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Macromolecular depletion modulates the binding of red blood cells to activated endothelial cells

机译:大分子耗竭调节红细胞与活化的内皮细胞的结合

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Adhesion of red blood cells (RBCs) to endothelial cells (ECs) is usually insignificant but an enhanced adhesion has been observed in various diseases associated with vascular complications. This abnormal adhesion under pathological conditions such as sickle cell disease has been correlated with increased levels of various plasma proteins but the detailed underlying mechanism(s) remains unclear. Usually it is assumed that the proadhesive effects of plasma proteins originate from ligand interactions cross-linking receptors on adjacent cells, but explicit results detailing binding sites or receptors for some proteins (e.g., fibrinogen) on either RBC or EC surfaces that would support this model are missing. In this study, the authors tested whether there is an alternative mechanism. Their results demonstrate that dextran 2 MDa promotes the adhesion of normal RBCs to thrombin-activated ECs and that this effect becomes more pronounced with increasing thrombin concentration or with prolonged thrombin incubation time. It is concluded that depletion interaction originating from nonadsorbing macromolecules (i.e., dextran) can modulate the adhesion of red blood cells to thrombin-activated EC. This study thereby suggests macromolecular depletion as an alternative mechanism for the adhesion-promoting effects of nonadsorbing plasma proteins. These findings should not only aid in getting a better understanding of diseases associated with vascular complications but should also have many potential applications in biomedical or biotechnological areas that require the control of cell-cell or cell surface interactions.
机译:红细胞(RBCs)与内皮细胞(ECs)的粘附通常不明显,但在与血管并发症相关的各种疾病中观察到粘附力增强。在诸如镰状细胞病的病理条件下的这种异常粘附与多种血浆蛋白水平的增加相关,但是详细的潜在机制仍不清楚。通常认为血浆蛋白的前黏附作用源于配体相互作用使相邻细胞上的受体交联,但是明确的结果详述了支持该模型的RBC或EC表面上某些蛋白(例如纤维蛋白原)的结合位点或受体缺失。在这项研究中,作者测试了是否存在替代机制。他们的结果表明,葡聚糖2 MDa促进正常RBC与凝血酶激活的EC的粘附,并且随着凝血酶浓度的增加或凝血酶孵育时间的延长,这种作用变得更加明显。结论是,源自非吸附性大分子(即右旋糖酐)的耗竭相互作用可以调节红细胞与凝血酶激活的EC的粘附。因此,这项研究表明大分子耗竭是非吸附血浆蛋白促进粘附作用的另一种机制。这些发现不仅有助于更好地了解与血管并发症相关的疾病,而且在需要控制细胞-细胞或细胞表面相互作用的生物医学或生物技术领域中应具有许多潜在应用。

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