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Kate Cavanaugh

@katecavanaugh.bsky.social
2.7K followers 2.3K following 147 posts

Migrating on my own path. Cytoskeletal enthusiast with a love for mechanics, development, and biophysical approaches. | BWF CASI Fellow with Orion Weiner at UCSF | PhD Gardel lab at UChicago | HHMI Gilliam, Ford Predoctoral Fellow Alum |

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Reposted by Kate Cavanaugh
Song Kim @songk.bsky.social · 23/09/2026
Excited to share my first preprint from my PhD work in the Bement lab 🥳 💝 We discovered a previously unrecognized function of the RhoGAP RGA-3/4: RGA-3/4 directly and cooperatively binds to F-actin and reorganizes it by crosslinking actin filaments www.biorxiv.org/content/10.6...
biorxiv.org
Molecular and cellular characterization of the interaction between the Rho GAP RGA-3/4 and F-actin
During cytokinesis in amphibian and echinoderm embryos, propagating waves of Rho activity and F-actin assembly - cortical excitability - are amplified and focused at the equatorial cortex by the mitot...
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Kate Cavanaugh @katecavanaugh.bsky.social · 10/09/2026
Absolutely ecstatic to share that WE GOT THE COVER!!! 🥹🎉 Seeing this on NCB's cover feels surreal. So much time, science, and teamwork went into this project, and I couldn’t be more excited to see it celebrated like this. A very, very happy day for this really really old and grown embryo 🐭🧫💥
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Reposted by Kate Cavanaugh
Stem Cell Podcast @stemcellpodcast.com · 07/09/2026
Scientists with @katecavanaugh.bsky.social in the Weiner Lab at UCSF found that reproductive aging increases #embryo contractility and alters tissue mechanics, reducing successful embryo implantation.🫄 Here's the study: go.nature.com/4gmQ01l 🎧 Listen now! bit.ly/4wV6VNv
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Reposted by Kate Cavanaugh
International Society of Developmental Biology @isdb.bsky.social · 28/08/2026
An interesting paper by @katecavanaugh.bsky.social shows that aged embryos have higher contractility than younger ones, which impedes their spreading and attaching during implantation. Potential to help with embryo screening! 👉Also, she's on the job market right now!👈 👇👇👇 doi.org/10.1038/s415...
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Kate Cavanaugh @katecavanaugh.bsky.social · 26/08/2026
Aw shucks thanks Mark! I hope you're doing well!
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Kate Cavanaugh @katecavanaugh.bsky.social · 26/08/2026
Thank you Farners!
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Kate Cavanaugh @katecavanaugh.bsky.social · 25/08/2026
Thanks Mel!!! Thanks for all your feedback and support throughout this entire process! 🥹
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Reposted by Kate Cavanaugh
Ricard Alert Zenón @ricardalert.bsky.social · 25/08/2026
New paper @natcellbio.nature.com! We propose to understand embryo implantation as active wetting. Embryos from older mothers spread less because they are too contractile and viscous. Experiments by @katecavanaugh.bsky.social and theory by MJ Franco-Oñate in my group. www.nature.com/articles/s41...
nature.com
Elevated contractility drives implantation failure in mouse embryos from aged females - Nature Cell Biology
Cavanaugh et al. show that embryos from aged mice have increased contractility and tissue viscosity on embryonic day 4.5, which leads to poor spreading and attachment. Similar age-associated mechanica...
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Kate Cavanaugh @katecavanaugh.bsky.social · 25/08/2026
as an eternal optimist.... i have hope!
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Kate Cavanaugh @katecavanaugh.bsky.social · 25/08/2026
More broadly, I want to understand how mechanics, cell fate, and morphogenesis talk to one another across scales—from the ovary, to the embryo, to implantation. Specifically how reproductive aging might compromise this communication. And please share/RT: the academic job market runs on diffusion. 🫠
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Kate Cavanaugh @katecavanaugh.bsky.social · 25/08/2026
And finally—a bit of personal news: 🔬 I’m on the faculty job market this year! I’m looking for tenure-track opportunities where I can build a lab at the intersection of developmental biology, mechanobiology, reproductive biology & aging.
