Abstract
Electroporation-based gene therapy has become a “hot field” for non-viral gene delivery. This review summarizes the progress made in intramuscular and intratumoral electrogenetransfer, which include new applications and modifications. The progress in dendritic cell (DC) and stem cell transfection by use of electroporation has also been discussed. Rapid progress during the past two years clearly demonstrates the great potential of this technology, but there are challenges faced by both in vitro and in vivo applications, which include how to enhance the transfection efficiency for intratumoral delivery, how to extend the duration of gene expression for intramuscular injection, and how to increase the survival rate for in vitro cell transfection. Resolving these issues will shed new light on this field.
Keywords: electroporation, electrogenetransfer, gene therapy, stem cell, dendritic cell
Current Gene Therapy
Title: Electroporation Gene Therapy: New Developments In Vivo and In Vitro
Volume: 4 Issue: 3
Author(s): Shulin Li
Affiliation:
Keywords: electroporation, electrogenetransfer, gene therapy, stem cell, dendritic cell
Abstract: Electroporation-based gene therapy has become a “hot field” for non-viral gene delivery. This review summarizes the progress made in intramuscular and intratumoral electrogenetransfer, which include new applications and modifications. The progress in dendritic cell (DC) and stem cell transfection by use of electroporation has also been discussed. Rapid progress during the past two years clearly demonstrates the great potential of this technology, but there are challenges faced by both in vitro and in vivo applications, which include how to enhance the transfection efficiency for intratumoral delivery, how to extend the duration of gene expression for intramuscular injection, and how to increase the survival rate for in vitro cell transfection. Resolving these issues will shed new light on this field.
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Cite this article as:
Li Shulin, Electroporation Gene Therapy: New Developments In Vivo and In Vitro, Current Gene Therapy 2004; 4 (3) . https://dx.doi.org/10.2174/1566523043346336
DOI https://dx.doi.org/10.2174/1566523043346336 |
Print ISSN 1566-5232 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-5631 |
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Programmed Cell Death (PCD) is recognized as a pivotal biological mechanism with far-reaching effects in the realm of cancer therapy. This complex process encompasses a variety of cell death modalities, including apoptosis, autophagic cell death, pyroptosis, and ferroptosis, each of which contributes to the intricate landscape of cancer development and ...read more
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