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Blood compatibility assessments of electrospun polyurethane nanocomposites blended with megni oil for tissue engineering applications

机译:电纺器聚氨酯纳米复合材料与组织工程应用混合的血液兼容性评估

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摘要

Abstract: Tissue engineering holds as a prominent technique to repair or replace the damaged human parts to recreate its native function. In this research, a novel scaffold based on polyurethane (PU) comprising megni oil was electrospun for tissue engineering applications. The obtained polyurethane blended with megni oil nanofibers were characterized by scanning electron microscopy (SEM), fourier transform infrared spectroscopy (FTIR), thermogravimetric analysis (TGA), contact angle measurement and atomic force microscopy (AFM). Furthermore, the blood compatibility of the fabricated nanocomposites evaluated through activated prothrombin time (APTT), partial thromboplastin time (PT) and hemolysis assay to determine the anticoagulant nature. The morphological results showed that the fabricated nanocomposites showed reduced fiber size (789 ± 143.106 nm) than the pristine control (890 ± 116.91 nm). The interaction between PU and megni oil was identified by the hydrogen bond formation evident in the FTIR. The incorporation of megni oil in the PU decreased the wettability behavior (113.3° ± 1.528) and improved the surface roughness (646 nm). Preliminary evaluation of blood compatibility assessments was carried out using APTT, PT and hemolysis assay revealed the enhanced antithrombogenicity nature of the fabricated nanocomposites than the PU. Hence, we conclude that the fabricated new nanocomposite membrane with desirable characteristics which might find potential application in the tissue engineering applications.
机译:摘要:组织工程作为修复或更换损坏的人类部位来重建其本土功能的突出技术。在该研究中,基于包含兆油的聚氨酯(PU)的新型支架是用于组织工程应用的Electromun。通过扫描电子显微镜(SEM),傅里叶变换红外光谱(FTIR),热重分析(TGA),接触角测量和原子力显微镜(AFM),将所得聚氨酯混合的聚氨酯混合。此外,通过活化的凝血酶体时间(APTT),部分血栓形成时间(Pt)和溶血测定来评价制造的纳米复合材料的血液相容性以确定抗凝血性质。形态学结果表明,制造的纳米复合材料显示出比原始对照(890±116.91nm)的纤维尺寸(789±143.106nm)降低。通过FTIR中的氢键形成鉴定了PU和MEGNI油之间的相互作用。 PU中的Megni油的掺入降低了润湿性行为(113.3°±1.528)并改善了表面粗糙度(646nm)。使用APTT,Pt和溶血测定进行血液兼容性评估的初步评估显示,所述纳米复合材料的增强的抗血栓形成性大于PU。因此,我们得出结论,制造的新型纳米复合膜,具有可能在组织工程应用中找到潜在应用的理想特性。

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