首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Nondegradable magnetic poly (carbonate urethane) microspheres with good shape memory as a proposed material for vascular embolization
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Nondegradable magnetic poly (carbonate urethane) microspheres with good shape memory as a proposed material for vascular embolization

机译:具有良好形状记忆的非致磁聚(碳酸氨基乙烷)微球作为血管栓塞的提出材料

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摘要

In this study, nondegradable poly (carbonate urethane) (PCU) and poly (carbonate urethane) incorporated variable Fe3O4 content microspheres (PCU/Fe3O4) were synthesized using pre-polymerization and suspension polymerization. Synthesis was confirmed through Fourier transform infrared spectroscopy (FTIR). The effect of Fe3O4 incorporation was investigated on crystalline, thermal, shape memory and degradation properties by X-Ray diffraction (XRD), Differential scanning calorimetery (DSC), compression test and degradation in vitro, respectively. Otherwise, the assessment of magnetic characteristics by vibrational sample magnetometry (VSM) disclosed superparamagnetic behavior. The tunable superparamagnetic behavior depends on the amount of magnetic particles incorporated within the networks. The biological study results of as-synthesized polymers from the platelet adhesion test and the cell proliferation inhibition test indicated they were biocompatible in vitro. Fe3O4 incorporation was conductive to reducing platelet adhesion in blood contacting test and promotion of rat vascular smooth muscle cell proliferation and growth. These nondegradable, superparamagnetic, biocompatible polymers, combined with their good shape memory properties may allow for their future exploitation in the biomedical field, such as, in cardiovascular implants, targeted tumor treatment, tissue engineering and artificial organ's engineering.
机译:在该研究中,使用预聚合和悬浮聚合合成了非聚乙烯聚氨酯(碳酸氨基氨基)(PCU)和聚(碳酸氨基氨基氨基)和聚(碳酸氨基氨基氨基含量微球(PCU / Fe3O4)。通过傅里叶变换红外光谱(FTIR)证实了合成。通过X射线衍射(XRD),差示扫描量热(DSC),体外压缩试验和降解研究Fe3O4掺入的掺入效应。否则,通过振动样品磁体(VSM)评估磁特性(VSM)公开了超顺磁性行为。可调谐的超顺磁性行为取决于包含在网络中的磁性粒子的量。来自血小板粘附试验的和合成聚合物的生物学研究结果及细胞增殖抑制试验表明它们在体外生物相容性。 Fe3O4掺入是降低血液接触试验和促进大鼠血管平滑肌细胞增殖和生长的血小板粘附。这些不良的超顺磁性的生物相容性聚合物,与它们的良​​好形状记忆特性相结合,可以允许它们在生物医学领域的未来剥削,例如心血管植入物,靶向肿瘤治疗,组织工程和人工器官的工程。

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