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Tailoring dendrimer conjugates for biomedical applications: the impact of altering hydrophobicity

机译:用于生物医学应用的Dendrimer缀合物:改变疏水性的影响

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Hydrophobicity is known to play a key role in the biological distribution of materials but is often an overlooked parameter when conjugating targeting agents, drugs, and dyes to dendrimers. This review examines the impact of hydrophobic variation in stochastically conjugated dendrimers as well as materials where synthetic methods or approaches to purification provide more controlled samples. Hydrophobic interactions are considered for three general classes: (1) terminal functional group modifications, (2) bioactive small molecules chosen to interact with receptors and proteins as targeting agents and/or drugs, and (3) imaging agents to track biological activity. Impacts on membrane interaction and cellular uptake, biodistribution, interaction with transport proteins, and pharmacokinetics are discussed. The size range of the dendrimers discussed is similar to 1-10nm.
机译:已知疏水性在材料的生物分布中发挥关键作用,但是在将靶向剂,药物和染料缀合时通常是忽略参数的忽略参数。 该综述检查疏水变化在随机共轭树枝状大分子中的影响以及合成方法或纯化方法的材料提供了更多的控制样品。 疏水相互作用被认为是三种一般类:(1)末端官能团修饰,(2)选择与受体和蛋白质相互作用的生物活性小分子作为靶向剂和/或药物,以及(3)成像剂以跟踪生物活性。 讨论了对膜相互作用和细胞摄取,生物分布,与运输蛋白相互作用以及药代动力学的影响。 所讨论的树枝状大分子的尺寸范围类似于1-10nm。

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