This site is new - feedback and suggestions welcome via GitHub issues.

#genome editing — Monday, June 01, 2026 (6 items)

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