Single molecule delivery into living cells.

Nat Commun

School of Electronic and Electrical Engineering and Pollard Institute, University of Leeds, Leeds, LS2 9JT, UK.

Published: May 2024

AI Article Synopsis

  • A new platform using nanopipettes allows precise delivery of macromolecules like DNA and proteins into cultured cells at the level of single molecules.
  • The nanopipette serves dual purposes: it operates as a scanning ion conductance microscope for positioning and as an injection tool for inserting molecules into cells.
  • This method not only enables controlled delivery but also results in observable changes in cell behavior based on the type of macromolecules introduced, with the crowded cellular environment enhancing the detection of these molecules.

Article Abstract

Controlled manipulation of cultured cells by delivery of exogenous macromolecules is a cornerstone of experimental biology. Here we describe a platform that uses nanopipettes to deliver defined numbers of macromolecules into cultured cell lines and primary cells at single molecule resolution. In the nanoinjection platform, the nanopipette is used as both a scanning ion conductance microscope (SICM) probe and an injection probe. The SICM is used to position the nanopipette above the cell surface before the nanopipette is inserted into the cell into a defined location and to a predefined depth. We demonstrate that the nanoinjection platform enables the quantitative delivery of DNA, globular proteins, and protein fibrils into cells with single molecule resolution and that delivery results in a phenotypic change in the cell that depends on the identity of the molecules introduced. Using experiments and computational modeling, we also show that macromolecular crowding in the cell increases the signal-to-noise ratio for the detection of translocation events, thus the cell itself enhances the detection of the molecules delivered.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11116494PMC
http://dx.doi.org/10.1038/s41467-024-48608-3DOI Listing

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