We present a microfluidic-based injection system designed to achieve intracellular delivery of macromolecules by directing a picoliter jet of a solution toward the individual cells. After discussing the concept, we present design specification and criteria, elucidate performance and discuss results. The method has the potential to be quantitative and of high throughput, overcoming the limitations of current intracellular delivery protocols.Deshpande Center for Technological InnovationNational Institutes of Health (U.S.) (Grant RC1 EB011187-02
La transfection de cellules vise à injecter du matériel génétique dans des cellules biologiques viva...
In recent years, cellular and gene therapies have been transforming medicine. With the 2018 Nobel Pr...
9 pagesInternational audienceWe report a microfluidic device able to control the ejection of fluid t...
Intracellular delivery of macromolecules is crucial for the success of many research and clinical ap...
Intracellular delivery of macromolecules is a challenge in research and therapeutic applications. Ex...
Physical techniques for intracellular delivery of exogeneous materials offer an attractive strategy ...
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Cancer immunotherapies using adoptive cell transfer (ACT) train a patient’s immune system to fight a...
Intracellular delivery is considered an indispensable process for various studies, ranging from medi...
Efficient intracellular delivery of target macromolecules remains a major obstacle in cell engineeri...
Microfluidic intracellular delivery approaches based on plasma membrane poration have shown promise ...
Microinjection to single cells has been widely used in the studies of transduction-challenged cells,...
The introduction of nanomaterials into cells is an indispensable process for studies ranging from ba...
A general limitation in gene delivery is the cellular uptake in lager animals including humans. Seve...
Intracellular delivery of biomolecules, such as proteins and siRNAs, into primary immune cells, espe...
La transfection de cellules vise à injecter du matériel génétique dans des cellules biologiques viva...
In recent years, cellular and gene therapies have been transforming medicine. With the 2018 Nobel Pr...
9 pagesInternational audienceWe report a microfluidic device able to control the ejection of fluid t...
Intracellular delivery of macromolecules is crucial for the success of many research and clinical ap...
Intracellular delivery of macromolecules is a challenge in research and therapeutic applications. Ex...
Physical techniques for intracellular delivery of exogeneous materials offer an attractive strategy ...
Abstract Innate cell function can be artificially engineered and reprogrammed by introducing biomole...
Cancer immunotherapies using adoptive cell transfer (ACT) train a patient’s immune system to fight a...
Intracellular delivery is considered an indispensable process for various studies, ranging from medi...
Efficient intracellular delivery of target macromolecules remains a major obstacle in cell engineeri...
Microfluidic intracellular delivery approaches based on plasma membrane poration have shown promise ...
Microinjection to single cells has been widely used in the studies of transduction-challenged cells,...
The introduction of nanomaterials into cells is an indispensable process for studies ranging from ba...
A general limitation in gene delivery is the cellular uptake in lager animals including humans. Seve...
Intracellular delivery of biomolecules, such as proteins and siRNAs, into primary immune cells, espe...
La transfection de cellules vise à injecter du matériel génétique dans des cellules biologiques viva...
In recent years, cellular and gene therapies have been transforming medicine. With the 2018 Nobel Pr...
9 pagesInternational audienceWe report a microfluidic device able to control the ejection of fluid t...