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Kate Cavanaugh @katecavanaugh.bsky.social · 25/08/2026
is this a magma LUT? LOVE IT 😂
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Kate Cavanaugh @katecavanaugh.bsky.social · 25/08/2026
A flaming elmo! ...I can retire now my life is complete 🥹
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Kate Cavanaugh @katecavanaugh.bsky.social · 25/08/2026
11/11 Special thank you to the reviewers who made this process an ~actual~ delight! And special thank you to our amazing collaborators to make this all happen. It was an amazing journey working with these groups! @pwoakes.bsky.social @ricardalert.bsky.social @matteomolelab.bsky.social
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Kate Cavanaugh @katecavanaugh.bsky.social · 25/08/2026
Huge thanks to the @OrionWeinerLab for letting me spend years asking whether embryos are basically tiny active droplets. ❤️🔬🥚 Read the paper here 👇 nature.com/articles/s41... 10/11
nature.com
Elevated contractility drives implantation failure in mouse embryos from aged females - Nature Cell Biology
Cavanaugh et al. show that embryos from aged mice have increased contractility and tissue viscosity on embryonic day 4.5, which leads to poor spreading and attachment. Similar age-associated mechanica...
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Kate Cavanaugh @katecavanaugh.bsky.social · 25/08/2026
And in clinical time-lapse datasets, we found related morphokinetic signatures associated with implantation potential. Our work suggests Embryo mechanics may be an overlooked regulator of reproductive longevity and a new way to understand, predict, and maybe improve implantation
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Kate Cavanaugh @katecavanaugh.bsky.social · 25/08/2026
We asked whether any of this matters in humans. Human embryos from older women showed similar age-associated changes in trophectoderm contractility and tissue state. 9/11
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Kate Cavanaugh @katecavanaugh.bsky.social · 25/08/2026
But Mechanics -> cell fate. Embryos from A females showed altered trophectoderm, and Aged cells placed into young embryos were biased away from the trophectoderm lineage. So the consequences of altered mechanics may reshape developmental decisions themselves. 8/11
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Kate Cavanaugh @katecavanaugh.bsky.social · 25/08/2026
And that early behavior contains information about the embryo's future. Using time-lapse imaging, we found that compaction dynamics predict how well an embryo will later implant. The embryo may be revealing its mechanical state days before implantation begins! 7/11
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Kate Cavanaugh @katecavanaugh.bsky.social · 25/08/2026
Then came one of my favorite surprises: The mechanical defect appears long before implantation. At the 8-cell stage, embryos undergo compaction: a dramatic actomyosin-driven shape change. Embryos from aged females compact differently and move through this transition faster. 6/11
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Kate Cavanaugh @katecavanaugh.bsky.social · 25/08/2026
But correlation ≠ causation. So we changed contractility ourselves. ⬆️ Increase contractility in young embryos → they acquire the aged implantation phenotype. ⬇️ Reduce contractility in aged embryos → implantation competence improves. 5/11
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Kate Cavanaugh @katecavanaugh.bsky.social · 25/08/2026
Why does that matter? To implant, a blastocyst has to physically interact with its environment. We found that aged embryos behave like a droplet that doesn't want to wet a surface: Too much viscosity makes the embryo less able to implant. 4/11
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Kate Cavanaugh @katecavanaugh.bsky.social · 25/08/2026
Turns out: yes. Embryos from aged females are hypercontractile. Their outer epithelium (the trophectoderm) generates too much contractile force, increasing tissue surface tension and viscosity. In other words: Aged embryos are mechanically different. 3/11
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Kate Cavanaugh @katecavanaugh.bsky.social · 25/08/2026
We know fertility declines dramatically with maternal age. Aneuploidy is a major part of the story—but even chromosomally normal embryos from older women can fail to implant. So we asked a different question: Could aging change the physical properties of the embryo? 2/11
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Kate Cavanaugh @katecavanaugh.bsky.social · 25/08/2026
🧵 What if one reason fertility declines with age isn’t just genetic-but mechanical? Thrilled to share our new paper in @NatureCellBio : Elevated contractility drives implantation failure in mouse embryos from aged females… here’s what we found 👇 www.nature.com/articles/s41... 1/11
nature.com
Elevated contractility drives implantation failure in mouse embryos from aged females - Nature Cell Biology
Cavanaugh et al. show that embryos from aged mice have increased contractility and tissue viscosity on embryonic day 4.5, which leads to poor spreading and attachment. Similar age-associated mechanica...
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Reposted by Kate Cavanaugh
Anh Hoang Le, PhD 🏳️‍🌈🏴󠁧󠁢󠁳󠁣󠁴󠁿🇻🇳 @anhhle2702.bsky.social · 07/08/2026
Hot take but any reporter that makes the actin network visible will make any cell look awesome under the microscope! These Xenopus 🐸 ectoderm cells are expressing an actin tension sensor, and you can see the retrograde flow very nicely. Actin is better than microtubules 😁 #FluorescenceFriday
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Stefan Luschnig @luschnig.bsky.social · 04/08/2026
Interested in using #Drosophila genetics & advanced imaging combined with modeling to study inter-organ transport and epithelial dynamics? We’re hiring a #PhD student @uni-muenster.de, based at the Multiscale Imaging Center and @sfb1348.bsky.social Graduate School. Apply here tinyurl.com/ypx74a5d
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Kate Cavanaugh @katecavanaugh.bsky.social · 03/08/2026
Honored to be featured in this year's cohort of winners. Thank you to ASCB for recognizing my work on the mechanics of mammalian embryo development with reproductive aging. Excited to present my work later this year at the 2026 ASCB meeting in San Diego! www.ascb.org/society-news...
