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0
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Highly efficient and scarless genome editing via essential-gene-coupled homology-directed repair.
(genome.cshlp.org)
|
Yeo JH
…
Lee J
Genome Research
2026-06-01
|
#crispr
#genome editing
#homology-directed repair
#cell engineering
|
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0
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Selection of human hematopoietic stem cells bearing the intended functional edit by transient AND-gate reporters.
(nature.com)
|
Canarutto D
…
Naldini L
Nature Biotechnology
2026-06-01
|
#gene therapy
#selection
#genome editing
#hematopoietic stem cells
#homology-directed repair
|
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0
|
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Precise, predictable genome integrations by deep-learning-assisted design of microhomology-based templates.
(nature.com)
|
Naert T
…
Lienkamp SS
Nature Biotechnology
2026-06-01
|
#crispr
#deep learning
#dna repair
#genome editing
#transgene
|
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0
|
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One-step generation of T-cell receptor knock-in mice in the TCRbeta locus.
(link.springer.com)
|
Bilanovic J
…
Jacobsen JT
The EMBO Journal
2026-06-01
|
#immunity
#immunotherapy
#crispr
#genome editing
|
|
0
|
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Quadruple pegRNA enables programmable and efficient large genomic insertion.
(nature.com)
|
Shi YJ
…
Zhang Y
Nature
2026-06-01
|
#crispr
#genome editing
#genetic engineering
#base-editing
|
|
0
|
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Genetic technologies to enhance crop nutritional value under climate change.
(nature.com)
|
Van Der Straeten D
…
Fernie AR
Nature
2026-06-01
|
#crispr
#biofortification
#genome editing
#nutrition
#agriculture
|