Intracellular delivery of mRNA, DNA, and other large macromolecules into cells plays an essential role in an array of biological research and clinical therapies. However, currentmethods yield a wide variation in the amount of material delivered, as well as limitations on the cell types and cargoes possible. Here, we demonstrate quantitatively controlled delivery into a range of primary cells and cell lines with a tight dosage distribution using a nanostrawelectroporation system (NES). In NES, cells are cultured onto track-etched membranes with protruding nanostraws that connect to the fluidic environment beneath the membrane. The tight cell-nanostraw interface focuses applied electric fields to the cell membrane, enabling low-voltage and no...
Abstract Innate cell function can be artificially engineered and reprogrammed by introducing biomole...
Nuclear transfection of DNA into mammalian cells is challenging yet critical for many biological and...
The introduction of nanomaterials into cells is an indispensable process for studies ranging from ba...
Intracellular delivery of mRNA, DNA, and other large macromolecules into cells plays an essential ro...
Nondestructive introduction of genes, proteins, and small molecules into mammalian cells with high e...
We present a simple nanopore-electroporation (NanoEP) platform for delivery of nucleic acids, functi...
Nanomaterials are promising candidates to improve the delivery efficiency and control of active agen...
The ability to deliver foreign cargos into single living cells is of great interest in cell biology ...
Today single cell research is a great interest to analyze cell to cell or cell to environment behavi...
Today single cell research is a great interest to analyze cell to cell or cell to environment behavi...
The manipulation of cultured mammalian cells by the delivery of exogenous macromolecules is one of t...
Intracellular delivery is a critical step in biological discoveries and has been widely utilized in ...
Physical techniques for intracellular delivery of exogeneous materials offer an attractive strategy ...
© 2017 Macmillan Publishers Limited, part of Springer Nature. All rights reserved. Nuclear transfect...
The ability to deliver foreign molecules into a single living cell with high transfection efficiency...
Abstract Innate cell function can be artificially engineered and reprogrammed by introducing biomole...
Nuclear transfection of DNA into mammalian cells is challenging yet critical for many biological and...
The introduction of nanomaterials into cells is an indispensable process for studies ranging from ba...
Intracellular delivery of mRNA, DNA, and other large macromolecules into cells plays an essential ro...
Nondestructive introduction of genes, proteins, and small molecules into mammalian cells with high e...
We present a simple nanopore-electroporation (NanoEP) platform for delivery of nucleic acids, functi...
Nanomaterials are promising candidates to improve the delivery efficiency and control of active agen...
The ability to deliver foreign cargos into single living cells is of great interest in cell biology ...
Today single cell research is a great interest to analyze cell to cell or cell to environment behavi...
Today single cell research is a great interest to analyze cell to cell or cell to environment behavi...
The manipulation of cultured mammalian cells by the delivery of exogenous macromolecules is one of t...
Intracellular delivery is a critical step in biological discoveries and has been widely utilized in ...
Physical techniques for intracellular delivery of exogeneous materials offer an attractive strategy ...
© 2017 Macmillan Publishers Limited, part of Springer Nature. All rights reserved. Nuclear transfect...
The ability to deliver foreign molecules into a single living cell with high transfection efficiency...
Abstract Innate cell function can be artificially engineered and reprogrammed by introducing biomole...
Nuclear transfection of DNA into mammalian cells is challenging yet critical for many biological and...
The introduction of nanomaterials into cells is an indispensable process for studies ranging from ba...