Spatially and temporally controlled gene transfer by electroporation into adherent cells on plasmid DNA-loaded electrodes.
نویسندگان
چکیده
Functional characterization of human genes is one of the most challenging tasks in current genomics. Owing to a large number of newly discovered genes, high-throughput methodologies are greatly needed to express in parallel each gene in living cells. To develop a method that allows efficient transfection of plasmids into adherent cells in spatial- and temporal-specific manners, we studied electric pulse-triggered gene transfer using a plasmid-loaded electrode. A plasmid was loaded on a gold electrode surface having an adsorbed layer of poly(ethyleneimine), and cells were then plated directly onto this modified surface. The plasmid was detached from the electrode by applying a short electric pulse and introduced into the cells cultured on the electrode, resulting in efficient gene expression, even in primary cultured cells. The location of transfected cells could be restricted within a small area on a micropatterned electrode, showing the versatility of the method for spatially controlled transfection. Plasmid transfection could also be performed in a temporally controlled manner without a marked loss of the efficiency when an electric pulse was applied within 3 days after cell plating. The method described here will provide an efficient means to transfer multiple genes, in parallel, into cultured mammalian cells for high-throughput reverse genetics research.
منابع مشابه
P-151: Optimal Condition of IntroducingGreen Fluorescent Protein (GFP) Geneinto The Rainbow Trout (Oncorhynchusmykiss) Sperm by Electroporation Method
Background: Many techniques have been developed to increase DNA molecules into sperms called sperm mediated gene transfer (SMGT) and one of them is electroporation. Sperm mediated gene transfer is an ideal method for mass gene transfer in organisms with external fertilization. Gene transfer is applied to rainbow trout sperm and the effects of electroporation on sperms and rate of gene uptake by...
متن کاملGene transfer into mouse prepancreatic endoderm by whole embryo electroporation.
CONTEXT Understanding gene function in the developing pancreas is a major issue for pancreatic cell therapy. The in vivo analysis of gene function has essentially been performed by modulating gene expression in transgenesis. A faster and easier method is electroporation of mouse embryos. This technique, coupled with whole embryo culture, enables one to deliver genes and analyze their effects in...
متن کاملCloning of EprA1 gene of Aeromonas hydrophila in Lactococcus lactis
Bacterial-based systems as live vectors for the delivery of heterologous antigens offer a number of advantages as vaccination strategies. Developments in genetic engineering have given Gram-positive lacticacid bacteria (LAB) the advantage of being used as a host expression system for antigen delivery to inducethe immune response. A fragment containing the full length of the “eprA1” ...
متن کاملMouse in Utero Electroporation: Controlled Spatiotemporal Gene Transfection
In order to understand the function of genes expressed in specific region of the developing brain, including signaling molecules and axon guidance molecules, local gene transfer or knock- out is required. Gene targeting knock-in or knock-out into local regions is possible to perform with combination with a specific CRE line, which is laborious, costly, and time consuming. Therefore, a simple tr...
متن کاملPre - loaded cells Peristaltic Pump Loading Chamber Loaded cells
Electroporation is widely used to transfect and load cells with various molecules. Traditional electroporation using a static mode is typically restricted to volumes less than 1 mL, which limits its use in clinical and industrial bioprocessing applications. Here we report efficient, large volume transfection results by using a scalable-volume electroporation system. Suspended (Jurkat) and adher...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Nucleic acids research
دوره 32 22 شماره
صفحات -
تاریخ انتشار 2004