ascb.org
ASCB Announces 2026 Honorific Award Winners - ASCB
Each year, the American Society for Cell Biology honors exceptional scientists whose research, mentorship, and leadership are shaping the future of cell biology. From groundbreaking discoveries to tir...
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Reposted by Kate Cavanaugh
Anh Hoang Le, PhD 🏳️‍🌈🏴󠁧󠁢󠁳󠁣󠁴󠁿🇻🇳 @anhhle2702.bsky.social · 31/07/2026
Happy #FluorescenceFriday. Embryonic myeloid cells are curious. They emerge early during development and disperse throughout an embryo. During this journey, they interact with different cell populations. This myeloid cell 🔴 is seemingly probing ectoderm cells 🔵 to the point of warping their nuclei.
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Reposted by Kate Cavanaugh
AIC at Janelia @aicjanelia.bsky.social · 23/07/2026
This afternoon's imaging lab at #IALSJanelia is all about subcellular structures, highlighted here by myosin (white) and actin (orange). These membrane ruffles were captured on our lattice light-sheet microscope by @cmhobson.bsky.social
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Reposted by Kate Cavanaugh
Journal of Cell Biology @jcb.org · 20/07/2026
Michaud, @andrewgoryachev.bsky.social, von Dassow, @xenresearchcenter.bsky.social et al. identify a versatile cortical pattern-forming circuit based on #Rho, F-#actin, Ect2, & RGA-3/4 rupress.org/jcb/article/... 📕 In "Collective Behaviors and Self-Organization in Cells" rupress.org/jcb/collecti...
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Reposted by Kate Cavanaugh
Henry De Belly @henrydebelly.bsky.social · 19/06/2026
We made the cover 🤩 !! Check out this incredible painting by @kahsage.bsky.social !!
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Nicolas Minc @minclab.bsky.social · 26/01/2026
Latest work from the lab by Aude Nommick et al., in which we propose a "size-scaling" model for microtubule force exertion that regulates centrosome centration vs decentration during embryo development! @ijmonod.bsky.social www.biorxiv.org/content/10.6...
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John Wallingford @jbwallingford.bsky.social · 26/06/2026
Not too late to register for Santa Cruz Dev Biol (but it is too late to get a talk, i'm afraid. The hard deadline for poster abstracts and attendance is July 15! scdb2026.sites.ucsc.edu
scdb2026.sites.ucsc.edu
Santa Cruz Developmental Biology Meeting
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Kate Cavanaugh @katecavanaugh.bsky.social · 26/06/2026
Costly IVF add-ons fail to show benefits, new study finds | Euronews share.google/TJjg7bxtDMxP...
share.google
Costly IVF add-ons fail to show benefits, new study finds
A range of extra treatments marketed by fertility clinics to improve the chances of success during in vitro fertilisation (IVF) lacks convincing evidence that they work, according to a new study publi...
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Kate Cavanaugh @katecavanaugh.bsky.social · 24/06/2026
Congratulations to all! Welcome to the family!!
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Reposted by Kate Cavanaugh
Kari Herrington @kahsage.bsky.social · 20/06/2026
This is our classy polarized rac-rho cell's good friend. The noise it makes is "Oblelbebebelbebeb" Draw with acrylic pens #art #sciart #traditionalart
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Kate Cavanaugh @katecavanaugh.bsky.social · 20/06/2026
Friday is Embryo day. Love seeing these cute mouse embryos on a grid develop 😍
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Nicoletta Petridou @nicolettapetridou.bsky.social · 16/06/2026
A very pleasant surprise to see that we got the cover for this paper 🥳 @natphys.nature.com
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Henry De Belly @henrydebelly.bsky.social · 10/06/2026
Very excited to be sharing our new paper, just out in Nature Cell Biology! The big question we investigate: How do migrating cells put their front 🔴 and back 🔵 in the right place?
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Reposted by Kate Cavanaugh
Mark Peifer (He, him) @peiferlabunc.bsky.social · 11/06/2026
Just heard @katecavanaugh.bsky.social present this very cool work that provides molecular insights into why older women have difficulty in getting pregnant, based on age dependent changes in embryo implantation (now in press at NCB) 🧪 www.biorxiv.org/content/10.1...
