壳聚糖琥珀基增塑膜

M. Bazunova, R. Lazdin, Маria А. Elinson, L. Sharafutdinova, E. Kulish
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摘要

本文以壳聚糖的水溶性衍生物琥珀酰壳聚糖为基础,研究了制备具有良好血液相容性的现代创面愈合高弹性薄膜的新方法。这些行程是基于塑化剂的使用。与壳聚糖相比,壳聚糖琥珀酰能够表现出轻微的强迫弹性变形,但仍不足以将其用作未经改性的伤口愈合涂层。在万能拉伸试验机上研究了薄膜的变形强度特性。拉应力(σ)是根据试样的截面积确定的,单位为MPa。断裂伸长率(ε)的计算考虑了用于测试的薄膜样品的初始长度,并以百分比表示。断裂伸长率和拉应力值作为五次平行测量的算术平均值计算。采用统一的方法测定健康人红细胞的渗透阻力,评价壳聚糖-甘油琥珀酰体系的血液相容性。结果表明,在成膜过程中引入甘油作为增塑剂,可显著改善其物理和机械特性。当薄膜中甘油含量增加到50wt %时,拉伸伸长率显著增加。在这种情况下,断裂应力的值自然减小。但是,由于断裂应力的值在任何情况下都保持在必要值的水平上,因此观察到的强度指标的下降不是根本的。壳聚糖-甘油系统琥珀酰在生理条件下对细胞膜具有稳定作用,表明其具有较高的血液相容性。
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Plasticized films based on chitosan succinyl
The article is devoted to the development of new approaches to the creation of modern wound healing highly elastic films with good hemocompatibility based on a water-soluble chitosan derivative – the succinyl of chitosan. These trips are based on the use of plasticizers. It was established that chitosan succinyl, in contrast to chitosan, is capable of exhibiting insignificant forced-elastic deformation, but still not sufficient to use unmodified films based on it as wound healing coatings. The deformation-strength properties of the films were studied on a universal tensile testing machine. The tensile stress (σ) was determined taking into account the cross-sectional area of the sample taken for testing, and expressed in MPa. The elongation at break (ε) was calculated taking into account the initial length of the film sample taken for testing, and expressed as a percentage. The values of elongation at break and tensile stress were calculated as the arithmetic average of five parallel measurements. The hemocompatibility of chitosan-glycerol succinyl systems was evaluated by determining the osmotic resistance of healthy human erythrocytes using a unified method in the modification of L.I. Idelson. It is shown that the introduction of glycerol as a plasticizer in the process of film formation leads to a significant improvement in their physical and mechanical characteristics. An increase in the glycerol content in the film up to 50 wt% is accompanied by a significant increase in tensile elongation. The value of the breaking stress in this case, naturally decreases. But, since the value of the breaking stress in any case remains at the level of the necessary values, the observed drop in strength indicators is not fundamental. The stabilizing effect of the succinyl of chitosan-glycerin systems on cell membranes under physiological conditions is proved, which suggests their high hemocompatibility.
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