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首页> 外文期刊>Journal of biomedical materials research, Part A >Fibrinogen and von Willebrand's Factor Adsorption Are Both Required for Platelet Adhesion from Sheared Suspensions to Polyethylene Preadsorbed with Blood Plasma
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Fibrinogen and von Willebrand's Factor Adsorption Are Both Required for Platelet Adhesion from Sheared Suspensions to Polyethylene Preadsorbed with Blood Plasma

机译:从剪切悬浮液到血浆中已吸附的聚乙烯的血小板粘附均需要纤维蛋白原和von Willebrand的因子吸附

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Previous studies showed that platelet adhesion to biomaterials from static suspensions was greatly increased by the adsorption of even very small amounts (<5 ng/cm~2) of fibrinogen (Fg). In this study, the sensitivity of platelet adhesion to Fg was reexamined by measuring platelet adhesion under flow conditions. The role of adsorbed von Willebrand's factor (vWf) was also studied. Polyethylene (PE) tubing was preadsorbed with Fg, vWf, vWf-defi-cient plasma, and Fg-deficient plasma or serum with added Fg, and Fg adsorption measured with ~(125)I Fg. Platelets in a red blood cell suspension were passed through the tubes at either low (50 s~(-1)) or high (500 or 1000 s~(-1)) shear rates and adhesion measured with an improved LDH assay. Adhesion from flowing suspensions measured after preadsorption with afibrinogenemic plasma or serum was very low, but increased greatly with addition of Fg. Less than 10 ng/cm~2 of adsorbed Fg was enough to greatly enhance platelet adhesion. Adhesion at high shear was also strongly affected by vWf, as platelet adhesion at 500 s~(-1) to PE preadsorbed with vWf-deficient plasma decreased by more than tenfold compared to adhesion at 50 s~(-1), but platelet adhesion to PE preadsorbed with normal plasma increased about eightfold when shear rate was increased. The results show that very low amounts of adsorbed Fg are able to support platelet adhesion under shear flow. However, adsorbed vWf also appears to play an important cofactor role in platelet adhesion to biomaterials, as its presence greatly augments platelet adhesion under high shear.
机译:先前的研究表明,即使吸附极少量(<5 ng / cm〜2)的纤维蛋白原(Fg),静态悬浮液对血小板的粘附也会大大增加。在这项研究中,通过在流动条件下测量血小板粘附力来重新检查血小板对Fg的敏感性。还研究了吸附的von Willebrand因子(vWf)的作用。聚乙烯(PE)管预先吸附有Fg,vWf,vWf缺陷血浆和Fg缺陷血浆或血清,并添加Fg,并用〜(125)I Fg测量Fg吸附。使红细胞悬液中的血小板以低(50 s〜(-1))或高(500或1000 s〜(-1))剪切速率通过试管,并使用改良的LDH测定法测定粘附力。用纤维蛋白原血浆或血清预吸附后测得的流动悬浮液的粘附力很低,但随着Fg的添加而大大增加。小于10 ng / cm〜2的吸附Fg足以大大增强血小板的粘附性。 vWf也会强烈影响高剪切下的粘附力,因为与在50 s〜(-1)的粘附力相比,在500 s〜(-1)的血浆对预吸附有vWf的血浆的PE的血小板粘附力下降了十倍以上,但是血小板粘附力当剪切速率增加时,用正常血浆预吸附的PE的吸收值增加约8倍。结果表明,极少量的Fg吸附能够在剪切流下支持血小板粘附。但是,吸附的vWf似乎也对血小板与生物材料的粘附起着重要的辅助因子作用,因为它的存在极大地增加了高剪切力下的血小板粘附。

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