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Influence of dendrimer generation and polyethylene glycol length on the biodistribution of PEGylated dendrimers

机译:树枝状聚合物的生成和聚乙二醇长度对聚乙二醇化树枝状聚合物生物分布的影响

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摘要

Dendrimers are a potential drug carrier. Because modification with polyethylene glycol (PEG) is known to improve the blood retention, PEGylated dendrimers have been studied as a useful drug carrier. In this study, three types of PEGylated L-lysine-bearing polyamidoamine dendrimers (PEG2k-Lys-PAMAM (G4), PEG5k-Lys-PAMAM (G4), PEG2k-Lys-PAMAM (G5)) were synthesized, which are composed of a dendrimer of different generations (generations 4 and 5) and PEG chains with different molecular weights (2k and 5k). An acetylated L-lysine-bearing dendrimer was also synthesized as a non-PEGylated dendrimer. Bifunctional diethylenetriaminepentaacetic acid (pSCN-benzyl-DTPA) was bound to the epsilon -amino group of lysine in a dendrimer, to be labeled with radioactive indium-111. These PEGylayed dendrimers showed longer blood retention and lower accumulation in other normal organs such as the kidneys than the non-PEGylated dendrimer. The PEGylated dendrimers with the higher generation and the longer PEG led the greater blood retention.
机译:树状聚合物是潜在的药物载体。由于已知用聚乙二醇(PEG)修饰可改善血液保留,因此已研究了PEG化树状聚合物作为有用的药物载体。在这项研究中,合成了三种类型的带有PEG的L-赖氨酸的聚酰胺基树状大分子(PEG2k-Lys-PAMAM(G4),PEG5k-Lys-PAMAM(G4),PEG2k-Lys-PAMAM(G5)),由不同代(第4和第5代)的树状大分子和分子量(2k和5k)不同的PEG链。还合成了带有乙酰化L-赖氨酸的树状大分子,作为非PEG化的树状大分子。双官能二亚乙基三胺五乙酸(pSCN-苄基-DTPA)在树枝状聚合物中与赖氨酸的ε-氨基结合,用放射性铟-111标记。与未聚乙二醇化的树状大分子相比,这些聚乙二醇化的树状大分子在其他正常器官(例如肾脏)中表现出更长的血液滞留和更低的积累。具有更高世代和更长PEG的PEG化树状大分子导致更大的血液保留。

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