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#Hematology
Excited to share our latest work in Blood @BloodPortfolio! We uncover how complex chromosomal changes or aneuploidy arises and evolves in hematopoietic stem cells, driven by 5q loss, leading to aggressive blood cancers. Led by JP Creamer @PhD_Cream. More👇https://t.co/CGewzjmtCi
Our lab at Columbia University is hiring a lab manager! If you are passionate about driving new discoveries and therapies for blood stem cells and cancers, we hope to hear from you!! DM me any questions and apply here:
https://t.co/a3f2nqxshP
Our study is now published online in @stemcellreports!
We map how blood forms from hemogenic endothelium during iPSC differentiation and identify FGF signaling as a barrier to hematopoiesis.
https://t.co/SMJguIgrsM
Excited to share that @Doulatov_lab has moved to Columbia University Medical Center @ColumbiaPHY!! After wonderful 8 years at UW, we are excited to join this vibrant Columbia @columbiacancer and NYC scientific community.
Xiaoyi Cheng, graduate student in GDCB's Espin Palazon Lab, presented her Ph.D. Defense Seminar, "Nod1 and Nod2: A synergistic regulation of HSPC specification," today in 1330 Advanced Teaching and Research Building.
🚨 Save the Date!🚨 ISEH is heading to Kumamoto, Japan for #ISEH2025. Check out our confirmed speakers so far and mark your calendars for a great program you won't want to miss ➡️ https://t.co/0IC1ELYP32
Today, many students may be feeling disappointed, uncertain, or even unsafe. Let’s respond with empathy and compassion, regardless of our views.
Now is an especially important time to be kind.
🌟 Recruiting PhD students and postdocs at CHU Sainte-Justine Research Center! 🌟
🗓️ Deadline: November 17th
🔬 Among exciting projects, one position (PhD student) is open in the Ghersi Lab —apply now to join our team!
@CR_CHUSJ@UMontreal
Now online! A multimodal zebrafish developmental atlas reveals the state-transition dynamics of late-vertebrate pluripotent axial progenitors https://t.co/S24NLEchkx
New preprint is out! We present a single cell map of blood formation from iPSC hemogenic endothelium and identify elevated FGF signaling as a barrier to hematopoiesis. Led by @rachcwellington with @ChelseaCheng16, @espinlab, @coletrapnell & Brandon Hadland
https://t.co/zQomcfYJUb
Rhythmic beating of cilia within a zebrafish larva, captured with spinning-disk microscope. Credit to @slewzeus. #ZebrafishZunday https://t.co/FGVe5iUIxN
Dr. Clyde Campbell at @UIowa and team find that that NF-kB signaling works as a clock that controls the developmental progression of hematopoietic stem and progenitor cells by two p65 activity waves that inhibit the cell cycle. ⏰
https://t.co/dd51bJwg2j