论文标题

木元素等离子体介导的透明质酸固定化,以开发功能性双向生物降解血管移植物的发展

Magnetron plasma mediated immobilization of hyaluronic acid for the development of functional double-sided biodegradable vascular graft

论文作者

Kudryavtseva, Valeriya, Stankevich, Ksenia, Kozelskaya, Anna, Kibler, Elina, Zhukov, Yuri, Malashicheva, Anna, Golovkin, Alexey, Mishanin, Alexander, Filimonov, Victor, Bolbasov, Evgeny, Tverdokhlebov, Sergei

论文摘要

血管移植物的临床需求与经常导致致命结局的心血管疾病有关。基于生物吸收聚合物的人造血管可以替代受损的血管组织,或者在刺激原位血管再生时产生旁路路径。但是,细胞在维持腔表面的机械完整性的同时,细胞在血管移植物上生长的适当条件问题仍然是一个挑战。在这项工作中,我们提出了一种两阶段的技术,用于从多碳酸酯中处理电纺血管移植物,该技术由血浆处理和随后在其表面上固定的透明质酸固定,从而产生薄的双层移植物,并具有一个亲水性和一个疏水性侧。血浆修饰激活聚合物表面并产生薄层,用于无连接器的生物活性分子固定,从而生产具有独特特性的材料。提出的修饰不会影响移植物的形态或机械性能并改善细胞粘附。所提出的方法可以可能用于各种可生物降解的聚合物,例如聚乳酸,聚乙二醇化合物及其共聚物和混合物,具有亲水性内表面和疏水性外表面。

The clinical need for vascular grafts is associated with cardiovascular diseases frequently leading to fatal outcomes. Artificial vessels based on bioresorbable polymers can replace the damaged vascular tissue or create a bypass path for blood flow while stimulating regeneration of a blood vessel in situ. However, the problem of proper conditions for the cells to grow on the vascular graft from the adventitia while maintaining its mechanical integrity of the luminal surface remains a challenge. In this work, we propose a two-stage technology for processing electrospun vascular graft from polycaprolactone, which consists of plasma treatment and subsequent immobilization of hyaluronic acid on its surface producing thin double-sided graft with one hydrophilic and one hydrophobic side. Plasma modification activates the polymer surfaces and produces a thin layer for linker-free immobilization of bioactive molecules, thereby producing materials with unique properties. The proposed modification does not affect the morphology or mechanical properties of the graft and improves cell adhesion. The proposed approach can potentially be used for various biodegradable polymers such as polylactic acid, polyglycolide, and their copolymers and blends, with a hydrophilic inner surface and a hydrophobic outer surface.

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