Biomolecule-Functionalized Solid-State Ion Nanochannels/Nanopores: Features and Techniques

Small. 2019 Aug;15(32):e1804878. doi: 10.1002/smll.201804878. Epub 2019 Feb 12.

Abstract

Solid-state ion nanochannels/nanopores, the biomimetic products of biological ion channels, are promising materials in real-world applications due to their robust mechanical and controllable chemical properties. Functionalizations of solid-state ion nanochannels/nanopores by biomolecules pave a wide way for the introduction of varied properties from biomolecules to solid-state ion nanochannels/nanopores, making them smart in response to analytes or external stimuli and regulating the transport of ions/molecules. In this review, two features for nanochannels/nanopores functionalized by biomolecules are abstracted, i.e., specificity and signal amplification. Both of the two features are demonstrated from three kinds of nanochannels/nanopores: nucleic acid-functionalized nanochannels/nanopores, protein-functionalized nanochannels/nanopores, and small biomolecule-functionalized nanochannels/nanopores, respectively. Meanwhile, the fundamental mechanisms of these combinations between biomolecules and nanochannels/nanopores are explored, providing reasonable constructs for applications in sensing, transport, and energy conversion. And then, the techniques of functionalizations and the basic principle about biomolecules onto the solid-state ion nanochannels/nanopores are summarized. Finally, some views about the future developments of the biomolecule-functionalized nanochannels/nanopores are proposed.

Keywords: biomimetics; biomolecules; functionalization; ionic currents; nanochannels/nanopores.

Publication types

  • Research Support, Non-U.S. Gov't
  • Review

MeSH terms

  • Fluorescence
  • Ions
  • Nanopores*
  • Nanotechnology*
  • Nucleic Acids / chemistry
  • Signal Processing, Computer-Assisted

Substances

  • Ions
  • Nucleic Acids