A mechanical origin for implantation defects in embryos from aged females
View ORCID ProfileKate E. Cavanaugh, MJ Franco-Oñate, View ORCID ProfileDiana J. Laird, View ORCID ProfilePatrick W. Oakes, View ORCID ProfileRicard Alert, View ORCID ProfileOrion D. Weiner
doi: https://doi.org/10.1101/2025.09.29.679218
This article is a preprint and has not been certified by peer review [what does this mean?].

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Abstract

Women over 35 experience a marked reduction in fertility. The origin of these fertility defects appears to reside in the implantation capacity of the embryo itself, but the mechanistic basis of this impairment is not well-understood. Here, we identify a core mechanical defect in embryos from aged mothers that impairs the process of implantation. Using mouse models, we find that reproductive aging yields increased contractility in the extra-embryonic trophectoderm, the outer epithelial tissue responsible for mediating uterine attachment and embryo implantation. This hypercontractile state elevates tissue surface tension and viscosity in the blastocyst, culminating in defective spreading during implantation. Enhanced contractility is necessary and sufficient for this age-related defect in implantation, and early embryo mechanics can be used to predict successful implantation for embryos from both young and aged mothers. Our work represents a potential foundation for improving embryo selection in Assisted Reproductive Technologies to resolve age-related defects in female fertility.
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Pablo J. Sáez @pjsaez.bsky.social · 04/06/2026
1 week to start🔥 New @focalplane.bsky.social webinar series focused on #CellMigration, register & join us▶️, it will be fun! pls spread the word, in the next one, ECRs could apply to show their work ;) ▶️ to register: focalplane.biologists.com/2026/05/29/n... @dgz.bsky.social @the-node.bsky.social
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Evelyn Strickland @strickland-evelyn.bsky.social · 20/04/2026
What if you got to work with some of your best friends on a science project? I can't publish how fun this was, but I can show you the data (🧵)! Last week, we posted our second neutrophil swarming paper to bioRxiv and I wanted to post my favorite videos here~ www.biorxiv.org/content/10.6...
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jimgalbraith27.bsky.social @jimgalbraith27.bsky.social · 03/04/2026
How do proteins find their way to the cell's leading edge? @jimgalbraith27.bsky.social & @cathygalbraith.bsky.social break down how bleach line, FLOP, single-particle tracking, FCS & iPALM reveal intracellular fluid flow and an actin-myosin compartment barrier. doi.org/10.1038/s414...
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Brugues Lab @brugueslab.bsky.social · 28/01/2026
This poses an intriguing question: how is cytoplasm robustly and accurately organized in absence of physical barriers, and how is cytoplasmic partitioning achieved within the constrained time window of rapid embryonic divisions? (2/9)
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Guillermina Ramirez-SanJuan @guille-rochelle.bsky.social · 23/02/2026
Excited to share our new preprint exploring how Paramecium achieves diverse flow functions, i.e. feeding and swimming, simultaneously. This work was spearheaded by our ExM expert, PhD student Daphne Laan @daphnelaan.bsky.social : www.biorxiv.org/content/10.6...
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Manning Research Group @manningresearch.bsky.social · 10/02/2026
Excited to highlight a new preprint about mechanical contributions to tissue homeostasis, from the Manning group in collaboration with the amazing Carien Niessen and Sara Wickstrom @sarawickstrom.bsky.social labs, spearheaded by Dr. Somiealo Azote: www.biorxiv.org/content/10.6...
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John Wallingford @jbwallingford.bsky.social · 10/02/2026
Registration is OPEN for the 2026 Santa Cruz Meeting on Developmental Biology!!! Please spread the word! @mads100tist.bsky.social @socdevbio.bsky.social @bsdb.bsky.social @xenbase.bsky.social @isdb.bsky.social @devbiol.bsky.social @the-node.bsky.social scdb2026.sites.ucsc.edu
scdb2026.sites.ucsc.edu
Santa Cruz Developmental Biology Meeting
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Nicole Edwards @nicoleedwds.bsky.social · 07/01/2026
I’m happy to announce that I joined @umich.edu Department of Cell & Developmental Biology as an Assistant Professor and I will open my lab this month! My lab will investigate the genetic and cellular mechanisms underlying digestive and respiratory organs with a focus on the trachea and esophagus 1/2
Microscopy image of a mouse embryo
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Vítor Yang @vitoryang.bsky.social · 31/12/2025
How do migrating cell groups balance force and flexibility? Our new preprint shows that RhoGAP15B downregulates RhoA–Myosin activity to stabilise protrusions and enable efficient collective migration in vivo. Happy New Year! www.biorxiv.org/content/10.6...
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