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Artificial transmembrane potassium transporters: designs, functions, mechanisms and applications.

Xiyu YuanJie ShenHuaqiang Zeng
Published in: Chemical communications (Cambridge, England) (2024)
Potassium channels represent the most prevalent class of ion channels, exerting regulatory control over numerous vital biological processes, including muscle contraction, neurotransmitter release, cell proliferation, and apoptosis. The seamless integration of astonishing functions into a sophisticated structure, as seen in these protein channels, inspires the chemical community to develop artificial versions, gearing toward simplifying their structure while replicating their key functions. In particular, over the past ten years or so, a number of elegant artificial potassium transporters have emerged, demonstrating high selectivity, high transport efficiency or unprecedented transport mechanisms. In this review, we will provide a detailed exposition of these artificial potassium transporters that are derived from a single molecular backbone or self-assembled from multiple components, with their respective structural designs, channel functions, transport mechanisms and biomedical applications thoroughly reviewed.
Keyphrases
  • cell proliferation
  • healthcare
  • oxidative stress
  • mental health
  • skeletal muscle
  • endoplasmic reticulum stress
  • cell death
  • small molecule
  • protein protein
  • smooth muscle
  • signaling pathway