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Szen

@szen.bsky.social
341 followers 513 following 30 posts

Postdoc in the labs of Alejandro Aguilera Castrejon (HHMI’s Janelia Research Campus) and Sanjay Srivatsan (Fred Hutch). Interested in cellular plasticity, multiplexed assays, and comp bio. ttszen.com

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Szen @szen.bsky.social · 11/08/2026
Many congratulations to you and the team Choi! Looking forward to reading in more detail, it's very exciting.
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Saloni @scientificdiscovery.dev · 11/08/2026
BIG NEW piece by me. A few years ago, if you asked me to summarize my entire worldview in one article, I would’ve said it was too broad and too difficult. But this year, I decided to do it.
worksinprogress.co
Every disease is a policy failure
Few people know how much medicine has progressed in their lifetimes. Fewer know how much faster it could be progressing.
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Wellcome Sanger Institute @sangerinstitute.bsky.social · 05/08/2026
Scientists have uncovered new weak spots in cancer that could support the development of more effective therapies. 🧬 By using organoids created from patient cells, this work could help researchers develop better, less toxic treatments for patients⤵️ bit.ly/3Sh5t9M
bit.ly
New biobank of tumour models reveals cancers’ weak spots
The largest characterised collection of patient-derived tumour organoids to date is helping scientists identify the genes cancers need to grow and survive.
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Paper Skygest Team @paper-feed.bsky.social · 19/08/2025
**Please repost** If you're enjoying Paper Skygest -- our personalized feed of academic content on Bluesky -- we'd appreciate you reposting this! We’ve found that the most effective way for us to reach new users and communities is through users sharing it with their network
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Jay Shendure @jshendure.bsky.social · 31/07/2026
Thrilled to post thread re: new single-cell lineage of mouse embryo reconstructed w/ DNA Typewriter. One animal, zygote to late organogenesis (E13.5). Tree has 1,340,794 transcriptionally profiled, annotated tips (cells), 1,142,588 dated internal nodes, rooted at zygote 1/n
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Jonas Koeppel @jonaskoeppel.bsky.social · 04/06/2026
22/n On a personal note, I’ll soon start an independent research group in the Genome Biology Unit at EMBL Heidelberg. If you enjoy this type of work and want to engineer genomes at the largest scale, please reach out! jonas-koeppel.github.io/koeppellab/ www.embl.org/groups/koepp...
jonas-koeppel.github.io
Koeppel Lab | Structural Variation and Genome Engineering
Genome engineering research led by Jonas Koeppel, developing scalable technologies to design structural variants and study mammalian genome function.
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Jonas Koeppel @jonaskoeppel.bsky.social · 04/06/2026
1/n What fraction of the human genome is essential for cells? Excited to share our preprint that explores this question by combining an unusual CRISPR system, phage promoters, and thousands of deletion launchpads. @sudpinglay.bsky.social @jshendure.bsky.social www.biorxiv.org/content/10.6...
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Fabian Theis @fabiantheis.bsky.social · 01/04/2026
New preprint with Garnett lab 🚀: from descriptive → causal single-cell atlases in CRC.We build the largest CRC atlas (>300 pts, 1.5M cells) using continual learning, and link cell states to causal drivers via Tahoe-100M, validated in organoids! www.biorxiv.org/content/10.6...
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Szen @szen.bsky.social · 25/03/2026
Check out the preprint for further details! The code is also available on GitHub. Preprint: www.biorxiv.org/content/10.6... Code: github.com/theislab/com...
biorxiv.org
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Szen @szen.bsky.social · 25/03/2026
Many thanks to our co-authors and collaborators @gabrielepicco.bsky.social , @rasa-elmentaite.bsky.social, @teichlab.bsky.social, @elhamazizi.bsky.social, and others not on here for all their help along the way too! Grateful to collaborate across wonderful teams!
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Szen @szen.bsky.social · 25/03/2026
Thank you to @soroorzadeh.bsky.social whom I'm very grateful for all her brilliance and dedication in this project! I'm much appreciative to our supervisors, @mgarnett.bsky.social and @fabiantheis.bsky.social for their support and mentorship over the years. So great to work closely on this!
