Institute for Regenerative Medicine, Sechenov University, 8-2 Trubetskaya st., Moscow 119991, Russia.
Institute of Photonic Technologies, Research center "Crystallography and Photonics", Russian Academy of Sciences, 2 Pionerskaya st., Troitsk, Moscow 108840, Russia.
Mar Drugs. 2019 Jan 10;17(1):48. doi: 10.3390/md17010048.
The crustacean processing industry produces large quantities of waste by-products (up to 70%). Such wastes could be used as raw materials for producing chitosan, a polysaccharide with a unique set of biochemical properties. However, the preparation methods and the long-term stability of chitosan-based products limit their application in biomedicine. In this study, different scale structures, such as aggregates, photo-crosslinked films, and 3D scaffolds based on mechanochemically-modified chitosan derivatives, were successfully formed. Dynamic light scattering revealed that aggregation of chitosan derivatives becomes more pronounced with an increase in the number of hydrophobic substituents. Although the results of the mechanical testing revealed that the plasticity of photo-crosslinked films was 5⁻8% higher than that for the initial chitosan films, their tensile strength remained unchanged. Different types of polymer scaffolds, such as flexible and porous ones, were developed by laser stereolithography In vivo studies of the formed structures showed no dystrophic and necrobiotic changes, which proves their biocompatibility. Moreover, the wavelet analysis was used to show that the areas of chitosan film degradation were periodic. Comparing the results of the wavelet analysis and X-ray diffraction data, we have concluded that degradation occurs within less ordered amorphous regions in the polymer bulk.
甲壳素加工产业产生大量的(高达 70%)废弃物副产物。这些废物可以用作生产壳聚糖的原料,壳聚糖是一种具有独特生化特性的多糖。然而,壳聚糖基产品的制备方法和长期稳定性限制了它们在生物医学中的应用。在本研究中,成功形成了不同尺度结构,如基于机械化学改性壳聚糖衍生物的聚集体、光交联膜和 3D 支架。动态光散射显示,随着疏水性取代基数量的增加,壳聚糖衍生物的聚集变得更加明显。尽管机械测试结果表明,光交联膜的塑性比初始壳聚糖膜高 5-8%,但其拉伸强度保持不变。通过激光立体光刻技术开发了不同类型的聚合物支架,如柔性和多孔支架。形成结构的体内研究表明没有营养不良和坏死变化,这证明了它们的生物相容性。此外,还使用小波分析表明壳聚糖膜降解区域具有周期性。将小波分析结果和 X 射线衍射数据进行比较,我们得出结论,降解发生在聚合物本体中较无序的无定形区域内。