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Electrochemotherapy, Electrogenetherapy, and Transdermal Drug Delivery: Electrically Mediated Delivery of Molecules to Cells 2000 Edition
Contributor(s): Jaroszeski, Mark J. (Editor)
ISBN: 0896036065     ISBN-13: 9780896036062
Publisher: Humana
OUR PRICE:   $161.49  
Product Type: Hardcover - Other Formats
Published: February 2000
Qty:
Annotation: Leading experts comprehensively review all aspects of the delivery of therapeutic molecules to cells using electrical impulses-i.e., the extraordinarily promising new areas of electrogenetherapy, electrochemotherapy, and transdermal drug delivery. Their survey ranges from outlines of the basic physical principles that govern cell permeabilization by pulsed electric fields, to descriptions of the current state-of-the-art in instrumentation and electrodes, to summaries of preclinical and clinical trial results. The authors focus on drug, gene, and transdermal delivery techniques, providing detailed examples of drug delivery using electric fields from a variety of pulse generators and electrodes. Comprehensive and authoritative, Electrochemotherapy, Electrogenetherapy, and Transdermal Drug Delivery: Electrically Mediated Delivery of Molecules to Cells provides entr? to an immensely practical set of in vivo electroporation techniques, including electrogenetherapy, electrochemotherapy, and transdermal drug delivery-techniques holding great promise for all those working toward better therapies for cancer, metabolic diseases, and vaccination.
Additional Information
BISAC Categories:
- Medical | Chemotherapy
- Technology & Engineering | Electrical
- Medical | Pharmacology
Dewey: 615.6
LCCN: 99-31031
Series: Methods in Molecular Medicine
Physical Information: 1.13" H x 6.14" W x 9.21" (1.96 lbs) 497 pages
 
Descriptions, Reviews, Etc.
Publisher Description:
Pulsed electric fields have been applied to living systems in vitro for a host of delivery applications since the early 1980s. It has been established that the primary effect that electrical treatment has on cells is an induced increase in the permeability of membranes to exogenous molecules. This state of increased permeability was noted to be temporary and could be induced with little or no effect on cell viability. This physical phenomenon was termed electroporation. Numerous published studies have shown that electroporation can be applied to any cell type. These studies also exploited the phenomenon to deliver drugs, DNA, antibodies, proteins, and fluorescent molecules. The use of electricity to mediate delivery of these molecule types in vitro has proven to be an invaluable research tool for biological and biomedical scientists. Many of the in vitro applications for electrically mediated delivery have tremendous potential for the treatment of human disease. For example, the ef- cient delivery of drugs and plasmid DNA has strong implications for improving standard therapies, as well as gene therapies. This potential was realized about 12 years ago when electric pulses were used to deliver drugs to tumor cells in vivo. Since then, the utility of in vivo electroporation for the delivery of m- ecules has been demonstrated through new applications that have been developed with increasing frequency each year. Electrochemotherapy, Electrogenetherapy, and Transdermal Drug Delivery: Electrically Mediated Delivery of Molecules to Cells provides review and protocol chapters that completely cover this relatively new scientific discipline.