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Szen @szen.bsky.social · 25/03/2026
Together, we establish a framework to bridge observational atlases with causal perturbation biology, enabling the prediction and redirection of malignant cell fates.
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Szen @szen.bsky.social · 25/03/2026
In CRC organoids, we predict and validate that MAPK inhibition drives convergence of cells along an axis of proliferative and poor prognosis endoderm-like states, linking therapeutic perturbation to cell-state transitions and clinical outcome.
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Szen @szen.bsky.social · 25/03/2026
3. Causal mapping of perturbations to cell-state transitions - Using a reference-guided modelling framework, we quantify how pharmacological perturbations drive transitions across the phenotypic CRC landscape.
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Szen @szen.bsky.social · 25/03/2026
2. Clinically and genomically anchored malignant cell states - We identify hybrid endoderm-like states associated with KRAS mutation, MSS CRC, immune exhaustion, and poor clinical outcome, together with inflammatory states linked to MSI-high disease and favourable prognosis.
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Szen @szen.bsky.social · 25/03/2026
1. A new framework for comparative atlas construction - We introduce a continual learning strategy that preserves biological variation while enabling scalable integration, allowing us to resolve cellular states across the full continuum of CRC with unprecedented resolution.
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Szen @szen.bsky.social · 25/03/2026
Importantly, we embed this atlas within a shared phenotypic space with Tahoe-100M, directly linking cell states in CRC to causal determinants, which we validate in patient-derived organoids. Some highlights from our study:
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Szen @szen.bsky.social · 25/03/2026
We developed a continual learning framework that preserves disease trajectories and inter-patient heterogeneity to construct a comparative CRC atlas (>300 patients; 1.5 million cells).
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Szen @szen.bsky.social · 25/03/2026
Current colorectal cancer (CRC) atlases incompletely capture the malignant continuum from normal tissue to metastatic disease, and current integration approaches frequently obscure tumour-specific biology by over-correcting patient variation. How do we address this?
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Szen @szen.bsky.social · 25/03/2026
New preprint from the labs of @mgarnett.bsky.social and @fabiantheis.bsky.social! A joint project with @soroorzadeh.bsky.social! 🧬🖥️ We show how to move from descriptive single-cell atlases to causal understanding of the mechanisms that define malignant cell states. biorxiv.org/content/10.6... 🧵👇
biorxiv.org
Perturbation-guided mapping of colorectal cancer cell states to causal mechanisms
Colorectal cancer (CRC) cell atlases have refined descriptive maps of tumour ecosystems, yet cross-sample integration often obscures disease-relevant patient-specific variation and remains largely correlative, limiting insight into the mechanisms and state transitions that drive progression and treatment response. Here, we develop a continual learning framework to construct a comparative single-cell CRC atlas spanning over 300 patients and 1.5 million cells, preserving inter-patient variation while aligning healthy and malignant contexts. We resolve distinct non-canonical malignant cell states, including an endoderm-like state enriched in microsatellite-stable, KRAS-mutant CRC with features of oncofetal plasticity. Cell states are recapitulated in patient-derived organoids, establishing a tractable model of reprogramming. By linking the observational atlas to a large-scale perturbation atlas using relative representations, we map perturbations that drive cells toward defined phenotypic extremes. We connect cell states to therapeutic responses, showing that MAPK inhibition induces a shift away from a proliferative phenotype and converges towards a plastic, endoderm-like state. Together, this framework moves beyond static atlases to enable mechanistic modeling of cell-state regulation and causal inference toward cell-state—directed therapies. ### Competing Interest Statement R.E is a co-founder and holds equity in Ensocell Therapeutics. In the past three years, G.P. has been a consultant for Mosaic Therapeutics. S.A.T. is a scientific advisory board member of Bioptimus, ForeSite Labs, Xaira Therapeutics, Board observer and equity holder of TransitionBio, a co-founder, consultant and Board Director of Ensocell Therapeutics, a non-executive director of 10x Genomics and a part-time employee of GlaxoSmithKline. F.J.T. consults for Immunai, CytoReason, BioTuring and Phylo Inc., GenBio, and Valinor Industries, and has ownership interest in RN.AI Therapeutics, Dermagnostix, and Cellarity. AstraZeneca, GlaxoSmithKline, and Astex Pharmaceuticals have awarded M.J.G. research grants. M.J.G. is a consultant for Bristol Myers Squibb. M.J.G. is a board director for and equity holder in Mosaic Therapeutics. The remaining authors declare no competing interests.
