Please use this identifier to cite or link to this item: https://repository.monashhealth.org/monashhealthjspui/handle/1/57692
Title: Genome engineering in ophthalmology: Application of CRISPR/Cas to the treatment of eye disease.
Authors: Hung S.S.C.;McCaughey T.;Swann O.;Pebay A.;Hewitt A.W.
Monash Health Department(s): Ophthalmology
Institution: (Hung, McCaughey, Pebay, Hewitt) Centre for Eye Research Australia, University of Melbourne, Royal Victorian Eye and Ear Hospital, Melbourne, Australia
(McCaughey) Department of Surgery, Monash University, VIC, Australia
(Swann, Hewitt) Menzies Institute for Medical Research, School of Medicine, University of Tasmania, Australia
Issue Date: 1-Jul-2016
Copyright year: 2016
Publisher: Elsevier Ltd
Place of publication: United Kingdom
Publication information: Progress in Retinal and Eye Research. 53(pp 1-20), 2016. Date of Publication: 01 Jul 2016.
Journal: Progress in Retinal and Eye Research
Abstract: The Clustered Regularly Interspaced Short Palindromic Repeat (CRISPR) and CRISPR-associated protein (Cas) system has enabled an accurate and efficient means to edit the human genome. Rapid advances in this technology could results in imminent clinical application, and with favourable anatomical and immunological profiles, ophthalmic disease will be at the forefront of such work. There have been a number of breakthroughs improving the specificity and efficacy of CRISPR/Cas-mediated genome editing. Similarly, better methods to identify off-target cleavage sites have also been developed. With the impending clinical utility of CRISPR/Cas technology, complex ethical issues related to the regulation and management of the precise applications of human gene editing must be considered. This review discusses the current progress and recent breakthroughs in CRISPR/Cas-based gene engineering, and outlines some of the technical issues that must be addressed before gene correction, be it in vivo or in vitro, is integrated into ophthalmic care. We outline a clinical pipeline for CRISPR-based treatments of inherited eye diseases and provide an overview of the important ethical implications of gene editing and how these may influence the future of this technology.Copyright © 2016 Elsevier Ltd.
DOI: http://monash.idm.oclc.org/login?url=https://dx.doi.org/10.1016/j.preteyeres.2016.05.001
PubMed URL: 27181583
URI: https://repository.monashhealth.org/monashhealthjspui/handle/1/57692
Type: Review
Subjects: CRISPR Cas system
eye disease
gene editing
gene mutation
genetic engineering
genetic procedures
human embryo
human genome
medical ethics
ophthalmology
guide RNA
nuclease
nucleotide
RNA
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