Electroporation is a common method of transfection due to its relatively low risk and high transfection efficiency. The most common method of electroporation is bulk electroporation which is easily performed on large quantities of cells yet results in variable levels of viability and transfection efficiency across the population. Localized electroporation is an alternative that can be administered on a similar scale but results in much more consistent with higher quality transfection and higher cell viability. This paper discusses the creation and use of a simple and cost-effective device using porous membrane for performing localized electroporation
In recent years, several publications on microfluidic devices have focused on the process of electro...
In recent years, several publications on microfluidic devices have focused on the process of electro...
In this thesis, I present two microfluidic electroporation techniques for delivering genes into cell...
Crossing the plasma cellular membrane for loading of exogenous substances or accessing the intracell...
We developed a localized single-cell electroporation chip to deliver exogenous biomolecules with hig...
We developed a localized single-cell electroporation chip to deliver exogenous biomolecules with hig...
FDA approved patient-derived cellular therapies are a groundbreaking biomedical/clinical accomplishm...
Microscale engineering plays a significant role in developing tools for biological applications by m...
Electroporation is the technique of applying an electric field to a cell to achieve temporary membra...
This article provides a brief review of the eld of electroporation and introduces a new microdevice...
Electroporation is a high-efficiency and low-toxicity physical gene transfer method. Classical elect...
In recent years, several publications on microfluidic devices have focused on the process of electro...
In recent years, several publications on microfluidic devices have focused on the process of electro...
In recent years, several publications on microfluidic devices have focused on the process of electro...
In recent years, several publications on microfluidic devices have focused on the process of electro...
In recent years, several publications on microfluidic devices have focused on the process of electro...
In recent years, several publications on microfluidic devices have focused on the process of electro...
In this thesis, I present two microfluidic electroporation techniques for delivering genes into cell...
Crossing the plasma cellular membrane for loading of exogenous substances or accessing the intracell...
We developed a localized single-cell electroporation chip to deliver exogenous biomolecules with hig...
We developed a localized single-cell electroporation chip to deliver exogenous biomolecules with hig...
FDA approved patient-derived cellular therapies are a groundbreaking biomedical/clinical accomplishm...
Microscale engineering plays a significant role in developing tools for biological applications by m...
Electroporation is the technique of applying an electric field to a cell to achieve temporary membra...
This article provides a brief review of the eld of electroporation and introduces a new microdevice...
Electroporation is a high-efficiency and low-toxicity physical gene transfer method. Classical elect...
In recent years, several publications on microfluidic devices have focused on the process of electro...
In recent years, several publications on microfluidic devices have focused on the process of electro...
In recent years, several publications on microfluidic devices have focused on the process of electro...
In recent years, several publications on microfluidic devices have focused on the process of electro...
In recent years, several publications on microfluidic devices have focused on the process of electro...
In recent years, several publications on microfluidic devices have focused on the process of electro...
In this thesis, I present two microfluidic electroporation techniques for delivering genes into cell...