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Rory Maizels @rorymaizels.bsky.social · 10/03/2026
How can we hope to understand organismal development when it is controlled by huge, complex networks of interacting genes? 
One option is to move away from molecular details and focus on learning representations and rules. Check out the new perspective from me and @jamesbriscoe.bsky.social
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Szen @szen.bsky.social · 04/03/2026
Many congratulations to you and the team Maria! Very exciting work!
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Asimov Press @asimovpress.bsky.social · 26/02/2026
A Visual Guide to DNA Sequencing. Learn how different DNA sequencing technologies work, from Sanger sequencing to Illumina to nanopores. (Complete with illustrations!) Written by Evan DeTurk. Illustrated by Ella Watkins-Dulaney.
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Tamara Winter @tamara.bsky.social · 22/01/2026
I haven’t spent enough time here, but this week Stripe Press launched our newest book, Maintenance: of Everything, Part One, by the inimitable Stewart Brand: press.stripe.com/maintenance-... About the unglamorous yet civilizationally important work of maintenance and repair.
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Szen @szen.bsky.social · 22/01/2026
I have a good feeling I will! :) I've been enjoying titles from Stripe Press since the start. I fondly go back a lot to the copy of "The Art of Doing Science and Engineering" that you gave me all those years ago. All the work you get up to at Stripe Press inspires me!
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Szen @szen.bsky.social · 22/01/2026
Big congrats on the launch!! My copy just arrived today and looking forward to diving in.
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MRC Laboratory of Molecular Biology @mrclmb.ac.uk · 19/01/2026
🌐Our new LMB website is live!🌐 Fresh design, better navigation, same first-class science. Take a look around ➡️ mrclmb.ac.uk
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Matt Coelho @mattcoelho.bsky.social · 06/01/2026
new year, new job?! Exciting postdoc position opening in my lab at the Wellcome Sanger Institute. Fully funded by CRUK sanger.wd103.myworkdayjobs.com/en-US/Wellco... find out more at www.coelho-lab.com
sanger.wd103.myworkdayjobs.com
Postdoctoral Fellow – A variant to function map of lung cancer
Do you want to help us improve human health and understand life on Earth? Make your mark by shaping the future to enable or deliver life-changing science to solve some of humanity’s greatest challenge...
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Gabriele Picco @gabrielepicco.bsky.social · 28/12/2025
WRN inhibitors are being tested in patients with MSI cancers. How do tumours adapt to WRN inhibition, and can therapy stay ahead of resistance? Our latest preprint investigates how MSI tumours evolve under pressure from WRN inhibition. Highlights below.
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Leopold Parts @leopoldparts.bsky.social · 07/11/2025
tinyurl.com/GenGenFaculty GenGen is hiring group leaders! If you want to generate data at scale to train the next generation of AI models to make molecular biology predictive and programmable, we want to hear from you.
tinyurl.com
Group Leader - Generative Biology and AI
Do you want to help us improve human health and understand life on Earth? Make your mark by shaping the future to enable or deliver life-changing science to solve some of humanity’s greatest challenge...
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Leopold Parts @leopoldparts.bsky.social · 05/11/2025
New 🧬✂️ pre-print! We show that paired prime editing can efficiently generate large deletions — even >1 Mb — with high precision and at scale. We use this to perform the first pooled prime deletion screen across the human genome. 🔗 biorxiv.org/content/10.1... A short thread (by Juliane Weller)👇
biorxiv.org
Generating long deletions across the genome with pooled paired prime editing screens
Engineered deletions are a powerful probe for studying genome architecture, function, and regulation. Yet, the lack of effective methods to create them in large numbers and at multi-kilobase scale has...
