首页> 外文期刊>Journal of Bioactive and Compatible Polymers >Single-stage electrospun innovative combination of polyurethane and neem oil: Synthesis, characterization and appraisal of blood compatibility
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Single-stage electrospun innovative combination of polyurethane and neem oil: Synthesis, characterization and appraisal of blood compatibility

机译:单级静电纺织多型聚氨酯和印度油的组合:血液兼容性的合成,表征和评估

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摘要

Wound healing is a complex process and it requires proper scaffolding for regeneration. An ideal scaffold should provide optimal environmental conditions in order to assist cellular attachment, proliferation and differentiation. In this work, a new composite based on polyurethane and neem oil was fabricated using one-step electrospinning technique. Fabricated composite patch along with the pristine polyurethane was characterized through scanning electron microscopy, Fourier transform and infrared spectroscopy, thermogravimetric analysis, contact angle measurement and atomic force microscopy. Moreover, the blood compatibility was evaluated using activated partial thromboplastin time, partial thromboplastin time and haemolysis assay. Scanning electron microscopy studies of composites revealed the existence of fibres with a smaller diameter (635 +/- 105 nm) compared to the pristine polyurethane (969 +/- 217 nm). Fourier transform and infrared analysis revealed the formation of hydrogen bond and peak shifting characteristics confirming the interaction of the neem oil with the polyurethane. Contact angle analysis showed the decrease in contact angle indicating the hydrophilic nature of the fabricated patch compared to pristine polyurethane. Thermal gravimetric analysis depicted the better thermal stability of the novel composite patch due to the existence of neem oil in the pristine polyurethane. The presence of neem oil in polyurethane matrix also resulted in an increase in the surface roughness as observed in the AFM analysis. The novel composite patch showed an ability to reduce the thrombogenicity and promoting the anticoagulant nature signified by blood compatibility assays like activated partial thromboplastin time and partial thromboplastin time. Finally, the haemolytic percentage of the fabricated composite (1%) was found to be reduced compared to control (2.733%) indicating better blood compatibility and safety with the red blood cells. Following the results, the fabricated patches offered enhanced physicochemical and blood compatible nature making it as a promising candidate for wound healing application.
机译:伤口愈合是一种复杂的过程,需要适当的脚手架进行再生。理想的支架应提供最佳的环境条件,以促进细胞附着,增殖和分化。在这项工作中,使用一步式静电纺丝技术制造了一种基于聚氨酯和NEEM油的新型复合材料。通过扫描电子显微镜,傅里叶变换和红外光谱,热重分析,接触角测量和原子力显微镜,表征制造的复合贴剂以及原始聚氨酯的特征。此外,使用活性的部分血栓形成时间,部分血栓形成蛋白时间和溶血测定来评估血液相容性。复合材料的扫描电子显微镜研究显示与原始聚氨酯(969 +/- 217nm)相比较小直径(635 +/- 105nm)的纤维的存在。傅里叶变换和红外分析显示氢键的形成和峰值移位特性,证实了Neem油与聚氨酯的相互作用。接触角分析表明,与原始聚氨酯相比,接触角的降低表明制造贴剂的亲水性质。热重分析描绘了新型复合贴片的较好热稳定性,由于原始聚氨酯中的Neem油存在。在AFM分析中观察到的聚氨酯基质中的Neem油的存在也导致表面粗糙度增加。该新型复合贴剂显示出降低血栓形成性和促进血液相容性测定表示的抗凝血性质,如激活的部分血栓形成时间和部分血栓形成时间。最后,与对照(2.733%)相比,发现制造的复合材料(1%)的溶血率降低,表明具有红细胞的更好的血液相容性和安全性。在结果之后,制造的贴片提供了增强的物理化学和血液相容性,使其成为伤口愈合应用的有希望的候选者。

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