Chaschin Ivan S, Bakuleva Natalia P, Grigoriev Timofei E, Krasheninnikov Sergey V, Nikitin Lev N
Nesmeyanov Institute of Organoelement Compounds, Russian Academy of Sciences, Vavilova 28, Moscow 119991, Russian Federation.
Bakulev Scientific Center for Cardiovascular Surgery, Rublevskoe Sh. 135, Moscow 121552, Russian Federation.
J Mech Behav Biomed Mater. 2017 Mar;67:10-18. doi: 10.1016/j.jmbbm.2016.11.015. Epub 2016 Nov 30.
A mixture of water/carbon dioxide is a "green" perspective solvent from the viewpoint of biomedical applications. Clathrate hydrates are formed this solvent under certain conditions and a very interesting question is the impact of clathrates hydrates on the structure and properties of bovine pericardium, which is used in biomedicine, in particular as a main part of biological heart valve prostheses. The aim of the present work is to investigate the influence of clathrates on the structure and mechanical properties of the collagen tissue treated with chitosan in HO/CO mixtures under pressure 3.0-3.5MPa and temperatures 2-4°C. It was first found that the clathrate hydrates in this media due to the strong fluctuations "bomb" collagen tissue of bovine pericardium, which is manifested in the appearance of numerous small gaps (pores) with mean size of 225±25nm and large pores with size of 1-3μ on the surface and within collagen matrices. High porosity leads to averaging characteristics of the organization structure in tissues with different orientation of the collagen fibers. As a result, the mechanical properties of the collagen tissue with a different orientation of the collagen fibrils become similar, which is quite different from their original properties. The structural changes caused by the influence of the environment clathrate hydrates led to a significant decrease of the tensile strength (30-47% in total, p<0.05) and initial elastic moduli (74-83%, p<0.05). However, the final elastic moduli and the maximum tensile virtually unchanged compared to the control. Nevertheless, it was found that the direct deposition of chitosan from the HO/CO mixtures with clathrate improve the mechanical-strength properties of the porous matrices. We believe that these improved mechanical properties are achieved due to particularly deep and uniform impregnation of the collagen matrix with chitosan from its pressurized solutions in HO/CO mixtures.
从生物医学应用的角度来看,水/二氧化碳混合物是一种“绿色”的潜在溶剂。在特定条件下,这种溶剂会形成笼形水合物,一个非常有趣的问题是笼形水合物对牛心包结构和性能的影响,牛心包在生物医学中使用,特别是作为生物心脏瓣膜假体的主要部分。本工作的目的是研究在3.0 - 3.5MPa压力和2 - 4°C温度下,HO/CO混合物中笼形物对用壳聚糖处理的胶原组织的结构和力学性能的影响。首先发现,该介质中的笼形水合物由于强烈波动“轰炸”牛心包的胶原组织,这表现为在胶原基质表面和内部出现许多平均尺寸为225±25nm的小间隙(孔隙)和尺寸为1 - 3μm的大孔隙。高孔隙率导致不同取向胶原纤维组织的组织结构特征平均化。结果,具有不同取向胶原原纤维的胶原组织的力学性能变得相似,这与它们的原始性能有很大不同。笼形水合物环境影响引起的结构变化导致拉伸强度显著降低(总计30 - 47%,p<0.05)和初始弹性模量降低(74 - 83%,p<0.05)。然而,与对照相比,最终弹性模量和最大拉伸强度几乎不变。尽管如此,发现从含有笼形物的HO/CO混合物中直接沉积壳聚糖可改善多孔基质的机械强度性能。我们认为,这些改善的机械性能是由于壳聚糖从其在HO/CO混合物中的加压溶液中对胶原基质进行了特别深入和均匀的浸渍而实现的。