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Gene therapy on the move
by
Kaufmann, Kerstin B.
, Schambach, Axel
, Galy, Anne
, Grez, Manuel
, Büning, Hildegard
in
Adenoviruses
/ Bone marrow
/ Cancer therapies
/ Clinical trials
/ Clinical Trials as Topic
/ Disease
/ FDA approval
/ Gene expression
/ Gene targeting
/ Gene therapy
/ Gene Transfer Techniques - trends
/ Genetic Therapy - methods
/ Genetic Therapy - trends
/ Genome editing
/ Good Manufacturing Practice
/ Hereditary diseases
/ Humans
/ Immune system
/ iPS
/ monogenic disorders
/ Patients
/ Review
/ Reviews
/ Side effects
/ stem cell therapy
/ Stem cells
/ Transplants & implants
/ Vectors (Biology)
/ viral vectors
2013
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Gene therapy on the move
by
Kaufmann, Kerstin B.
, Schambach, Axel
, Galy, Anne
, Grez, Manuel
, Büning, Hildegard
in
Adenoviruses
/ Bone marrow
/ Cancer therapies
/ Clinical trials
/ Clinical Trials as Topic
/ Disease
/ FDA approval
/ Gene expression
/ Gene targeting
/ Gene therapy
/ Gene Transfer Techniques - trends
/ Genetic Therapy - methods
/ Genetic Therapy - trends
/ Genome editing
/ Good Manufacturing Practice
/ Hereditary diseases
/ Humans
/ Immune system
/ iPS
/ monogenic disorders
/ Patients
/ Review
/ Reviews
/ Side effects
/ stem cell therapy
/ Stem cells
/ Transplants & implants
/ Vectors (Biology)
/ viral vectors
2013
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Do you wish to request the book?
Gene therapy on the move
by
Kaufmann, Kerstin B.
, Schambach, Axel
, Galy, Anne
, Grez, Manuel
, Büning, Hildegard
in
Adenoviruses
/ Bone marrow
/ Cancer therapies
/ Clinical trials
/ Clinical Trials as Topic
/ Disease
/ FDA approval
/ Gene expression
/ Gene targeting
/ Gene therapy
/ Gene Transfer Techniques - trends
/ Genetic Therapy - methods
/ Genetic Therapy - trends
/ Genome editing
/ Good Manufacturing Practice
/ Hereditary diseases
/ Humans
/ Immune system
/ iPS
/ monogenic disorders
/ Patients
/ Review
/ Reviews
/ Side effects
/ stem cell therapy
/ Stem cells
/ Transplants & implants
/ Vectors (Biology)
/ viral vectors
2013
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Journal Article
Gene therapy on the move
2013
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Overview
The first gene therapy clinical trials were initiated more than two decades ago. In the early days, gene therapy shared the fate of many experimental medicine approaches and was impeded by the occurrence of severe side effects in a few treated patients. The understanding of the molecular and cellular mechanisms leading to treatment‐ and/or vector‐associated setbacks has resulted in the development of highly sophisticated gene transfer tools with improved safety and therapeutic efficacy. Employing these advanced tools, a series of Phase I/II trials were started in the past few years with excellent clinical results and no side effects reported so far. Moreover, highly efficient gene targeting strategies and site‐directed gene editing technologies have been developed and applied clinically. With more than 1900 clinical trials to date, gene therapy has moved from a vision to clinical reality. This review focuses on the application of gene therapy for the correction of inherited diseases, the limitations and drawbacks encountered in some of the early clinical trials and the revival of gene therapy as a powerful treatment option for the correction of monogenic disorders.
Graphical Abstract
A timely review on the application of gene therapy for the correction of inherited diseases, including a description of the drawbacks from the early clinical trials, how the inherent risks are being successfully addressed and future perspectives.
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