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Comprehensive evaluation of on-target and off-target effects of sgRNA will allow more precise genome editing and gene therapies using the CRISPR system.
Recently, the technology has seen various new developments, including the successful use in RNA-targeting, the development of more precise genome editing reagents, and breakthroughs in applications to gene therapy and regenerative medicine.
What's more, it's been introduced at a time when knowledge about the genetics behind brain disorders is expanding rapidly and other new tools, including optogenetics and more precise genome editing (see "Neuroscience's New Toolbox"), are enabling neuroscientists to probe the brain directly.
Even though this new gene editing tool is a simple, cheaper, and more precise genome editing tool providing scientists with the realisation of the long-lasting dream of gene drives, some technical hurdles still remain in using the CRISPR gene editing tool in gene drives' design (Zentner and Wade 2017).
A more thorough accumulation of full-length cDNA information is necessary for more precise genome annotation of Pf.
As the field moved towards more precise genome editing, programmable nucleases, including zinc-finger nucleases (ZFNs) and transcription-activator-like effector nucleases (TALENs) [ 7], have been developed.
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The first company to go after human disease with a more precise genome-editing tool called base editing, Beam Therapeutics, launched today.
Recently, newer and more precise genome-editing techniques have become available and they are already being implemented in some crops.
With the advent of the Precision Medicine Initiative as a national agenda, IGNITE's mission and activities are timely and should provide important guidance to the research and clinical community to enable more precise genome-informed medical care.
We present an improved protocol for highly efficient and more precise reduced genome complexity sequencing that simultaneously allows discovery of novel SNPs and genotyping.
The discovery of a variety of Cas9 orthologs and engineered variants enables high-fidelity genome editing and a wider selection of genomic targets, and CRISPR-mediated deaminases enable more precise and predictable genome editing compared with CRISPR nuclease-based editing.
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