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ivanraimondi.bsky.social @ivanraimondi.bsky.social · 14/10/2025
🚀 Excited to share SMART-PTA (miniaturized Primary Template Amplification) a high-throughput single-cell whole-genome amplification method that preserves clonal lineage information while enabling deep genomic and transcriptomic profiling.
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Dan Landau @landau.bsky.social · 14/10/2025
Big, beautiful trees!! SMART-PTA for whole-genome+transcriptome on thousand of single cells from the normal human esophagus 🤯 Massively scaling up the power of scWGS to build deep phylogenies and chart somatic evolution from birth throughout life. www.biorxiv.org/content/10.1...
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allydunham.bsky.social @allydunham.bsky.social · 13/10/2025
We've been screening across many DNA construct structures with variable number/size of interesting regions - e.g. spacer, extension and barcode for prime editing. There wasn't a widely used tool to process these complex structured reads so I ended up developing github.com/allydunham/d....
github.com
GitHub - allydunham/dnacomb: CLI tool for flexibly parsing structured sequence reads into count tables and comparing them to expected libraries
CLI tool for flexibly parsing structured sequence reads into count tables and comparing them to expected libraries - allydunham/dnacomb
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James Briscoe @jamesbriscoe.bsky.social · 10/10/2025
The @crick.ac.uk is recruiting Early Career Group Leaders - Lab set-up, research costs, salaries for up to 5 researchers - Support for up to 12 years - Access to our core facilities - Competitive salary - Fantastic colleagues - All areas of biology Deadline 27 Nov www.crick.ac.uk/careers-stud...
crick.ac.uk
Early career group leaders
We appoint researchers from across biology and biomedicine to set up their first groups at the Crick.
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Inigo Martincorena @imartincorena.bsky.social · 09/10/2025
In our latest paper, I wrote 2 supplementary notes (5 and 6) to briefly recap classical models, starting with Armitage&Doll and moving onto models with different types of clonal expansions. Some readers may find them of interest. [4/4] static-content.springer.com/esm/art%3A10...
static-content.springer.com
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Inigo Martincorena @imartincorena.bsky.social · 09/10/2025
A short thread. For years, I have been surprised by how much confusion our discovery of clones carrying cancer-driver mutations in normal tissues has caused in the cancer community. Typical questions like: (1) if you see these mutations in normal cells, are they really cancer drivers?... [1/4]
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Matthew Neville @mattneville.bsky.social · 08/10/2025
Now published! Our paper on: (1) Accurate sequencing of sperm at scale (2) Positive selection of spermatogenesis driver mutations across the exome (3) Offspring disease risks from male reproductive aging [1/n] www.nature.com/articles/s41...
nature.com
Sperm sequencing reveals extensive positive selection in the male germline - Nature
A combination of whole-genome NanoSeq with deep whole-exome and targeted NanoSeq is used to accurately characterize mutation rates and genes under positive selection in sperm cells.
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Inigo Martincorena @imartincorena.bsky.social · 08/10/2025
Our latest work is out in Nature today. In this paper, we introduce an improved version of NanoSeq, a duplex sequencing protocol with <5 errors per billion bp in single DNA molecules, and use it to study the somatic mutation landscape of oral epithelium in >1000 people www.nature.com/articles/s41...
nature.com
Somatic mutation and selection at population scale - Nature
A new version of nanorate DNA&nbsp;sequencing, with an&nbsp;error rate&nbsp;lower than five errors&nbsp;per billion base pairs&nbsp;and compatible with whole-exome and targeted capture, enables epidemiological-scale studies of somatic mutation and selection&nbsp;and&nbsp;the generation of high-resolution&nbsp;selection&nbsp;maps across coding and non-coding sites for many genes.
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Mathew Garnett @mgarnett.bsky.social · 20/09/2025
The Garnett Lab is excited to launch DepMap Miner, a new tool to explore cancer dependency data! Built on the Sanger DepMap, the DepMap Miner brings together multi-omic and functional datasets for over 1300 cancer cell models. Start mining data now: dataminer.depmap.sanger.ac.uk
depmap miner logo
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Wellcome Trust @wellcometrust.bsky.social · 26/06/2025
Scientists are taking the first steps towards the first synthetic human genome. We’re proud to announce £10 million funding for the SynHG project. Learn more ⤵️ wellcome.org/news/researc...
wellcome.org
Researchers take first steps to creating synthetic human genomes | Wellcome
Scientists are developing technology to create the first synthetic human chromosome. The ability to write large genomes could transform our understanding of health.
