🚀 Excited to share our latest publication in #NatureMaterials Nature Portfolio ! 💥 Let's say it loud : #Mechanics is emerging as a new dimension of anti-tumour #immunity 📺 Link : www.nature.com/articles/s41... Tiny thread 👉🧵
Jacky Goetz
@goetzjacky.bsky.social
Cancer and Cell biologist🦀, CLEMist🔬, fan of #mechanobiology, #metastasis, #extracellularvesicles, #imaging. Lab website : https://www.goetzlab.fr/ Also, Amateur & addict triathlete 🚴♂️🏊👟.
Check out our latest work, spearheaded by @hyennev.bsky.social in the lab. Thank you @cnrsbiologie.bsky.social for promoting it. @inserm.fr @unistra.fr
#ResultatScientifique🔎| Utilisés en clinique pour traiter des cancers, les mécanismes d'action des vecteurs viraux restent mal compris. ✍️ Vincent Hyenne 🤝 @cnrs-alsace.bsky.social @goetzjacky.bsky.social @inserm.fr @unistra.fr
The Heart beats Cancer ! Very happy to share some thoughts about the fascinating study published in by the group of Serena Zacchigna Another amazing demonstration of the major impact of #mechanics on #cancer Thank you @cp-trendscancer.bsky.social www.sciencedirect.com/science/arti...
Another proof that #mechanics count in #cancer ! Check out this fascinating study 🤩 providing insight as to why the #heart is rarely colonized by #tumor cells : 🖥️ lnkd.in/e-WNR6KN You can also read this french article by O/HERTEL in @lepoint.fr with some of my comments : 🖥️ lnkd.in/eudUx2Fd
Are you at #ISEV2026 and wonder what this is ? Come & listen to our Ph.D student Louis Bochler at talk OR11.1 in a session on #metastasis chaired by David Lyden (on friday). We will be there and explain what makes these #neutrophils imaged in a living mouse lung so crazy.
We are all 🤩 with our work and image being selected for the cover of @natmater.nature.com Thank you again @brunommcastro.bsky.social ! ALT : This is a PAA bead stuck in a #zebrafisg ISV vessel
Our April issue is live! Featuring articles about cell viscosity of tumour cells, materials failure in active nematics, and stable facets in perovskite photovoltaics. We also feature a Perspective on antiferroelectrics and more. 👇 go.nature.com/4ctUzVt
💥 We made the COVER 🤩 of @natmater.nature.com ! CELL VISCOSITY 🎈 IN METASTATIC EXTRAVASATION Check the entire issue here : lnkd.in/e9USS44n @inserm.fr @unistra.fr #zebrafish #mouse #metastasis #mechanobiology #imaging #materials Note : Image's credit is V.Gensbittel (PAA bead in a ZF ISV)
Check out the french 🇫🇷 digest we just published in MédecineSciences Awesome work (this one and the original) by @katkajerabkova.bsky.social & @hyennev.bsky.social in the lab Digest : www.medecinesciences.org/fr/articles/...
Not just soft 🎈 Many thanks to the team of K.Konstantopoulous #JohnsHopkins for throughly discussing our recently-published story in @aacrjournals.bsky.social #CancerResearch Highly appreciated 🙏 Link : aacrjournals.org/cancerres/ar... Our original paper : www.nature.com/articles/s41...
Not Just Soft: Cell Viscosity Emerges as a Driver of Tumor Cell Dissemination
Abstract. The mechanical properties of cells and tissues have emerged as important biophysical markers for distinguishing between healthy and diseased states. In cancer, mechanical heterogeneity spans...
aacrjournals.org
Check out the awesome highlight (+ video) of our recent work on the #biophysics of #metastasis published by Le Point, by O.HERTEL 🔗 lnkd.in/eywzr8kn 🖥️ dai.ly/xa0dwds Such a blast to see our #zebrafish 🐠 experiments making the (web) front page (but there are also 🐁 ones in the original paper 😜)
💡 Interested in mechano-immunology (or biology of adult B-ALL) ? 💥 We have an #MSCA postdoctoral fellowship offer for you @ec.europa.eu 🖥️ : euraxess.ec.europa.eu/jobs/hosting... 🏙️ Where ? In beautiful #Strasbourg #CRBS @inserm.fr @unistra.fr 🥼 Interested ? 📧 jacky.goetz@inserm.fr
This link will take you to a page that’s not on LinkedIn
lnkd.in
💡 Interested in mechano-immunology (or biology of adult B-ALL) ? 💥 We have an #MSCA postdoctoral fellowship offer for you @ec.europa.eu 🖥️ : euraxess.ec.europa.eu/jobs/hosting... 🏙️ Where ? In beautiful #Strasbourg #CRBS @inserm.fr @unistra.fr 🥼 Interested ? 📧 jacky.goetz@inserm.fr
This link will take you to a page that’s not on LinkedIn
lnkd.in
A #research team investigated how the mechanical properties of tumor cells influence their metastatic pathway. 🔑 🔍: Viscosity – rather than elasticity – determines how tumor cells invade surrounding tissue. 👉 mpzpm.mpg.de/news/news-de... 📸 V. Gensbittel, J. Goetz #science #biophysics #metastasis
Thank you 🙏 @inserm.fr @unistra.fr
A #research team investigated how the mechanical properties of tumor cells influence their metastatic pathway. 🔑 🔍: Viscosity – rather than elasticity – determines how tumor cells invade surrounding tissue. 👉 mpzpm.mpg.de/news/news-de... 📸 V. Gensbittel, J. Goetz #science #biophysics #metastasis
🧬 New study in Nature finds cancer spread depends on how “thick” tumour cells are. Higher cell viscosity helps them survive blood flow and escape into new tissues - a key step in metastasis. 🔬 www.nature.com/artic... #CancerResearch #Science #Health
Cell viscosity influences haematogenous dissemination and metastatic extravasation of tumour cells go.nature.com/4jZ8OUu
Cell viscosity influences haematogenous dissemination and metastatic extravasation of tumour cells - Nature Materials
The viscosity of tumour cells is shown to govern their ability to disseminate through the bloodstream and extravasate, establishing a key biomechanical factor of metastasis.
