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Amplified release through the stimulus triggered degradation of self-immolative oligomers, dendrimers, and linear polymers

机译:通过刺激的释放释放引发自焚性低聚物,树枝状聚合物和线性聚合物的降解

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摘要

In recent years, numerous delivery systems based on polymers, dendrimers, and nano-scale assemblies have been developed to improve the properties of drug molecules. In general, for the drug molecules to be active, they must be released from these delivery systems, ideally in a selective manner at the therapeutic target. As the changes in physiological conditions are relatively subtle from one tissue to another and the concentrations of specific enzymes are often quite low, a release strategy involving the amplification of a biological signal is particularly attractive. This article describes the development of oligomers, dendrimers, and linear polymers based on self-immolative spacers. This new class of molecules is designed to undergo a cascade of intramolecular reactions in response to the cleavage of a trigger moiety, resulting in molecular fragmentation and the release of multiple reporter or drug molecules. Progress in the development of these materials as drug delivery vehicles and sensors will be highlighted.
机译:近年来,已经开发了许多基于聚合物,树枝状聚合物和纳米级组件的递送系统,以改善药物分子的性能。通常,为了使药物分子具有活性,必须将它们从这些递送系统中释放出来,最好以选择性的方式在治疗靶上释放它们。由于生理状况从一个组织到另一个组织的变化相对较细,并且特定酶的浓度通常很低,因此涉及放大生物信号的释放策略特别有吸引力。本文介绍了基于自消旋间隔基的低聚物,树枝状聚合物和线性聚合物的开发。这类新型分子被设计为响应触发部分的裂解而经历一连串的分子内反应,从而导致分子碎裂并释放多个报道分子或药物分子。这些材料作为药物输送工具和传感器的开发进展将被重点介绍。

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