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Julio Saez-Rodriguez @juliosaezrod.bsky.social · 23/06/2025
I wrote a short piece on how becoming an IgA Nephropathy patient has changed my perspective on biomedical research, developing an appreciation for the challenges in data interpretability & availability and the importance of patient engagement www.nature.com/articles/s41...
nature.com
Leveraging data as a patient–scientist: frustrations and opportunities - Nature Reviews Nephrology
The transition from data scientist to patient–scientist has given me new perspectives into clinical research and strengthened my commitment to open science. Although limitations on data availability h...
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Helmholtz Munich @helmholtzmunich.bsky.social · 13/06/2025
Cancer Plasticity Atlas To Improve Cancer Therapies #HelmholtzMunich joins @sangerinstitute.bsky.social & @parse.bsky.social to build the Cancer Plasticity Atlas, using #AI & single-cell data to model therapy response. 👉 t1p.de/13ifi @fabiantheis.bsky.social @mgarnett.bsky.social #CancerResearch
Cancer Plasticity Atlas To Improve Cancer Therapies
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Wellcome Sanger Institute @sangerinstitute.bsky.social · 12/06/2025
Announcing a new collaboration with @parse.bsky.social @www.helmholtz-munich.de to develop a #Cancer Plasticity Atlas. The reference map will help predict the effect of cancer drugs - where resistance might develop and where to target future treatment efforts. www.sanger.ac.uk/news_item/pi...
sanger.ac.uk
Pioneering cancer plasticity atlas will help predict response to cancer therapies
Utilising novel organoid perturbation and Artificial Intelligence (AI) platforms, the aim is to create a comprehensive dataset to fuel foundational drug discovery models and cancer research.
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Isabelle Zane @isabellease.bsky.social · 23/05/2025
That’s all for #VariantEffect25! This was my first time live sketching a conference, it was a really fun and interesting experience. The science was fantastic, i learnt so much!! Big thanks to everyone who shared any of my sketches or spoke to me about them, i really appreciate it.
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Mathew Garnett @mgarnett.bsky.social · 22/05/2025
Check this out if you're interested in #crispr #baseeditor. Congratulations Cansu for creating this wonderful tool.
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Mathew Garnett @mgarnett.bsky.social · 22/05/2025
Check out the first session for the upcoming GRC conference on synthetic lethality in oncology www.grc.org/synthetic-le.... Top flight speakers - Simon Powell (MSK), Chris Lord (ICR), and plenary talk from William Sellers (Broad Inst.). What a start! It's not too late to register.
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Cansu Dinçer @cansudincer.bsky.social · 22/05/2025
🚨 Excited to share our latest preprint! @mgarnett.bsky.social @mattcoelho.bsky.social We introduce BEstimate, a flexible, comprehensive tool for designing and interpreting CRISPR-based editing experiments. #CRISPR #BEstimate #BaseEditor
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Cansu Dinçer @cansudincer.bsky.social · 13/05/2025
I'm incredibly grateful to have been selected as one of the best talks at the Downing College Postgraduate Conference 2025, an honour I shared with brilliant Ms Herrick-Doyle, from Oxford, Lincoln College, whose presentation was truly inspiring. @downingcollege.bsky.social
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Mathew Garnett @mgarnett.bsky.social · 12/05/2025
Learn about the future of synthetic lethality in oncology at the upcoming Gordon Research Conference. This is the inaugural meeting and WOW what a lineup! We have a truly phenomenal program, with top speakers from academia and industry. Check it out at the link below. www.grc.org/synthetic-le....
grc.org
2025 Synthetic Lethality Approaches in Oncology Conference GRC
The 2025 Gordon Research Conference on Synthetic Lethality Approaches in Oncology will be held in Portland, Maine. Apply today to reserve your spot.
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