生物医学用途的生物活性硫酸盐纤维素的开发

T. Groth, C. Willems, Kai Zhang, S. Fischer
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引用次数: 1

摘要

纤维素是地球上最丰富的生物分子。纤维素的化学衍生物在工业和生物技术方面有许多用途。纤维素硫酸盐(CS)是一类水溶性衍生物,已用于工业应用,但尚未用于医学。本文研究了纤维素的无水葡萄糖单元(AGU)不同磺化程度的衍生物对肝素结合域生长因子如成纤维细胞生长因子2 (FGF-2)的抗凝血作用和调节作用。结果表明,高磺化度的CS具有与肝素相当的抗凝血活性,并与抑制凝血酶和Xa因子活性的抗凝血酶III协同作用,使CS成为血液接触医疗器械抗凝血涂层的兴趣所在。此外,研究表明,在细胞培养研究中,与肝素磺化程度相当的CS对FGF-2的有丝分裂作用具有促进作用,这表明它们在创伤学和再生医学领域可作为植入材料的涂层或组织工程支架的组成部分。媒介医学学报,2020;59(3):56-67。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DEVELOPMENT OF BIOACTIVE CELLULOSE SULFATES FOR BIOMEDICAL APPLICATIONS
Cellulose is the most abundant biomolecule on earth. Chemical derivatives of cellulose have found multitude of uses in industrial and biotechnological applications. Cellulose sulfates (CS) represent a class of water-soluble derivatives that have been employed in industrial application, but not yet in medicine. Here derivatives with different degree of sulfation of anhydroglucose unit (AGU) of cellulose have been studied toward anticoagulant effects and modulating effects of growth factors with heparin-binding domains like fibroblast growth factor 2 (FGF-2). The results show that CS of higher sulfation degree have an anti-coagulant activity comparable to that of heparin with cooperative action to anti-thrombin III that inhibits thrombin and Factor Xa activity making CS interesting for anticoagulant coating of blood-contacting medical devices. Furthermore, the studies show that CS with comparable sulfation degree to heparin have a promoting activity on the mitogenic effect of FGF-2 shown in cell culture studies that indicate their application as coatings of implant materials or component of tissue engineering scaffolds in the area of traumatology and regenerative medicine. Acta Medica Medianae 2020;59(3):56-67.
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