Wandersee Nancy J, Punzalan Rowena C, Rettig Michael P, Kennedy Michael D, Pajewski Nicholas M, Sabina Richard L, Paul Scott J, Low Philip S, Hillery Cheryl A
Department of Pediatrics, Medical College of Wisconsin, Milwaukee, WI 53226, USA.
Br J Haematol. 2005 Nov;131(3):366-77. doi: 10.1111/j.1365-2141.2005.05767.x.
We tested the hypothesis that dehydration-induced alterations in red blood cell (RBC) membrane organisation or composition contribute to sickle cell adhesion in sickle cell disease (SCD). To examine the role of RBC hydration in adhesion to the subendothelial matrix protein thrombospondin-1 (TSP), normal and sickle RBCs were incubated in buffers of varying tonicity and tested for adhesion to immobilised TSP under flow conditions. Sickle RBCs exhibited a decrease in TSP binding with increasing cell hydration (P<0.005), suggesting that cellular dehydration may contribute to TSP adhesion. Consistent with this hypothesis, normal RBCs showed an increase in TSP adhesion with increasing dehydration (P<0.01). Furthermore, increased TSP adhesion of normal RBCs could also be induced by isotonic dehydration using nystatin-sucrose buffers. Finally, TSP adhesion of both sickle RBCs and dehydrated normal RBCs was inhibited by the anionic polysaccharides, chondroitin sulphate A and high molecular weight dextran sulphate, but not by competitors of CD47-, band 3-, or RBC phosphatidylserine-mediated adhesion. More importantly, we found increased adhesion of nystatin-sucrose dehydrated normal mouse RBCs to kidney capillaries following re-infusion in vivo. In summary, these findings demonstrate that changes in hydration can significantly impact adhesion, causing normal erythrocytes to display adhesive properties similar to those of sickle cells and vice versa.
脱水引起的红细胞(RBC)膜组织或组成的改变会导致镰状细胞病(SCD)中镰状细胞的黏附。为了研究红细胞水合作用在与内皮下基质蛋白血小板反应蛋白-1(TSP)黏附中的作用,将正常和镰状红细胞在不同张力的缓冲液中孵育,并在流动条件下测试其与固定化TSP的黏附。镰状红细胞与TSP的结合随着细胞水合作用的增加而减少(P<0.005),这表明细胞脱水可能导致TSP黏附。与该假设一致,正常红细胞随着脱水程度的增加TSP黏附增加(P<0.01)。此外,使用制霉菌素-蔗糖缓冲液进行等渗脱水也可诱导正常红细胞的TSP黏附增加。最后,镰状红细胞和脱水正常红细胞的TSP黏附均受到阴离子多糖硫酸软骨素A和高分子量硫酸葡聚糖的抑制,但不受CD47、带3或红细胞磷脂酰丝氨酸介导的黏附竞争剂的抑制。更重要的是,我们发现制霉菌素-蔗糖脱水的正常小鼠红细胞在体内重新输注后与肾毛细血管的黏附增加。总之,这些发现表明水合作用的变化可显著影响黏附,使正常红细胞表现出与镰状细胞相似的黏附特性,反之亦然。