Reik Lab(@ReikLab) 's Twitter Profile Photo

This very cool preprint from Valentina Carlini, Cristina Policarpi & Jamie Hackett explores the stability of in naive pluripotency and during differentiation biorxiv.org/content/10.110
 (1/3)

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Désirée Goubert(@DesireeGoubert) 's Twitter Profile Photo

Woehoee: the official version of my talk is online đŸ€— Go check out what has in common with conducting traffic!! groningen
youtu.be/1WWkB18lyHE

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Biotech Investor(@learnbiotech) 's Twitter Profile Photo

Good summary from Yair Einhorn on an exciting new technology:
Investors should constantly read about new technologies to better understand where the industry may be heading

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Tune Therapeutics(@tunetx_news) 's Twitter Profile Photo

allows for a variety of effects on gene activation and repression, but without the risks typically associated with cutting or rewriting DNA.

To learn more about the power of epigenetic editing:


(3/3)

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Yair Einhorn(@yaireinhorn) 's Twitter Profile Photo

1/Chroma Medicine has recently presented promising preclinical data which demonstrates the advantages of over conventional modalities - especially due to its ability to avoid rearrangements.

1/@chromamedicine has recently presented promising preclinical data which demonstrates the advantages of #EpiGeneticEditing over conventional #GeneEditing modalities - especially due to its ability to avoid #Chromosomal rearrangements. #BioTech #CRISPR #Genomics #ASGCT23
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GEN Biotechnology(@GENBiotechJrnl) 's Twitter Profile Photo

The June 2023 issue is here!
- tomatoes with enhanced vitamin D
-Bio-recording and DNA memory Patrick Cai
-Lipid metabolism in the aging brain Lingyan Shi
-Digital diagnostics for public health

liebertpub.com/toc/genbio/2/3

The June 2023 issue is here! 
-#CRISPR tomatoes with enhanced vitamin D
-Bio-recording and DNA memory @caiyizhi
-Lipid metabolism in the aging brain @StimulatedRaman
-Digital diagnostics for public health

liebertpub.com/toc/genbio/2/3
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Fink Lab(@FinkLab) 's Twitter Profile Photo

Congratulations Julian Halmai on the publication of “Artificial escape from XCI by DNA methylation editing of the CDKL5 gene” in Nucleic Acids Research! 🎉



academic.oup.com/nar/advance-ar


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Fink Lab(@FinkLab) 's Twitter Profile Photo

Julian Halmai delivered an excellent presentation at the Human Genomics Symposium today! We are so very proud of the research he is leading on w/ for + . Congrats to Julian and our lab members on their hard work!

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Gayathri Vijayakumar(@Gayathri_Vijayk) 's Twitter Profile Photo

highlights:
@ChromaMedicine Announces Data Demonstrating the Benefits of in human T cells, PCSK9 and HBV.
1. Epigenetic editor to 3 different genes simultaneously accomplished durable silencing in primary h T cells.

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Tune Therapeutics(@tunetx_news) 's Twitter Profile Photo

Genetic tuning with TEMPO reduces the risk of disruption and harm to neighboring gene regulatory regions, and leaves natural machinery and mechanisms in place.

Learn more: bit.ly/43A3JsN

Genetic tuning with TEMPO reduces the risk of disruption and harm to neighboring gene regulatory regions, and leaves natural machinery and mechanisms in place. 

Learn more: bit.ly/43A3JsN

#TuneTx #EpigeneticEditing
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Tune Therapeutics(@tunetx_news) 's Twitter Profile Photo

Gene editing and may sound similar. But in practice, they are two distinct modalities with important biological differences. creates permanent changes to genetic coding sequences with molecular scissors. (1/3)

Gene editing and #EpigeneticEditing may sound similar. But in practice, they are two distinct modalities with important biological differences. #GeneEditing creates permanent changes to genetic coding sequences with molecular scissors. (1/3)
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Marty Chilberg(@mchilberg) 's Twitter Profile Photo

Max Power Next up is . S/b no surprise that is more advanced w/multiple programs in discovery stage. has some limitations.
ncbi.nlm.nih.gov/pmc/articles/P


@MaxPowerNGS Next up is #epigeneticEditing.  S/b no surprise that #ZFN is more advanced w/multiple programs in discovery stage.  #CRISPR has some limitations.
ncbi.nlm.nih.gov/pmc/articles/P

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Chroma Medicine(@chromamedicine) 's Twitter Profile Photo

Thrilled to be presenting groundbreaking data today at demonstrating the power of harnessing an endogenous system to regulate gene expression. Check out this thread to learn how we did it. đŸ§”
1/7

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Gayathri Vijayakumar(@Gayathri_Vijayk) 's Twitter Profile Photo

Wed highlights:
1. J. Keith Joung receives the Outstanding Achiev Award for his work in & 🧬
2. Doudna Lab - keynote speech on Connor Tsuchida’s work on mitigating -induced chromosome loss in h T cells
biorxiv.org/content/10.110


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Xenetic Biosciences(@XeneticBio) 's Twitter Profile Photo

Xenetic Biosciences is a biopharmaceutical company focused on advancing proprietary technology platforms across multiple high-value cancer indications. Learn more about us here: bit.ly/3xixJIx

$XBIO

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Nature Portfolio(@NaturePortfolio) 's Twitter Profile Photo

A modified version of the genome-editing tool CRISPR–Cas9 has reversed disease symptoms in mice by activating genes go.nature.com/2zbYeVu

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Chroma Medicine(@chromamedicine) 's Twitter Profile Photo

In summary, we are excited about what these data mean for enabling the next generation of highly multiplexed genomic medicines and look forward to sharing more of our progress soon.
6/6



-Aron Jaffe

In summary, we are excited about what these data mean for enabling the next generation of highly multiplexed genomic medicines and look forward to sharing more of our progress soon.
6/6

#EpigeneticEditing #Tweetorial

-@jaffeab
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Désirée Goubert(@DesireeGoubert) 's Twitter Profile Photo

Oh yes! In Vivo by silencing genes with to reduce cholesterol. Definitely getting closer to clinical impact here! New Atlas Epigenetics News @Epigenetics newatlas.com/crispr-silence


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SegalLab(@lab_segal) 's Twitter Profile Photo

Julian Halmai from Fink Lab reports his awesome study published this year showing he can reactivate the silenced from the inactive X allele. This has huge implications for treating X-linked disorders in females. academic.oup.com/nar/article/48


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