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Macrocycles: lessons from the distant past, recent developments, and future directions

机译:宏观周期:从遥远的过去,近期的发展和未来的方向中吸取的教训

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A noticeable increase in molecular complexity of drug targets has created an unmet need in the therapeutic agents that are larger than traditional small molecules. Macrocycles, which are cyclic compounds comprising 12 atoms or more, are now recognized as molecules that “are up to the task” to interrogate extended protein interfaces. However, because macrocycles (particularly the ones based on peptides) are equipped with large polar surface areas, achieving cellular permeability and bioavailability is anything but straightforward. While one might consider this to be the Achilles' heel of this class of compounds, the synthetic community continues to develop creative approaches toward the synthesis of macrocycles and their site-selective modification. This perspective provides an overview of both mechanistic and structural issues that bear on macrocycles as a unique class of molecules. The reader is offered a historical foray into some of the classic studies that have resulted in the current renaissance of macrocycles. In addition, an attempt is made to overview the more recent developments that give hope that macrocycles might indeed turn into a useful therapeutic modality.
机译:药物靶标分子复杂性的显着增加已导致对比传统小分子更大的治疗剂的未满足需求。大环是包含12个或更多原子的环状化合物,现在被认为是“完成任务”以询问延伸的蛋白质界面的分子。但是,由于大环化合物(特别是基于肽的大环化合物)配备了较大的极性表面积,因此实现细胞通透性和生物利用度并非易事。尽管有人可能认为这是此类化合物的致命弱点,但合成社区仍在继续开发合成大环及其位点选择性修饰的创新方法。该观点概述了作为大分子环的一类独特分子而涉及的机械和结构问题。为读者提供了一些历史的尝试,这些经典研究导致了当前大循环的复兴。此外,尝试概述最近的发展,这些发展使人们希望大环化合物确实可以转变成有用的治疗方式。

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