Sign in

Bagnat Lab

@bagnatlab.bsky.social
212 followers 24 following 20 posts

Interested in understanding the role of basic cellular processes in shaping tissues and organs! Located at Duke University sites.duke.edu/bagnat

PostsRepliesMedia
Reposted by Bagnat Lab
Zebrafish Rock! @zebrafishrock.bsky.social · 01/03/2026
“Overall, our study illustrates that genome wide transcriptional changes underly adaptation mechanisms that enhance intestinal function and organismal survival in response to protein malnutrition.” New work from @bagnatlab.bsky.social & Dr. Jieun Park at UNC 🐟
032
Reposted by Bagnat Lab
Society for Developmental Biology @socdevbio.bsky.social · 07/01/2026
.@priyomadhyapok.bsky.social of @duke-university.bsky.social will kick off the #SDBPostdocSeminar with her talk "A biological oscillator controls the pace of notochord segmentation" Image: Oscillator phases (circles) with averages (squares) on the unit circle as a function of time
Priyom AdhyapokOscillator phases (circles) with averages (squares) on the unit circle as a function of time
152
Bagnat Lab @bagnatlab.bsky.social · 11/12/2025
zSwim, the zebrafish lab management software we’ve been developing is now officially listed in Duke OT&C’s technology portfolio! We’re launching an official Duke pilot in March 2026 at the new Ze-Core facility! If you’re in the zebrafish community, check it out! otc.duke.edu/technologies...
0123
Bagnat Lab @bagnatlab.bsky.social · 11/12/2025
Excited to share our new paper by Dr. Carina Block! We combine in vivo and ex vivo cargo transport assays with transcriptomic and genetic approaches in mice to uncover distinct roles for jejunal and ileal neonatal enterocytes. Check out the cover too! Link: journals.biologists.com/dev/article/...
journals.biologists.com
The mouse neonatal small intestine is regionally specialized for protein absorption and transepithelial transport
Summary: Regional differences in endocytosis along the neonatal mammalian intestine reveal how different areas of the neonatal gut uniquely handle protein transport.
030
Reposted by Bagnat Lab
Cell - a Cell Press journal @cp-cell.bsky.social · 02/04/2025
Now online! Cell membranes sustain phospholipid imbalance via cholesterol asymmetry
dlvr.it
Cell membranes sustain phospholipid imbalance via cholesterol asymmetry
This work challenges a major assumption in cell biology by showing that lipid bilayers can have drastically different phospholipid abundances between their two leaflets. This lipid abundance asymmetry is enabled by the unique properties of cholesterol and endows biomembranes with distinctive properties and physiological roles.
161
Reposted by Bagnat Lab
Zebrafish Rock! @zebrafishrock.bsky.social · 13/05/2025
Congrats, Dr. Childers 🎉 #YouRock #PhDone
181
Bagnat Lab @bagnatlab.bsky.social · 13/05/2025
Congratulations to Dr. Laura on her hooding ceremony this past weekend! Laura has been an invaluable member of our lab, and we hope the ceremony honored her complex journey to completing her Ph.D.- very well deserved Laura! #grad2025 #dukeuniversity
080
Bagnat Lab @bagnatlab.bsky.social · 01/05/2025
What an elegant study showing that the mode and shape of cell division is defined by interphase morphology! This work suggests how cell fate and morphological asymmetries can be propagated via cell division in tissues. www.science.org/doi/10.1126/... #academiasky
science.org
Interphase cell morphology defines the mode, symmetry, and outcome of mitosis
During tissue formation, dynamic cell shape changes drive morphogenesis while asymmetric divisions create cellular diversity. We found that the shifts in cell morphology that shape tissues could conco...
021
Bagnat Lab @bagnatlab.bsky.social · 01/05/2025
Exciting paper from our collaborator! Using sophisticated laser ablation studies, Wu et al find that early mitotic events in specific Kupffer’s Vesicle cells are crucial for morphogenesis and lumen formation. Check it out! doi.org/10.1242/dev....
doi.org
Specific mitotic events drive left-right organizer development
Cell proliferation is crucial for tissue development. Here, we investigate its role in the Left-Right Organizer (LRO), which establishes the left-right (LR) axis. In zebrafish, we mapped mitotic event...
020
Reposted by Bagnat Lab
Katherine W. Rogers @katwrog.bsky.social · 21/04/2025
Happy to share a new preprint from my lab! We characterize the on/off kinetics, light dosage-dependence, and more for a suite of optogenetic signaling activators in zebrafish embryos 💡 www.biorxiv.org/content/10.1...
biorxiv.org
An optogenetic toolkit for robust activation of FGF, BMP, and Nodal signaling in zebrafish
Cell signaling regulates a wide range of biological processes including development, homeostasis, and disease. Accessible technologies to precisely manipulate signaling have important applications in ...
910436
Bagnat Lab @bagnatlab.bsky.social · 14/04/2025
Wondergrads Claudia (left) and Reed (right) presented at Duke's Undergraduate Research Symposium! Congratulations on some great work! #scisky #academicsky #undergradresearch
040
Bagnat Lab @bagnatlab.bsky.social · 14/04/2025
Beautiful paper from the Gray lab showing that vacuole expansion in notochord cells is crucial for proper spine formation! Check it out! pubmed.ncbi.nlm.nih.gov/40209709/ #zebrafish #scisky #academicsky
pubmed.ncbi.nlm.nih.gov
Cell expansion for notochord mechanics and endochondral bone lengthening in zebrafish depends on the 5'-inositol phosphatase Inppl1a - PubMed
Cell size is a key contributor to tissue morphogenesis. As a notable example, growth plate hypertrophic chondrocytes use cellular biogenesis and disproportionate fluid uptake to expand 10 to 20 times ...
010
Bagnat Lab @bagnatlab.bsky.social · 11/02/2025
#HiSciSky #scisky #academicsky #zebrafish Excited to announce our lab's preprint has been officially published! Discover how gut cells and the microbiome regulate protein absorption in zebrafish! elifesciences.org/reviewed-pre... @elife.bsky.social @zebrafishrock.bsky.social y.social
elifesciences.org
Protein absorption in the zebrafish gut is regulated by interactions between lysosome rich enterocytes and the microbiome
081
Bagnat Lab @bagnatlab.bsky.social · 12/12/2024
Holiday party! Nothing fishy here, just good food and great company. (psss. isn't our elf adorable?) #holidayparty #sciencefun
000
Bagnat Lab @bagnatlab.bsky.social · 05/12/2024
#HiSciSky #scisky #academicsky Excited to share our lab's latest preprint! Discover how gut microbes influence protein absorption in zebrafish. @elife.bsky.social @zebrafishrock.bsky.social elifesciences.org/articles/104...
elifesciences.org
Microbiome: Balancing microbial composition through diet
A reciprocal interaction between gut bacteria and gut cells affects protein absorption in the host.
094
Bagnat Lab @bagnatlab.bsky.social · 22/11/2024
Hello from the Bagnat Lab! ✨ We’re diving into the mysteries of organ development and physiology using zebrafish as our tiny research heroes 🐠. Follow us for updates on our discoveries, lab adventures, and the occasional fish pun (because science should make a splash and a smile).
sites.duke.edu
BAGNAT LAB
010