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Blood Compatibility of Sulfonated Cladophora Nanocellulose Beads

机译:磺化枝兜兰纳米纤维素珠的血液相容性

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摘要

Sulfonated cellulose beads were prepared by oxidation of Cladophora nanocellulose to 2,3-dialdehyde cellulose followed by sulfonation using bisulfite. The physicochemical properties of the sulfonated beads, i.e., high surface area, high degree of oxidation, spherical shape, and the possibility of tailoring the porosity, make them interesting candidates for the development of immunosorbent platforms, including their application in extracorporeal blood treatments. A desired property for materials used in such applications is blood compatibility; therefore in the present work, we investigate the hemocompatibility of the sulfonated cellulose beads using an in vitro whole blood model. Complement system activation (C3a and sC5b-9 levels), coagulation activation (thrombin-antithrombin (TAT) levels) and hemolysis were evaluated after whole blood contact with the sulfonated beads and the results were compared with the values obtained with the unmodified Cladophora nanocellulose. Results showed that neither of the cellulosic materials presented hemolytic activity. A marked decrease in TAT levels was observed after blood contact with the sulfonated beads, compared with Cladophora nanocellulose. However, the chemical modification did not promote an improvement in Cladophora nanocellulose hemocompatibility in terms of complement system activation. Even though the sulfonated beads presented a significant reduction in pro-coagulant activity compared with the unmodified material, further modification strategies need to be investigated to control the complement activation by the cellulosic materials.
机译:磺化纤维素珠的制备方法是:将枝形紫苏纳米纤维素氧化为2,3-二醛纤维素,然后使用亚硫酸氢盐进行磺化。磺化珠粒的物理化学性质,即高表面积,高氧化度,球形以及定制孔隙的可能性,使其成为开发免疫吸附剂平台的有趣候选者,包括其在体外血液处理中的应用。用于此类应用的材料的理想特性是血液相容性。因此,在本工作中,我们将使用体外全血模型研究磺化纤维素珠的血液相容性。在全血与磺化珠粒接触后,评估补体系统激活(C3a和sC5b-9水平),凝血激活(凝血酶-抗凝血酶(TAT)水平)和溶血作用,并将结果与​​未经修饰的枝形隐藻纳米纤维素获得的值进行比较。结果表明,两种纤维素材料均不具有溶血活性。与Cladophora纳米纤维素相比,血液与磺化微珠接触后,TAT水平显着下降。然而,就补体系统活化而言,化学修饰并没有促进枝状刺槐纳米纤维素血液相容性的改善。尽管与未修饰的材料相比,磺化珠粒的促凝活性显着降低,但仍需研究进一步的修饰策略以控制纤维素材料的补体激活。

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