Department of Chemistry and Analytical Sciences, The Open University, Milton Keynes, UK.
Bioconjug Chem. 2010 Jan;21(1):169-74. doi: 10.1021/bc900397s.
Aptamers are known for their short in vivo circulating half-life and rapid renal clearance. Their conjugation to poly(ethylene glycol) (PEG) is a way to improve their residence in the body. Two aptamers (AptD and AptF), having a disulfide protected thiol modification on the 3' end, have been conjugated to maleimide activated PEGs of various molecular weights and structures (linear PEG20; branched PEG20 and 40; PolyPEG17, 40, and 60 kDa). The high yield coupling (70-80% in most of the cases) could be achieved using immobilized tris[2-carboxyethyl]phosphine hydrochloride (TCEP) as reducing agent at pH 4. The affinity of PEGylated AptD for its target was reduced by conjugation to linear PEG20 and branched PEG40, but not to branched PEG20 and PolyPEGs. This work demonstrates an alternative approach to PEGylation of aptamers, and that the effect of PEG on the affinity for the target varies according to the structure and conformation of the synthetic polymer.
适体的体内循环半衰期短,肾脏清除速度快。将其与聚乙二醇(PEG)缀合是一种提高其在体内停留时间的方法。两个适体(AptD 和 AptF)在 3' 端具有二硫键保护的巯基修饰,已与各种分子量和结构的马来酰亚胺活化的 PEG(线性 PEG20;分支 PEG20 和 40;PolyPEG17、40 和 60 kDa)缀合。使用固定化三[2-羧乙基]膦盐酸盐(TCEP)作为还原剂,在 pH 4 下,可以实现高产率偶联(大多数情况下为 70-80%)。PEGylated AptD 与其靶标的亲和力通过与线性 PEG20 和分支 PEG40 缀合而降低,但与分支 PEG20 和 PolyPEG 没有降低。这项工作展示了一种替代适体 PEG 化的方法,并且 PEG 对靶亲和力的影响根据合成聚合物的结构和构象而变化。