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首页> 外文期刊>Bioconjugate Chemistry >PAMAM Dendrimers Conjugated with an Uncharged Gadolinium(III) Chelate with a Fast Water Exchange: The Influence of Chelate Charge on Rotational Dynamics
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PAMAM Dendrimers Conjugated with an Uncharged Gadolinium(III) Chelate with a Fast Water Exchange: The Influence of Chelate Charge on Rotational Dynamics

机译:PAMAM树枝状大分子与不带电荷的Che(III)螯合物共轭并具有快速水交换功能:螯合物电荷对旋转动力学的影响

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A bifunctional ligand, D03A-py~(NO-C) (D03A-py~(NO-C) = 10-[(4-carboxy-l-oxidopyridin-2-yl)methyl]-1,4,7,10-tetraazacyclododecane-1,4,7-triacetic acid), was attached to different generations (G0, G1, G2, and G4) of ethylenediamine-cored PAMAM dendrimers (PAMAM = polyamidoamine). The gadolinium(III) complex of this ligand possesses one molecule of water in its first coordination sphere and has a unique combination of a short water residence lifetime (τ_M = 34 ns), a neutral overall charge, and a possibility for rigid attachment to molecules bearing primary amino groups. These favorable properties predestine the ligand for constructions of highly efficient nanosized contrast agents for magnetic resonance imaging (MRI). The coupling reaction between the carboxylic group on the pyridine-N-oxide moiety of the protected ligand molecule and primary amines in the dendrimers was achieved by an active ester method under nonaqueous conditions using the coupling agent TBTU. This reaction afforded conjugates with high loadings (80-100% of the theoretically available primary amines) and of high purity. The gadolinium(III) complexes of the conjugates were studied by variable-temperature ~(17)O NMR and ~1H NMRD measurements. The water residence lifetime (τ_M = 55 ns) found in the largest conjugate G4-[Gd(H2O)(do3a-py~(NO-C))].v7, though somewhat longer compared to the "monomeric" complex, is still short enough not to limit the relaxivity. Surprisingly, compared with analogous conjugates with negatively charged chelates, the prepared uncharged compounds displayed much faster global rotational correlation times (τ_g) and lower relaxivities. This phenomenon can be explained on the basis of Coulomb interactions. The motion of the charged chelates is restrained due to interactions with their counterions and the chelates themselves, while the uncharged chelates are not affected. Comparison of the PAMAM-based conjugates bearing uncharged and (1-)-charged chelates based on relaxometric data, ~1H DOSY spectra, and SAXS measurements reveals that τ_g reflects the rotational motion of large segments (dendrons) of the conjugates rather than that of the whole macromolecule.
机译:双功能配体D03A-py〜(NO-C)(D03A-py〜(NO-C)= 10-[(4-羧基-1-氧化吡啶基-2-基)甲基] -1,4,7,10 -四氮杂环十二烷-1,4,7-三乙酸)连接到乙二胺为核心的PAMAM树枝状大分子(PAMAM =聚酰胺基胺)的不同世代(G0,G1,G2和G4)。该配体的lin(III)配合物在其第一个配位域中具有一个水分子,并且具有水停留寿命短(τ_M= 34 ns),中性总电荷以及与分子刚性连接的可能性的独特组合带有伯氨基。这些有利的性质预先确定了用于构造用于磁共振成像(MRI)的高效纳米尺寸造影剂的配体。受保护的配体分子的吡啶-N-氧化物部分上的羧基与树枝状聚合物中的伯胺之间的偶联反应是在非水条件下使用偶联剂TBTU通过活性酯法实现的。该反应提供了具有高负载量(理论上可获得的伯胺的80-100%)和高纯度的缀合物。通过〜(17)O NMR和〜1H NMRD可变温度研究了缀合物的g(III)配合物。在最大的共轭物G4- [Gd(H2O)(do3a-py〜(NO-C))]。v7中发现的水停留寿命(τ_M= 55 ns),尽管比“单体”配合物更长。足够短,不会限制松弛度。令人惊讶地,与带负电荷螯合物的类似共轭物相比,制备的不带电荷化合物显示出更快的整体旋转相关时间(τ_g)和更低的弛豫度。可以根据库仑相互作用来解释这种现象。带电荷的螯合物的运动由于与它们的抗衡离子和螯合物本身的相互作用而受到限制,而不带电荷的螯合物不受影响。基于弛豫测量数据,〜1H DOSY光谱和SAXS测量结果对带有不带电荷和(1-)带电荷的螯合物的PAMAM基共轭物进行比较,发现τ_g反映了共轭物大片段(树枝状)的旋转运动,而不是整个大分子。

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