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Published on: November 2, 2020
In vivo evaluation of guide-free Cas9-induced safety risks in a pig model
Weikai Ge1,2,3,4, Shixue Gou1,2,4, Xiaozhu Zhao1,5
1China-New Zealand Joint Laboratory on Biomedicine and Health, CAS Key Laboratory of Regenerative Biology, Guangdong Provincial Key Laboratory of Stem Cell and Regenerative Medicine, Joint School of Life Sciences, Guangzhou Institutes of Biomedicine and Health, Chinese Academy of Sciences, Guangzhou Medical University, Guangzhou, 510530, China.
Abstract:
The CRISPR/Cas9 system has shown great potential for treating human genetic diseases through gene therapy. However, there are concerns about the safety of this system, specifically related to the use of guide-free Cas9. Previous studies have shown that guide-free Cas9 can induce genomic instability in vitro. However, the in vivo safety risks associated with guide-free Cas9 have not been evaluated, which is necessary for the development of gene therapy in clinical settings. In this study, we used doxycycline-inducible Cas9-expressing pigs to evaluate the safety risks of guide-free Cas9 in vivo. Our findings demonstrated that expression of guide-free Cas9 could induce genomic damages and transcriptome changes in vivo. The severity of the genomic damages and transcriptome changes were correlate with the expression levels of Cas9 protein. Moreover, prolonged expression of Cas9 in pigs led to abnormal phenotypes, including a significant decrease in body weight, which may be attributable to genomic damage-induced nutritional absorption and metabolic dysfunction. Furthermore, we observed an increase in whole-genome and tumor driver gene mutations in pigs with long-term Cas9 expression, raising the risk of tumor occurrence. Our in vivo evaluation of guide-free Cas9 in pigs highlights the necessity of considering and monitoring the detrimental effects of Cas9 alone as genome editing via the CRISPR/Cas9 system is implemented in clinical gene therapy. This research emphasizes the importance of further study and implementation of safety measures to ensure the successful and safe application of the CRISPR/Cas9 system in clinical practice.
Insights
Guide-free CRISPR/Cas9 (Clustered Regularly Interspaced Short Palindromic Repeats/Cas9) can cause in vivo genomic damage and transcriptome alterations. Long-term Cas9 expression in pigs leads to adverse phenotypes and increased mutation rates, highlighting safety concerns for gene therapy.
Area of Science:
- Genetics
- Molecular Biology
- Gene Therapy
Background:
- CRISPR/Cas9 gene therapy holds promise for genetic diseases.
- Concerns exist regarding the safety of guide-free Cas9, particularly its in vivo effects.
- Previous in vitro studies indicated guide-free Cas9 can cause genomic instability.
Purpose of the Study:
- To evaluate the in vivo safety risks of guide-free Cas9.
- To assess genomic damage and transcriptome changes induced by guide-free Cas9 in a living organism.
- To determine the long-term consequences of Cas9 expression in vivo.
Main Methods:
- Utilized doxycycline-inducible Cas9-expressing pigs for in vivo evaluation.
- Monitored genomic damages and transcriptome alterations.
- Correlated Cas9 expression levels with observed effects.
- Assessed phenotypic changes and mutation rates over time.
Main Results:
- Guide-free Cas9 expression induced in vivo genomic damage and transcriptome changes.
- Damage severity correlated with Cas9 protein expression levels.
- Prolonged Cas9 expression resulted in decreased body weight and abnormal phenotypes.
- Increased whole-genome and tumor driver gene mutations were observed, suggesting elevated tumor risk.
Conclusions:
- In vivo evaluation of guide-free Cas9 in pigs reveals significant safety risks.
- Detrimental effects of Cas9 alone necessitate careful consideration and monitoring in clinical gene therapy.
- Further research and safety measures are crucial for the safe clinical application of CRISPR/Cas9 technology.
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