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Development and Research of Polyurethane Foam Composite Materials with Albucid

机译:用仿形性聚氨酯泡沫复合材料的开发与研究

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In modern surgery there is a need for restorative and reconstructive operations in the orbit and periorbital area as a result of eye injuries. This study is aimed at the development and research of the structure and properties of polyurethane foam (PUF) composite materials filled by antimicrobial drug substance albucid as implants for ophthalmic surgery. PUF composite materials with albucid (in the amount of 5 wt.%) based on diisocyanate prepolymer (synthesized from polyoxypropylene glycol and 2.4-; 2.6-toluylene diisocyanate) were obtained. The structure, adhesive, thermophysical and thermogravimetric properties, morphology of composite materials have been characterized using Fourier transform infrared (FTIR), mechanical tests, differential scanning calorimetry (DSC), thermogravimetric analysis (TGA) and transmission optical microscopy (TOM). It is established that the immobilization of albucid occurs due to intermolecular hydrogen bonds by the method of IR spectroscopy. According to the results of physical-mechanical tests the presence of albucid in the composition of polyurethane foams does not affect the value of the adhesive strength of composite materials. According to DSC the investigated systems are single-phase with a glass transition temperature from minus 48.40 to minus 48.64°C. The introduction of albucid into the PUF causes a decrease of the specific heat capacity at the glass-transition temperature and does not affect on the T_(g) of composite materials. According to the results of analysis of TOM photomicrograph, it was found that the presence of albucid in the composite materials leads to a decrease in the porosity percentage, an increase in the quantity of pores with a diameter less than 300 μm, which is 82% (while for PUF it is 69.5%) and the absence of pores with a diameter more than 954 μm. Thermogravimetric characteristics indicate the heat resistance of the synthesized PUF to a temperature of 162.84°C, which makes it possible to carry out dry sterilization of samples without changing their characteristics. Therefore, the obtained PUF composite materials with albucid exhibit adhesion, heat resistance and have a microporous structure. It allows us to conclude that they are promising materials that can be used in medical practice, in particular in ophthalmic surgery as implants with antimicrobial action.
机译:在现代手术中,由于眼损伤,需要在轨道和眶内地区进行修复和重建的操作。本研究旨在开发和研究由抗菌药物仿真性填充的聚氨酯泡沫(PUF)复合材料的结构和性质作为眼科手术的植入物。基于二异氰酸酯预聚物(由聚氧二乙二醇和2.4-; 2.4-甲苯二异氰酸酯合成),PUF复合材料(以5重量%)。使用傅里叶变换红外(FTIR),机械测试,差示扫描量热法(DSC),热重分析(TGA)和透射光学显微镜(TOM),已经表征了复合材料的形态,复合材料的形态。建立由于IR光谱法通过分子间氢键而发生鉴别的固定化。根据物理机械试验的结果,聚氨酯泡沫组合物中的仿真酶的存在不影响复合材料的粘合强度的值。根据DSC,研究的系统是单相,来自减去48.40至减去48.64℃的玻璃化转变温度。仿真唑进入PUF导致玻璃化转变温度下的比热容量降低,并且不会影响复合材料的T_(g)。根据汤姆显微照片的分析结果,发现复合材料中仿真性的存在导致孔隙率下降,直径小于300μm的孔量增加,为82% (对于PUF而言,它是69.5%),并且没有直径超过954μm的孔隙。热重度特性表明合成的PUF的耐热性至162.84℃的温度,这使得可以在不改变其特性的情况下进行样品的干燥灭菌。因此,所获得的PUF复合材料具有鉴别性粘附,耐热性和具有微孔结构。它允许我们得出结论,它们是有希望的材料,可用于医疗实践,特别是在眼科手术中作为具有抗微生物作用的植入物。

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