首页> 外文期刊>Acta biomaterialia >Interactions of leukocytes and platelets with poly(lysine/leucine) immobilized on tetraethylene glycol-terminated self-assembled monolayers.
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Interactions of leukocytes and platelets with poly(lysine/leucine) immobilized on tetraethylene glycol-terminated self-assembled monolayers.

机译:白细胞和血小板与固定在四甘醇封端的自组装单分子膜上的聚赖氨酸/亮氨酸的相互作用。

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摘要

Surfaces that bind heparin are important for biomaterials for blood deheparinization. In our recent work it was demonstrated that a polypeptide composed of L-lysine and L-leucine (pKL), after immobilization onto tetra(ethylene glycol) terminated self-assembled monolayers (EG4-SAMs), can bind heparin from blood plasma in a selective, concentration-dependent way. During this work the effect of this peptide on platelet adhesion and activation and leukocyte adhesion was studied. The surface charge of these nanostructured surfaces was evaluated in order to correlate the effect of positively charged amine groups and hydrophobic methyl groups on the behavior of platelets and leukocyte adhesion. The results demonstrated that the presence of pKL decreased leukocyte adhesion to EG4-SAMs at all concentrations used. This effect is even more pronounced when surfaces were pre-immersed in heparinized plasma. In contrast, there is an increase in platelet adhesion and activation with increased percentage immobilized pKL. This effect is enhanced when surfaces were pre-immersed in heparinized plasma. However, adsorbed pKL in very low amounts does not induce platelet adhesion and activation compared with EG4, even when pre-immersed in plasma. Since only low pKL amounts are necessary to induce heparin selectivity, these results are promising for the development of heparin-binding biomaterials for blood deheparinization.
机译:结合肝素的表面对于血液去肝素化的生物材料很重要。在我们最近的工作中,证明了由L-赖氨酸和L-亮氨酸(pKL)组成的多肽在固定到以乙二醇为末端的自组装单层膜(EG4-SAMs)上后,可以与血浆中的肝素结合选择性的,浓度依赖性的方式。在这项工作期间,研究了该肽对血小板粘附和活化以及白细胞粘附的影响。评估这些纳米结构表面的表面电荷,以使带正电荷的胺基和疏水甲基对血小板和白细胞粘附行为的影响相关。结果表明,在所有使用浓度下,pKL的存在都会降低白细胞对EG4-SAM的粘附。当将表面预浸入肝素化血浆中时,这种效果更加明显。相反,随着固定的pKL百分比增加,血小板粘附和活化增加。当表面预先浸入肝素化血浆中时,这种效果会增强。但是,即使预先浸入血浆中,与EG4相比,吸附的pKL量很少也不会引起血小板粘附和活化。由于仅需少量pKL量即可诱导肝素选择性,因此这些结果对于开发用于血液脱肝素的肝素结合生物材料很有希望。

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