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首页> 外文期刊>Angewandte Chemie >Click and Release: A Chemical Strategy toward Developing Gasotransmitter Prodrugs by Using an Intramolecular Diels-Alder Reaction
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Click and Release: A Chemical Strategy toward Developing Gasotransmitter Prodrugs by Using an Intramolecular Diels-Alder Reaction

机译:点击并释放:一种通过分子内狄尔斯-阿尔德反应开发气体传输前药的化学策略

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摘要

Prodrug strategies have been proven to be a very effective way of addressing delivery problems. Much of the chemistry in prodrug development relies on the ability to mask an appropriate functional group, which can be removed under appropriate conditions. However, developing organic prodrugs of gasotransmitters represent unique challenges. This is especially true with carbon monoxide, which does not have an easy handle for bioreversible derivatization. By taking advantage of an intramolecular Diels-Alder reaction, we have developed a prodrug strategy for preparations of organic CO prodrugs that are stable during synthesis and storage, and yet readily release CO with tunable release rates under near physiological conditions. The effectiveness of the CO prodrug system in delivering a sufficient quantity of CO for possible therapeutic applications has been studied using a cell culture anti-inflammatory assay and a colitis animal model. These studies fully demonstrate the proof of concept, and lay a strong foundation for further medicinal chemistry work in developing organic CO prodrugs.
机译:前药策略已被证明是解决分娩问题的非常有效的方法。前药开发中的许多化学作用都取决于掩盖适当官能团的能力,该官能团可在适当条件下除去。然而,开发气体传输剂的有机前药是独特的挑战。一氧化碳尤其如此,因为一氧化碳不容易进行生物可逆的衍生作用。通过利用分子内Diels-Alder反应,我们开发了一种前药策略,用于制备有机CO前药,这些前药在合成和存储过程中保持稳定,并且在生理条件下易于以可调的释放速率释放CO。使用细胞培养抗炎试验和结肠炎动物模型研究了CO前药系统在输送足够量的CO以用于可能的治疗应用中的有效性。这些研究充分证明了概念证明,并为进一步开发有机一氧化碳前药的药物化学工作奠定了坚实的基础。

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