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首页> 外文期刊>Seminars in Thrombosis and Hemostasis >The role of regioselectively sulfated and acetylated polysaccharide coatings of biomaterials for reducing platelet and plasma protein adhesion.
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The role of regioselectively sulfated and acetylated polysaccharide coatings of biomaterials for reducing platelet and plasma protein adhesion.

机译:生物材料的区域选择性硫酸化和乙酰化多糖涂层在减少血小板和血浆蛋白粘附方面的作用。

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A brief survey is given about the role of natural polysaccharides such as heparin (HE), heparan sulfate (HS), chondroitin sulfate (CS), and dermatan sulfate (DS) in reducing blood coagulation and their potential use as athrombogenic coatings in the development of tailor-made athrombogenic biomaterials. Furthermore, known literature and new results about platelet adhesion on regioselectively modified polysaccharides such as HE, chitosan with HE-like functional groups, and sulfated cellulose are presented in two different perfusion systems at different shear rates. Regioselectively modified polysaccharides were tested as coatings of two polymers. The strongest influence on platelet adhesion was observed when the three regioselectively modified polysaccharides contained 6-O-sulfo- groups. No or little influence was seen with 3-O-sulfo- groups. A variable effect on platelet adhesion was found in position 2. N-sulfo- groups in HE induced a medium platelet adhesion, and O-sulfo- groups of iduronic acid moiety in HE induced none. Cellulose containing 2-O-sulfo- groups induced little platelet adhesion, and 2-N- sulfo- groups in chitosan induced a variable platelet adhesion response, depending on the N-SO(3)/NAc ratio. Preliminary plasma protein adhesion measurements on immobilized HE derivatives with four different fluorescence-labeled plasma proteins showed a regioselective influence with serum albumin and fibrinogen. 6-O-desulfated HE gave the strongest reduction in protein adsorption followed by N-desulfation and 2-O-desulfation; the lowest reduction was observed with 3-O-desulfation. Tailor-made athrombogenic coatings of HE should not carry high amounts of 6-O-sulfo- groups or of N-sulfo- groups. Regioselectively modified cellulose and chitosan may become suitable for tailor-made athrombogenic biomaterials when regioselective reactions are further optimized.
机译:简要调查了天然多糖(例如肝素(HE),硫酸乙酰肝素(HS),硫酸软骨素(CS)和硫酸皮肤素(DS))在减少血液凝结中的作用及其在开发中作为血栓形成涂层的潜在用途量身定制的致血栓生物材料。此外,在两个不同的灌注系统中,以不同的剪切速率显示了关于血小板在区域选择性修饰的多糖(例如HE,具有HE样官能团的壳聚糖和硫酸纤维素)上的粘附的已知文献和新结果。将区域选择性改性的多糖测试为两种聚合物的涂层。当三种区域选择性修饰的多糖含有6-O-磺基时,对血小板粘附的影响最大。 3-O-磺基几乎没有影响。在位置2发现了对血小板粘附的可变影响。HE中的N-磺基诱导了中等的血小板粘附,HE中的艾杜糖酸部分的O-磺基未诱导。含2-O-磺基的纤维素几乎不会引起血小板粘附,而壳聚糖中的2-N-磺基可引起可变的血小板粘附反应,具体取决于N-SO(3)/ NAc的比例。固定的HE衍生物与四种不同的荧光标记血浆蛋白对血浆蛋白的初步粘附性测量显示,血清白蛋白和纤维蛋白原对区域选择性有影响。 6-O-脱硫的HE引起蛋白质吸附的减少最大,其次是N-脱硫和2-O-脱硫。用3-O-脱硫法观察到的还原度最低。量身定制的HE血栓形成涂层不应带有大量的6-O-磺基或N-磺基。当区域选择性反应得到进一步优化时,区域选择性改性的纤维素和壳聚糖可能变得适合于量身定制的致血栓生物材料。

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