Tissue-Specific Delivery of CRISPR Therapeutics: Strategies and Mechanisms of Non-Viral Vectors

The Clustered Regularly Interspaced Short Palindromic Repeats (CRISPR) genome editing system has been the focus of intense research in the last decade due to its superior ability to desirably target and edit DNA sequences. The applicability of the CRISPR-Cas system to in vivo genome editing has acqu...

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Main Authors: Karim Shalaby, Mustapha Aouida, Omar El-Agnaf
Format: Article
Language:English
Published: MDPI AG 2020-10-01
Series:International Journal of Molecular Sciences
Subjects:
Online Access:https://www.mdpi.com/1422-0067/21/19/7353
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spelling doaj-57bf0e2fe7934993b20ca9a589730e612020-11-25T03:17:12ZengMDPI AGInternational Journal of Molecular Sciences1661-65961422-00672020-10-01217353735310.3390/ijms21197353Tissue-Specific Delivery of CRISPR Therapeutics: Strategies and Mechanisms of Non-Viral VectorsKarim Shalaby0Mustapha Aouida1Omar El-Agnaf2Division of Biological and Biomedical Sciences (BBS), College of Health & Life Sciences (CHLS), Hamad Bin Khalifa University (HBKU), Doha 34110, QatarDivision of Biological and Biomedical Sciences (BBS), College of Health & Life Sciences (CHLS), Hamad Bin Khalifa University (HBKU), Doha 34110, QatarDivision of Biological and Biomedical Sciences (BBS), College of Health & Life Sciences (CHLS), Hamad Bin Khalifa University (HBKU), Doha 34110, QatarThe Clustered Regularly Interspaced Short Palindromic Repeats (CRISPR) genome editing system has been the focus of intense research in the last decade due to its superior ability to desirably target and edit DNA sequences. The applicability of the CRISPR-Cas system to in vivo genome editing has acquired substantial credit for a future in vivo gene-based therapeutic. Challenges such as targeting the wrong tissue, undesirable genetic mutations, or immunogenic responses, need to be tackled before CRISPR-Cas systems can be translated for clinical use. Hence, there is an evident gap in the field for a strategy to enhance the specificity of delivery of CRISPR-Cas gene editing systems for in vivo applications. Current approaches using viral vectors do not address these main challenges and, therefore, strategies to develop non-viral delivery systems are being explored. Peptide-based systems represent an attractive approach to developing gene-based therapeutics due to their specificity of targeting, scale-up potential, lack of an immunogenic response and resistance to proteolysis. In this review, we discuss the most recent efforts towards novel non-viral delivery systems, focusing on strategies and mechanisms of peptide-based delivery systems, that can specifically deliver CRISPR components to different cell types for therapeutic and research purposes.https://www.mdpi.com/1422-0067/21/19/7353CRISPR-Casgene editinggene therapynon-viral vectorscell-penetrating peptides
collection DOAJ
language English
format Article
sources DOAJ
author Karim Shalaby
Mustapha Aouida
Omar El-Agnaf
spellingShingle Karim Shalaby
Mustapha Aouida
Omar El-Agnaf
Tissue-Specific Delivery of CRISPR Therapeutics: Strategies and Mechanisms of Non-Viral Vectors
International Journal of Molecular Sciences
CRISPR-Cas
gene editing
gene therapy
non-viral vectors
cell-penetrating peptides
author_facet Karim Shalaby
Mustapha Aouida
Omar El-Agnaf
author_sort Karim Shalaby
title Tissue-Specific Delivery of CRISPR Therapeutics: Strategies and Mechanisms of Non-Viral Vectors
title_short Tissue-Specific Delivery of CRISPR Therapeutics: Strategies and Mechanisms of Non-Viral Vectors
title_full Tissue-Specific Delivery of CRISPR Therapeutics: Strategies and Mechanisms of Non-Viral Vectors
title_fullStr Tissue-Specific Delivery of CRISPR Therapeutics: Strategies and Mechanisms of Non-Viral Vectors
title_full_unstemmed Tissue-Specific Delivery of CRISPR Therapeutics: Strategies and Mechanisms of Non-Viral Vectors
title_sort tissue-specific delivery of crispr therapeutics: strategies and mechanisms of non-viral vectors
publisher MDPI AG
series International Journal of Molecular Sciences
issn 1661-6596
1422-0067
publishDate 2020-10-01
description The Clustered Regularly Interspaced Short Palindromic Repeats (CRISPR) genome editing system has been the focus of intense research in the last decade due to its superior ability to desirably target and edit DNA sequences. The applicability of the CRISPR-Cas system to in vivo genome editing has acquired substantial credit for a future in vivo gene-based therapeutic. Challenges such as targeting the wrong tissue, undesirable genetic mutations, or immunogenic responses, need to be tackled before CRISPR-Cas systems can be translated for clinical use. Hence, there is an evident gap in the field for a strategy to enhance the specificity of delivery of CRISPR-Cas gene editing systems for in vivo applications. Current approaches using viral vectors do not address these main challenges and, therefore, strategies to develop non-viral delivery systems are being explored. Peptide-based systems represent an attractive approach to developing gene-based therapeutics due to their specificity of targeting, scale-up potential, lack of an immunogenic response and resistance to proteolysis. In this review, we discuss the most recent efforts towards novel non-viral delivery systems, focusing on strategies and mechanisms of peptide-based delivery systems, that can specifically deliver CRISPR components to different cell types for therapeutic and research purposes.
topic CRISPR-Cas
gene editing
gene therapy
non-viral vectors
cell-penetrating peptides
url https://www.mdpi.com/1422-0067/21/19/7353
work_keys_str_mv AT karimshalaby tissuespecificdeliveryofcrisprtherapeuticsstrategiesandmechanismsofnonviralvectors
AT mustaphaaouida tissuespecificdeliveryofcrisprtherapeuticsstrategiesandmechanismsofnonviralvectors
AT omarelagnaf tissuespecificdeliveryofcrisprtherapeuticsstrategiesandmechanismsofnonviralvectors
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