and after the sterilization process using irradiation doses ranged from 10 to 25 kGy has been investigated. Treatment of the samples with gamma irradiation at 15 kGy dose resulted in considerable drop in glass transition temperature (T) and number average molecular weight (M). For comparison, after irradiation of the samples using an electron beam with the same dose, no significant changes in structure or properties of examined scaffolds have been noticed. Higher doses of irradiation via electron beam caused essential changes of the scaffolds' pores resulting in partial melting of their surface. Nevertheless, obtained results have revealed that sterilization with electron beam, when compared to gamma irradiation, is a better method because it does not affect significantly the physicochemical properties of the scaffolds. Both used methods of sterilization did not influence the shape memory behavior of the examined materials.
本研究的目的是评估γ射线辐照和电子束对由可生物降解三元共聚物:聚(L-丙交酯-乙交酯-三亚甲基碳酸酯)和聚(L-丙交酯-乙交酯-ε-己内酯)制得的具有形状记忆行为的多孔支架进行灭菌的效果。研究了上述灭菌技术在使用10至25 kGy辐照剂量的灭菌过程前后对支架结构的影响。用15 kGy剂量的γ射线辐照样品导致玻璃化转变温度(T)和数均分子量(M)大幅下降。相比之下,使用相同剂量的电子束辐照样品后,未观察到所检查支架的结构或性能有显著变化。通过电子束进行更高剂量的辐照会导致支架孔隙发生本质变化,致使其表面部分熔化。然而,所得结果表明,与γ射线辐照相比,电子束灭菌是一种更好的方法,因为它不会显著影响支架的物理化学性质。两种使用的灭菌方法均未影响所检查材料的形状记忆行为。