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In vivo plasmid DNA electrotransfer

Current Opinion in Biotechnology, 2002
In vivo electrotransfer is a physical technique for gene delivery in various mammalian tissues, which involves the injection of plasmid DNA into a target tissue and administration of an electric field. Its ease of performance, as well as recent understanding of its mechanism and applications to different mammalian tissues such as skeletal muscle, liver,
Pascal, Bigey   +2 more
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Quick Transformation with Plasmid DNA

Cold Spring Harbor Protocols, 2022
Genomic engineering of Escherichia coli and Salmonella often requires introducing plasmids into strains obtained during the intermediate stages of the process. Such strains are typically transformed only once, making the preparation of large batches of competent cells for storage purposes unnecessary.
Nara Figueroa-Bossi   +2 more
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Minipreps of Plasmid DNA

Current Protocols in Molecular Biology, 1991
AbstractAlthough there are a large number of protocols for the isolation of small quantities of plasmid DNA from bacterial cells (minipreps), this unit presents four procedures based on their speed and success: the alkaline lysis prep, a modification of the alkaline lysis prep that is performed in 1.5‐ml tubes or 96‐well microtiter dishes, the boiling ...
J, Engebrecht, R, Brent, M A, Kaderbhai
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Plasmid DNA Manufacturing Technology

Recent Patents on Biotechnology, 2007
Today, plasmid DNA is becoming increasingly important as the next generation of biotechnology products (gene medicines and DNA vaccines) make their way into clinical trials, and eventually into the pharmaceutical marketplace. This review summarizes recent patents and patent applications relating to plasmid manufacturing, in the context of a ...
Aaron E, Carnes, James A, Williams
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YEAST DNA PLASMIDS

Annual Review of Microbiology, 1983
The study of yeast DNA plasmids has been initiated with the discovery of the 2-micron DNA in Saccharomyces cerevisiae. This multiple copy plasmid, organized into chromatin structure in vivo, probably exists in the nucleus and provides a good system to obtain information on eukaryotic DNA replication.
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Plasmid DNA vaccination

Microbes and Infection, 2005
Plasmid DNA vaccination against tuberculosis is a very powerful and easy method for the induction of strong humoral responses, CD4+ mediated secretion of Th1 cytokines and CD8+ mediated CTL activity in mice. Tuberculosis DNA vaccines have not been assessed so far in humans, and clinical trials with DNA in general have been somewhat disappointing ...
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Mutagenicity of furfural in plasmid DNA

Cancer Letters, 1995
Furfural is recognized as a dietary mutagen and is present in various foods and beverages. We have examined the mutagenic effect of furfural induced lesions in plasmid pBluescript SK(+/-). There was a progressive decrease in the transformation capacity of the plasmid as a function of furfural concentration with a concomitant increase in the number of ...
Q A, Khan, F A, Shamsi, S M, Hadi
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Microwave Effects on Plasmid DNA

Radiation Research, 1987
The exposure of purified plasmid DNA to microwave radiation at nonthermal levels in the frequency range from 2.00 to 8.75 GHz produces single- and double-strand breaks that are detected by agarose gel electrophoresis. Microwave-induced damage to DNA depends on the presence of small amounts of copper.
J L, Sagripanti   +2 more
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Insulin Delivery with Plasmid DNA

Human Gene Therapy, 1999
Success in controlling hyperglycemia in type I diabetics will require a restoration of basal insulin. To this end, three plasmid DNAs (pDNA) encoding preproinsulin were compared for constitutive expression and processing to insulin in nonendocrine cells in vitro.
A M, Abai, P M, Hobart, K M, Barnhart
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Adjuvants for Plasmid DNA Vaccines

2003
In the late 1980s, Jon Wolff of the University of Wisconsin and Phil Felgner here at Vical were screening cationic lipids for their ability to encapsulate and deliver purified plasmid DNA into mouse tissues. They discovered that direct injection of lipid-DNA complexes into muscle resulted in measurable protein expression.
J, Norman   +3 more
openaire   +2 more sources

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