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首页> 外文期刊>International immunopharmacology >Complement C3b interactions studied with surface plasmon resonance technique.
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Complement C3b interactions studied with surface plasmon resonance technique.

机译:用表面等离子体共振技术研究补体C3b相互作用。

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The surface plasmon resonance (SPR) phenomenon is utilized in a number of new real time biosensors. In this study, we have used this technique to study interactions between the central complement component C3b and its multiple ligands by using the Biacore equipment. The SPR technique is particularly suitable for analysis of the alternative complement pathway (AP) because the inherent nature of the latter is to amplify deposition of C3b on various surfaces. C3b was coupled onto the sensor surface and the coupling efficiency was compared under various conditions on both polystyrene and carboxymethylated dextran surfaces. After enzymatic C3b coupling or standard amine C3b coupling, we analyzed and compared the binding of four C3b ligands to the surface: factor B, factor H, C5 and the soluble complement receptor 1 (sCR1, CD35). Binding of each ligand to C3b was detected when C3b had been coupled either enzymatically or using the amine coupling, but the half-lives of the interactions were found to vary depending on the coupling procedure. Factor H binds to C3b via three interaction sites. The target sites are exposed on the C3b, C3c and C3d fragments of C3, respectively. Therefore, we also tested by using the Biacore whether factor B, C5 and sCR1 bind to C3c and/or C3d. It was found that factor B bound to C3d, but not to C3c. On the other hand, both C5 and sCR1 bound to C3c, but not to C3d. In conclusion, this study shows that SPR is a powerful tool in analyzing and mapping the interactions of C3b with its multiple ligands.
机译:表面等离子体共振(SPR)现象已在许多新型实时生物传感器中得到利用。在这项研究中,我们已经使用该技术通过使用Biacore设备来研究中央补体成分C3b及其多个配体之间的相互作用。 SPR技术特别适合分析替代补体途径(AP),因为后者的固有性质是放大C3b在各种表面上的沉积。将C3b偶联到传感器表面上,并在各种条件下比较聚苯乙烯和羧甲基化葡聚糖表面上的偶联效率。在酶促C3b偶联或标准胺C3b偶联之后,我们分析并比较了四种C3b配体与表面的结合:因子B,因子H,C5和可溶性补体受体1(sCR1,CD35)。当C3b已通过酶促偶联或使用胺偶联进行偶联时,可检测到每个配体与C3b的结合,但是发现相互作用的半衰期会根据偶联程序而有所不同。因子H通过三个相互作用位点与C3b结合。目标位点分别暴露在C3的C3b,C3c和C3d片段上。因此,我们还使用Biacore测试了因子B,C5和sCR1是否与C3c和/或C3d结合。发现因子B与C3d结合,但不与C3c结合。另一方面,C5和sCR1都绑定到C3c,但不绑定到C3d。总之,这项研究表明,SPR是分析和绘制C3b及其多个配体相互作用的有力工具。

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