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Physico-Chemical Modifications and Biological Improvements of Biomedical PET as a Consequence of Excimer LASER Irradiation

机译:作为准分子激光照射的后果,生物医学宠物的物理化学修饰与生物改进

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LASER Excimer irradiation can modify surface properties for biocompatibility improvement of a medical device. The PETs from 3 different origins were used in this study. The samples have been irradiated by excimer LASER with 10 different energies. The surface profile, the surface energy and the materials crystallinity have been assessed. Biological characterizations were made with human embryonic epithelial cells L132: proliferation, vitality, viability, adhesion with the p-NPP, and morphology. -The profile measurements allowed to establish the ablation threshold, which was 36 mJ/cm{sup}2. The surface hydrophilic state increased reciprocally with the irradiation intensity. The gain is 13%. The irradiated and non-irradiated product has identical cristallinity. PET was shown not to be toxic for L132 cells. Cell proliferation and cell vitality showed dose-dependant increases reciprocal to the irradiation energy (from 88 to 138% with respect to control). The correlation was highly significant (R{sup}2 = 0,8). SEM micrographs show that the cells are better spread on the surface of irradiated PET than on untreated PET.
机译:激光准分子辐射可以改变医疗装置的生物相容性改进的表面性质。本研究中使用了3种不同起源的宠物。用10个不同的能量通过准分子激光照射样品。已经评估了表面轮廓,表面能和材料结晶度。用人胚胎上皮细胞L132制备生物学特性:增殖,活力,活力,与p-NPP的粘附和形态学。 - 允许建立烧蚀阈值的轮廓测量,这是36 mJ / cm {sup} 2。表面亲水状态随着照射强度越来越多地增加。收益是13%。辐照和非照射产品具有相同的压力。 PET显示为L132细胞毒性。细胞增殖和细胞生命力显示剂量依赖性增加对辐射能量的互核(相对于对照的88%至138%)。相关性非常重要(R {SUP} 2 = 0.8)。 SEM显微照片表明,细胞在照射PET的表面上比未处理的宠物更好地展开。

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