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1/ New preprint! ๐Ÿณ @elihei.bsky.social and our team at @embl.org , @dkfz.bsky.social, and @mskcancercenter.bsky.social built #segger - a fast, accurate cell segmentation tool for spatial transcriptomics that assigns transcripts to their cell origins! doi.org/10.1101/2025...
Mar 18, 2025
Tissue organization is fundamental to how tissues function - yet in cancer such spatial patterns can progressively break down. Ever wondered how?! Check out our new study, where we investigate how lymphoma reshapes lymph node architecture ๐Ÿ‘€
Progressive glioblastoma or radiation-induced necrosis? ๐Ÿง  Hard to tell on MRI - but spatial transcriptomics tells a different story! Check out @zaira-sef.bsky.social's preprint for more!
Abigail and Moritz are great mentors - I can only recommend this setup! Interested in spatial omics and brain tumors? Take a look at this postdoc opportunity ๐Ÿ‘‡
Delighted to present Latent Interaction Variational Inference (LIVI), a framework for trans-eQTL mapping at single-cell resolution that I developed during my PhD together with colleagues from @steglelab.bsky.social 1/n
What if you could get a glimpse of the future of your health, today? Our scientists have developed a new generative AI model, trained using large-scale health records, that can estimate how human health may change over time. Watch to find out more. ๐Ÿ–ฅ๏ธ๐Ÿงฌ
SUM-seq out @natmethods.nature.com !โ€จ ๐Ÿš€ Ultra-high-throughput Multiplexed snATAC+RNA Used to: โณ link temporal macrophage GRNs to immune disease genetics ๐Ÿฉธ map T cell regulatory landscapes ๐Ÿงฌโœ‚๏ธ dissect TF function in hiPSC differentiation via CRISPRi/a screens doi.org/10.1038/s41592-025-02700-8 ๐Ÿงต
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May 26, 2025
Thrilled to share that our work from Trumpp Lab @hi-stem @dkfz.bsky.social is out in Nature. We provide the first single-cell data on neurons infiltrating pancreatic tumors, offering new insights into cancer therapy. #cancerneuroscience @cn-hd.bsky.social www.nature.com/articles/s41...
New pre-print from Thomas Hรถfer, Daniel Hรผbschmann, @haas_lab and myself, with first authors @Esther_RCorrea @FloGrunschlager and Tamar Nizharadze doi.org/10.1101/2025... @DKFZ @NCT_HD @ChariteBerlin @hi_stem_lab BIH & MDC
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Stegle Lab
Feb 18, 2025
Feb 5, 2025
This work presents SUM-seq, an ultra-high-throughput method for co-profiling chromatin accessibility and gene expression in single nuclei across multiplexed samples, advancing the study of gene regula...
doi.org
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Single-cell ultra-high-throughput multiplexed chromatin and RNA profiling reveals gene regulatory dynamics - Nature Methods
Residing at the top of the hematopoietic hierarchy, long-term hematopoietic stem cells (HSCs) are capable of self-renewal and sustained blood cell regeneration. Over the past decades, single-cell and ...
doi.org
A kinetics-based model of hematopoiesis reveals extrinsic regulation of skewed lineage output from stem cells
Anna Mathioudaki
Anna Mathioudaki
Anna Mathioudaki
EMBL-EBI
Mikael Marttinen
Danai Vagiaki
Mick Milsom
Mapping trans-eQTLs at single-cell resolution using Latent Interaction Variational Inference. https://www.biorxiv.org/content/10.64898/2026.02.04.703363v1
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