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Chemico-physical modifications induced by plasma and ozone sterilizations on shape memory polyurethane foams

机译:等离子体和臭氧灭菌对形状记忆聚氨酯泡沫的化学物理改性

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摘要

Thermally activated shape memory polyurethane foams are promising materials for minimally invasive surgical procedures. Understanding their physical and chemical properties, in vitro response and effects of sterilization is mandatory when evaluating their potential as biomaterials. In this work, we report on the characterization of two Cold Hibernated Elastic Memory (CHEM) foams before and after two novel low-temperature sterilization techniques (plasma and ozone). Foams have different transition temperatures (T_(trans)), as determined by Tanδ peaks in DMA tests, that depend on their chemical composition: both foams possess excellent shape recovery ability (Recovery Rate up to 99%) in conventional shape recovery tests. Plasma sterilization (Sterrad~? sterilization system) resulted in a slight increase of open porosity, but no effects on bulk chemical and thermo-mechanical properties were observed. Ozone sterilization had a stronger effect on foams morphology, both in terms of an evident rupture of pore walls and surface oxidation. These modifications affected both thermomechanical and shape recovery behavior. Furthermore, plasma sterilized foamsrncytocompatibility was investigated with L929 fibroblast cell line in vitro, showing a good adhesion and proliferation, as confirmed by SEM observation and Alamar blue assay. The obtained results contribute to define the role of shape memory foams as biomaterials and open novel questions on the role of sterilization technique effects on cellular solids.
机译:热活化形状记忆聚氨酯泡沫是用于微创外科手术程序的有前途的材料。在评估其作为生物材料的潜力时,必须了解其理化特性,体外反应和灭菌效果。在这项工作中,我们报告了两种新型低温灭菌技术(等离子和臭氧)之前和之后两种冷冬弹性记忆(CHEM)泡沫的特性。泡沫具有不同的转变温度(T_(trans)),这取决于DMA测试中的Tanδ峰,这取决于它们的化学组成:在常规的形状恢复测试中,两种泡沫均具有出色的形状恢复能力(恢复率高达99%)。等离子体灭菌(Sterrad?灭菌系统)导致开孔率略有增加,但未观察到对整体化学和热机械性能的影响。就孔壁的明显破裂和表面氧化而言,臭氧灭菌对泡沫形态具有更强的影响。这些修改影响了热机械性能和形状恢复行为。此外,经SEM观察和Alamar蓝分析证实,用L929成纤维细胞系对血浆灭菌的泡沫细胞相容性进行了体外研究,显示出良好的粘附和增殖。获得的结果有助于定义形状记忆泡沫作为生物材料的作用,并就杀菌技术对细胞固体作用的作用提出了新的问题。

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  • 来源
    《Journal of materials science》 |2010年第7期|P.2067-2078|共12页
  • 作者单位

    Dipartimento di Chimica, Materiali e Ingegneria Chimica 'G. Natta', Politecnico di Milano, Via Mancinelli 7, 20131 Milan, Italy;

    rnBiomaterials Laboratory, Bioengineering Department, Politecnico di Milano, Piazza Leonardo Da Vinci 32, Milan, Italy;

    rnBiomaterials Laboratory, Bioengineering Department, Politecnico di Milano, Piazza Leonardo Da Vinci 32, Milan, Italy;

    rnBiomaterials Laboratory, Bioengineering Department, Politecnico di Milano, Piazza Leonardo Da Vinci 32, Milan, Italy;

    rnInstitute of Biomedical Engineering, Ecole Polytechnique de Montreal, Montreal, QC, Canada;

    rnBiomaterials Laboratory, Bioengineering Department, Politecnico di Milano, Piazza Leonardo Da Vinci 32, Milan, Italy;

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