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Effect of Radiographic Contrast Media on the Spectrin/Band3-Network of the Membrane Skeleton of Erythrocytes

机译:射线照相造影剂对红细胞膜骨架光谱/ Band3-网络的影响

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摘要

The membrane of red blood cells consists of a phospholipid bilayer with embedded membrane proteins and is associated on the cytoplasmatic side with a network of proteins, the membrane skeleton. Band3 has an important role as centre of the functional complexes e.g. gas exchange complex and as element of attachment for the membrane skeleton maintaining membrane stability and flexibility. Up to now it is unclear if band3 is involved in the morphology change of red blood cells after contact with radiographic contrast media. The study revealed for the first time that Iopromide induced markedly more severe alterations of the membrane skeleton compared to Iodixanol whose effects were similar to erythrocytes suspended in autologous plasma. A remarkable clustering of band3 was found associated with an accumulation of band3 in spicules and also a sequestration of band3 to the extracellular space. This was evidently accompanied by a gross reduction of functional band3 complexes combined with a dissociation of spectrin from band3 leading to a loss of homogeneity of the spectrin network. It could be demonstrated for the first time that RCM not only induced echinocyte formation but also exocytosis of particles at least coated with band3.
机译:红细胞的膜由具有嵌入的膜蛋白的磷脂双层组成,并且在细胞质侧与蛋白网络(膜骨架)相关。 Band3作为功能复合物的中心发挥重要作用,例如气体交换复合物,作为膜骨架的附着元素,可保持膜的稳定性和柔韧性。到目前为止,尚不清楚band3是否与放射线造影剂接触后是否参与红细胞的形态变化。这项研究首次表明,与碘克沙醇相比,碘普罗胺明显引起膜骨架的更严重改变,碘克沙醇的作用类似于自体血浆中悬浮的红细胞。发现band3的显着聚集与sp3在针状体中的积累有关,也将band3隔离到细胞外空间。显然,这伴随着功能性band3复合物的总体减少,以及血影蛋白从band3的解离,导致血影蛋白网络均质性的丧失。首次可以证明,RCM不仅诱导了棘突细胞的形成,而且还诱导了至少覆盖有band3的颗粒的胞吐作用。

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