首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Anisotropic polyvinyl alcohol-Bacterial cellulose nanocomposite for biomedical applications.
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Anisotropic polyvinyl alcohol-Bacterial cellulose nanocomposite for biomedical applications.

机译:用于生物医学应用的各向异性聚乙烯醇-细菌纤维素纳米复合材料。

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摘要

Compliance mismatch between the synthetic graft and the surrounding native tissue has been reported as a major factor in ultimate failure of the currently used cardiovascular graft replacements. Thus, developing biomaterials that display close mechanical properties as the tissue it is replacing is an important objective in biomedical devices design. Polyvinyl alcohol (PVA) is a biocompatible hydrogel with characteristics desired for biomedical applications. It can be crosslinked by a low temperature thermal cycling process. By using a novel thermal processing method under an applied strain and with the addition of a small amount of bacterial cellulose (BC) nanofibers, an anisotropic PVA-BC nanocomposite was created. The stress-strain tensile properties of porcine aorta were closely matched in both the circumferential and the axial directions by one type of anisotropic PVA-BC nanocomposite (10% PVA with 0.3% BC at 75% initial strain and cycle 2) within physiological range, with improved resistance to further stretch beyond physiological strains. The PVA-BC nanocomposite gives a broad range of mechanical properties, including anisotropy, by controlling material and processing parameters. PVA-BC nanocomposites with controlled degree of anisotropy that closely match the mechanical properties of the soft tissue it might replace, ranging from cardiovascular to other connective tissues, can be created.
机译:据报道,合成移植物与周围天然组织之间的顺应性不匹配是当前使用的心血管移植物替代物最终失败的主要因素。因此,开发在替换组织时显示出接近机械性能的生物材料是生物医学设备设计中的重要目标。聚乙烯醇(PVA)是具有生物医学应用所需特性的生物相容性水凝胶。可以通过低温热循环过程使其交联。通过在施加的应变下使用新颖的热处理方法,并添加少量细菌纤维素(BC)纳米纤维,创建了各向异性的PVA-BC纳米复合材料。在生理范围内,一种类型的各向异性PVA-BC纳米复合材料(10%PVA和0.3%BC,初始应变为75%,周期2)使猪主动脉的应力应变拉伸特性在圆周和轴向上紧密匹配,具有更好的抵抗力,可以进一步拉伸,超越生理菌株。通过控制材料和加工参数,PVA-BC纳米复合材料具有广泛的机械性能,包括各向异性。可以创建各向异性程度可控的PVA-BC纳米复合材料,该复合材料与从心血管到其他结缔组织可能替代的软组织的机械性能非常匹配。

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