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CRISPR/Cas9—A Promising Therapeutic Tool to Cure Blindness: Current Scenario and Future Prospects
by
Ahmad, Irshad
in
Animals
/ Blindness - genetics
/ Cataracts
/ Clinical trials
/ CRISPR
/ CRISPR-Cas Systems - genetics
/ DNA repair
/ Eye diseases
/ Gene Editing
/ Gene therapy
/ Genetic Therapy
/ Genome editing
/ Genomes
/ Glaucoma
/ Hydrogels
/ Macular degeneration
/ Mammals
/ Marfan syndrome
/ Melanoma
/ Mice
/ Mutation
/ Nanoparticles
/ Retina
/ Review
/ Visual impairment
2022
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CRISPR/Cas9—A Promising Therapeutic Tool to Cure Blindness: Current Scenario and Future Prospects
by
Ahmad, Irshad
in
Animals
/ Blindness - genetics
/ Cataracts
/ Clinical trials
/ CRISPR
/ CRISPR-Cas Systems - genetics
/ DNA repair
/ Eye diseases
/ Gene Editing
/ Gene therapy
/ Genetic Therapy
/ Genome editing
/ Genomes
/ Glaucoma
/ Hydrogels
/ Macular degeneration
/ Mammals
/ Marfan syndrome
/ Melanoma
/ Mice
/ Mutation
/ Nanoparticles
/ Retina
/ Review
/ Visual impairment
2022
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Do you wish to request the book?
CRISPR/Cas9—A Promising Therapeutic Tool to Cure Blindness: Current Scenario and Future Prospects
by
Ahmad, Irshad
in
Animals
/ Blindness - genetics
/ Cataracts
/ Clinical trials
/ CRISPR
/ CRISPR-Cas Systems - genetics
/ DNA repair
/ Eye diseases
/ Gene Editing
/ Gene therapy
/ Genetic Therapy
/ Genome editing
/ Genomes
/ Glaucoma
/ Hydrogels
/ Macular degeneration
/ Mammals
/ Marfan syndrome
/ Melanoma
/ Mice
/ Mutation
/ Nanoparticles
/ Retina
/ Review
/ Visual impairment
2022
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CRISPR/Cas9—A Promising Therapeutic Tool to Cure Blindness: Current Scenario and Future Prospects
Journal Article
CRISPR/Cas9—A Promising Therapeutic Tool to Cure Blindness: Current Scenario and Future Prospects
2022
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Overview
CRISPR-based targeted genome editing is bringing revolutionary changes in the research arena of biological sciences. CRISPR/Cas9 has been explored as an efficient therapeutic tool for the treatment of genetic diseases. It has been widely used in ophthalmology research by using mouse models to correct pathogenic mutations in the eye stem cells. In recent studies, CRISPR/Cas9 has been used to correct a large number of mutations related to inherited retinal disorders. In vivo therapeutic advantages for retinal diseases have been successfully achieved in some rodents. Current advances in the CRISPR-based gene-editing domain, such as modified Cas variants and delivery approaches have optimized its application to treat blindness. In this review, recent progress and challenges of the CRISPR-Cas system have been discussed to cure blindness and its prospects.
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