Institute of Physiology, Komi Science Centre, The Urals Branch of the Russian Academy of Sciences, Syktyvkar, Russia.
Department of Biotechnology, Vyatka State University, Kirov, Russia.
J Biomed Mater Res A. 2019 Sep;107(9):2088-2098. doi: 10.1002/jbm.a.36721. Epub 2019 May 22.
We studied the influence of the mechanical properties of pectin hydrogels on acute inflammation and tissue repair after subcutaneous implantation. We used hard and soft pectin hydrogels. The results of histology and the analysis of serum-level cytokines demonstrated that the intensity of acute inflammation increased with increasing hardness of the pectin hydrogels. We also showed that the pectin hydrogels did not inhibit tissue repair. The results of the morphometric and texture analysis of the pectin hydrogels showed that the in vivo biodegradation kinetics of hard hydrogels were greater than those of soft pectin hydrogels. We also observed that on the surface of the hard and soft pectin hydrogels, a network of collagen fibers was formed. The surface of the pectin hydrogel was shown to prevent the adhesion of infiltrating inflammatory cells. The results of the in vitro experiments demonstrated that pectin hydrogels inhibited the functional activity of macrophages and minimally activated the complement system. Therefore, we showed that soft pectin hydrogels have low proinflammatory potential and can be used in surgery as a barrier material as prevention of adhesions in the abdominal cavity. The hard pectin hydrogel can be used in tissue engineering. The hard pectin hydrogels can be used in the reconstruction of skin because are overpopulated with collagen fibers and contribute to the formation of new connective tissue, their elasticity is comparable to the skin and can be adjusted. They are biodegradable, and no additional manipulation is required to remove them.
我们研究了果胶水凝胶的机械性能对皮下植入后急性炎症和组织修复的影响。我们使用了硬水凝胶和软水凝胶。组织学和血清细胞因子分析的结果表明,急性炎症的强度随着果胶水凝胶硬度的增加而增加。我们还表明,果胶水凝胶不会抑制组织修复。对果胶水凝胶的形态和纹理分析的结果表明,硬水凝胶的体内生物降解动力学大于软果胶水凝胶。我们还观察到,在硬水凝胶和软水凝胶的表面形成了胶原纤维网络。果胶水凝胶的表面被证明可以防止浸润性炎症细胞的黏附。体外实验的结果表明,果胶水凝胶抑制了巨噬细胞的功能活性,并且最小程度地激活了补体系统。因此,我们表明软果胶水凝胶具有低的促炎潜力,可在手术中用作防止腹腔粘连的屏障材料。硬果胶水凝胶可用于组织工程。硬果胶水凝胶可用于皮肤重建,因为它们富含胶原纤维,并有助于形成新的结缔组织,其弹性与皮肤相当,可以调节。它们是可生物降解的,并且不需要额外的操作来去除它们。