The biopharma industry is reacting positively to plans for a new FDA designation program, with some suggesting it could be exactly what's needed to spur development of gene-editing therapeutics https://t.co/3L9xcWdIZ9
Attending #ISCT? Don't miss the chance to learn how our Pin-point base editing platform can accelerate your #celltherapy development! Visit my poster to discover how our flexible, modular system can help you overcome your specific challenges. See you there! #CGT
Today we report in @CellCellPress a suite of engineered and PACE-evolved prime editor variants PE6a-g. These new prime editors improve the activity, in vivo deliverability, and in vivo editing efficiency of prime editing.
https://t.co/xdF6j0zn8Y
PDF:https://t.co/iRegR74CKg
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Did you just finish your MS (TFM) and would like to do a PhD? Do you love immunology and antibodies? Would you like to work in a fantastic environment? Come join us! We are offering an FPI 4-year predoctoral contract! Please RT. @CNIC_CARDIO
@belverlab Yo hacía lo fácil, así que a petarlo Belver!, increíble que ahora dediques tus esfuerzos a investigar sobre Lupus. Que gran investigadora ha ganado el campo!
1/n New Hanna lab PREPRINT: "Transgene-Free Ex Utero Derivation of A Human Post-Implantation Embryo Model Solely from Genetically Unmodified Naive PSCs"
https://t.co/a3dKEE7adF
Excited to be in Palm Springs to present our arrayed and pooled Pin-Point base editing screen platforms in #Deaminet. Amazing talks and posters to come in the next two days!
@carla_bertulfo Thank you for teaching me so many things too. I always think in your strength, courage, determination and life attitude whenever I face a new challenge.
I am happy to conclude my trilogy on Cas9 specificity with our new preprint from the @MartinJinek lab! We solved a staggering number (15!) of crystal structures of Cas9 bound to bona fide off-targets to investigate the nature of mismatch tolerance.
https://t.co/GGO6eyKrb9
CRISPR technologies are powerful gene editing tools because they are programmable. We are excited to describe 3 new programmable systems, IscB, IsrB, and TnpB, some of the most abundant genes on the planet, with potential for gene editing. @ScienceMagazine https://t.co/dY8FXBYIM8