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Also known as nanopores

thumb|Schematic of Nanopore Internal Machinery and corresponding current blockade during sequencing A nanopore is a pore of nanometer size. It may, for example, be created by a pore-forming protein or as a hole in synthetic materials such as silicon or graphene.

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12 sections
Contents
  • Types
  • Organic/Biological
  • Inorganic/Solid-state
  • Nanopore based sequencing
  • Monomer identification
  • Applications to nanopore sequencing
  • Nanopore as biosensors
  • Alternate applications
  • See also
  • References
  • Further reading
  • External links

thumb|Schematic of Nanopore Internal Machinery and corresponding current blockade during sequencing A nanopore is a pore of nanometer size. It may, for example, be created by a pore-forming protein or as a hole in synthetic materials such as silicon or graphene.

When a nanopore is present in an electrically insulating membrane, it can be used as a single-molecule detector. It can be a biological protein channel in a high electrical resistance lipid bilayer, a pore in a solid-state membrane or a hybrid of these – a protein channel set in a synthetic membrane. The detection principle is based on monitoring the ionic current passing through the nanopore as a voltage is applied across the membrane. When the nanopore is of molecular dimensions, passage of molecules (e.g., DNA) cause interruptions of the "open" current level, leading to a "translocation event" signal. The passage of RNA or single-stranded DNA molecules through the membrane-embedded alpha-hemolysin channel (1.5 nm diameter), for example, causes a ~90% blockage of the current (measured at 1 M KCl solution).

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