go.nature.com
www.nature.com/articles/s41...
Cell viscosity influences haematogenous dissemination and metastatic extravasation of tumour cells - Nature Materials
The viscosity of tumour cells is shown to govern their ability to disseminate through the bloodstream and extravasate, establishing a key biomechanical factor of metastasis.
nature.com
💡 Have you ever wondered how #circulating #tumor cells squeeze through narrow #capillaries during hashtag#metastasis ? 💥 We did, check out our latest publication just out #NatureMaterials: rdcu.be/eZHxJ
Merci #France3Alsace @francetv.bsky.social et en particulier #MarieCoulon pour ce nouveau reportage sur nos tout derniers travaux dans la Région Grand Est 📺 (start at 00:12:45) www.france.tv/france-3/gra...
Merci 🙏 @unistra 😊
Pour former des métastases, les cellules cancéreuses doivent franchir une course d’obstacles qui exige des propriétés physiques spécifiques. Une étude montre que leur viscosité joue un rôle crucial, mais pas à toutes les étapes de la progression métastatique. @goetzjacky.bsky.social @inserm.fr
Pour former des métastases, les cellules cancéreuses doivent franchir une course d’obstacles qui exige des propriétés physiques spécifiques. Une étude montre que leur viscosité joue un rôle crucial, mais pas à toutes les étapes de la progression métastatique. @goetzjacky.bsky.social @inserm.fr
La viscosité, une propriété clé des cellules cancéreuses
Pour former des métastases, les cellules cancéreuses doivent franchir une course d’obstacles qui exige des propriétés physiques spécifiques. Une nouvelle étude montre que leur viscosité joue un rôle c...
radiofrance.fr
Un grand merci @alexandramaz.bsky.social pour ce highlight, un vrai plaisir de travailler et d'échanger avec vous ! @inserm.fr @unistra.fr
Pour former des métastases, les cellules cancéreuses doivent franchir une course d’obstacles qui exige des propriétés physiques spécifiques. Une nouvelle étude montre que leur viscosité joue un rôle crucial, mais paradoxalement, pas à toutes les étapes de la progression métastatique.
Pour former des métastases, les cellules cancéreuses doivent franchir une course d’obstacles qui exige des propriétés physiques spécifiques. Une nouvelle étude montre que leur viscosité joue un rôle crucial, mais paradoxalement, pas à toutes les étapes de la progression métastatique.
La viscosité, une capacité clé des cellules cancéreuses
Pour se disséminer en métastases, les cellules cancéreuses doivent présenter certaines compétences physiques. Une nouvelle étude montre que leur viscosité joue crucial, mais paradoxalement, pas à tout...
radiofrance.fr
💡 Have you ever wondered how #circulating #tumor cells squeeze through narrow #capillaries during hashtag#metastasis ? 💥 We did, check out our latest publication just out #NatureMaterials: rdcu.be/eZHxJ
Check out our 1st #preprint in 2026 ! With whom ? A nice & collaborative work with #PierreMartineau #IRCM (Institut de Recherche en Cancérologie de Montpellier) that started during our #Nanotumor era. Link ? www.biorxiv.org/content/10.6...
Well done boys 🙌🙌🙌
Delighted to share the latest paper from the lab "Fast label-free live imaging with FlowVision reveals key principles of cancer cell arrest on endothelial monolayers" Amazing work driven by @follainga.bsky.social with contributions from many. link.springer.com/article/10.1...
The Tumor Biomechanics Lab wishes you all the best for #2026. May your (scientific and personal) projects blossom, And do not let anyone or anything stand in your way. 📸 Valentin Gensbittel : Cell-like PAA bead stuck in a #zebrafish #blood vessel (#staytuned #comingoutsoon)