Université de Lorraine, CNRS, L2CM, F-54000 Nancy, France.
ABC Platform®, F-54505 Vandœuvre-lès-Nancy, France.
Molecules. 2023 Oct 6;28(19):6954. doi: 10.3390/molecules28196954.
Since the discovery of polyphenolic resins 150 years ago, the study of polymeric compounds named calix[]arene has continued to progress, and those skilled in the art perfectly know now how to modulate this phenolic ring. Consequently, calix[]arenes are now used in a large range of applications and notably in therapeutic fields. In particular, the calix[4]arene exhibits multiple possibilities for regioselective polyfunctionalization on both of its rims and offers researchers the possibility of precisely tuning the geometry of their structures. Thus, in the crucial research of new antibacterial active ingredients, the design of calixarenes finds its place perfectly. This review provides an overview of the work carried out in this aim towards the development of intrinsically active prodrogues or metallic calixarene complexes. Out of all the work of the community, there are some excellent activities emerging that could potentially place these original structures in a very good position for the development of new active ingredients.
自 150 年前发现多酚树脂以来,对名为杯芳烃的聚合化合物的研究一直在不断发展,现在该领域的专业人员已经完全掌握了如何调节这种酚环。因此,杯芳烃现在被广泛应用于各种领域,特别是在治疗领域。特别是,杯[4]芳烃在其两个边缘上都具有多官能团化的区域选择性的多种可能性,并为研究人员提供了精确调整其结构几何形状的可能性。因此,在新的抗菌活性成分的关键研究中,杯芳烃的设计非常完美。这篇综述概述了在开发固有活性前药或金属杯芳烃配合物方面所进行的工作。在所有的研究工作中,有一些非常出色的研究成果,这些成果可能会使这些原始结构在开发新的活性成分方面处于非常有利的地位。