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首页> 外文期刊>Journal of Applied Polymer Science >Blood compatibility and physicochemical assessment of novel nanocomposite comprising polyurethane and dietary carotino oil for cardiac tissue engineering applications
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Blood compatibility and physicochemical assessment of novel nanocomposite comprising polyurethane and dietary carotino oil for cardiac tissue engineering applications

机译:新型纳米复合材料的血液兼容性和物理化学评估,包括用于心脏组织工程应用的聚氨酯和膳食Carotino油

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摘要

Cardiovascular diseases (CVD) were estimated to claim 17 million lives each year. Among these, coronary heart disease almost accounts 50% deaths associated with CVD, which causes the blockage of the coronary arteries that supplies blood to the heart. Nowadays, the cardiac tissue engineering have become a promising solution to overcome the drawbacks associated with current therapies. Further, the scaffold used in cardiac tissue engineering must possess thromboresistant and anticoagulant nature to serve as a plausible candidate for cardiovascular applications. In this present investigation, a novel nanocomposite based on polyurethane (PU) and carotino oil was fabricated using electrospinning. Scanning electron microscopy images indicated that the nanocomposites have smaller fiber diameter (702 +/- 130 nm) compared to the pristine PU (969 +/- 217 nm). The Fourier transform infrared spectroscopy analysis confirmed the interaction between the carotino oil and PU by the formation of hydrogen bond and shifting of CH peak. The contact angle of electrospun PU/carotino oil was found to be 119 degrees, which was increased compared to pristine PU (86 degrees) indicating the hydrophobic nature of developed nanocomposites. Moreover, the surface roughness and thermal stability were found to be enhanced due to the presence of carotino oil in the PU matrix indicated in atomic force microscopy and thermogravimetric analysis. The enhanced surface roughness of nanocomposites resulted in delayed activation of the blood clot as revealed in activated partial thromboplastin time and prothrombin time assay. Moreover, the hemolytic index of fabricated nanocomposites was found to very low of about 1.33% compared to pristine PU (2.73%), suggesting non-hemolytic nature and also better blood compatibility. So, the developed PU/carotino nanocomposites having desirable characteristics like better physicochemical and blood compatibility may render appropriate potentials for raw materials of cardiac
机译:估计心血管疾病(CVD)每年估计为1700万生命。其中,冠心病几乎占与CVD相关的50%死亡,这导致冠状动脉堵塞了向心脏供应血液。如今,心脏组织工程已成为克服与当前疗法相关的缺点的有希望的解决方案。此外,心脏组织工程中使用的支架必须具有血栓形成剂和抗凝血性质,以用作心血管应用的合理候选者。在本发明的研究中,使用静电纺丝制造基于聚氨酯(PU)和Carotino油的新型纳米复合材料。扫描电子显微镜图像表明,与原始PU(969 +/- 217nm)相比,纳米复合材料具有较小的纤维直径(702 +/- 130nm)。傅立叶变换红外光谱分析通过形成氢键和CH峰的移位证实了Carotino油和PU之间的相互作用。发现电纺PU / Carotino油的接触角为119度,与原始PU(86度)相比增加,表明发育纳米复合材料的疏水性质。此外,发现由于原子力显微镜显微镜和热重分析所示的PU基质中的Carotino油而增强了表面粗糙度和热稳定性。纳米复合材料的增强表面粗糙度导致血凝块的延迟激活,如活性的部分血栓形成时间和凝血酶原时间测定所示。此外,与原始PU(2.73%)相比,含有制造纳米复合材料的溶血性指数为约1.33%,表明非溶血性质和更好的血液相容性。因此,具有理想的特性的发达的PU / carotino纳米复合材料具有更好的物理化学和血液兼容性,可能对心脏的原料提供适当的电位

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