Upcoming seminar: 🎓Dr Masahiro Ono @monotockylab.bsky.social, @imperialcollegeldn.bsky.social 📢‘Measuring Biological Time in T Cells: Integrated Experimental and Computational Approaches to Decoding Dynamic Immune Responses’ 📅4-5 PM, Thu 2 Jul 📍JCBC @cambridgebiocampus.bsky.social #CITIID
Masahiro Ono @ Tocky Lab
@monotockylab.bsky.social
Immunologist | Creator and Developer of Tocky & GatingTree | Integrative Experimental and Computational Immunology | T cells | Cancer Immunology | Immunotherapy Website: https://monotockylab.github.io/ GitHub: github.com/MonoTockyLab
Thank you for highlighting our work. It has been a pleasure to develop this research through the Centre’s support for Imperial–ICR collaboration.
New preprint from researchers at @imperialsci.bsky.social and @icr.ac.uk introduces CanonicalTockySeq - exploring how #TCells change over time during #immunotherapy to better understand treatment responses. ➡️ buff.ly/HUSjiDM @monotockylab.bsky.social @biorxivpreprint.bsky.social #CRUKFunded
We’ve also released the mCanonicalTockySeq R package! 📦💻 monotockylab.github.io/mCanonicalTo... It reconstructs temporally resolved developmental state spaces by integrating Tocky signalling history into scRNA-seq workflows.
Delighted to share our new bioRxiv preprint: biorxiv.org/content/10.6... We present mCanonicalTockySeq, which uses the Nr4a3-Tocky system to anchor single-cell transcriptomes in experimental time, allowing resolution of time-dependent thymic development in both mice and humans.
Delighted to share our new bioRxiv preprint: biorxiv.org/content/10.6... We present mCanonicalTockySeq, which uses the Nr4a3-Tocky system to anchor single-cell transcriptomes in experimental time, allowing resolution of time-dependent thymic development in both mice and humans.
I am pleased to share the release of CanonicalTockySeq: Canonical Tocky Analysis for Temporal Gradient on a Transcriptomic Manifold. This package provides tools for analysing temporal gradients on transcriptomic manifolds within the Tocky framework. monotockylab.github.io/CanonicalToc...
Delighted to share our new bioRxiv preprint: www.biorxiv.org/content/10.6... We present a new approach to resolve T cell temporal states at single-cell resolution in cancer immunotherapy. My thanks to all co-authors and collaborators. #Immunology #CancerResearch
@biorxivpreprint.bsky.social @masahirono.bsky.social @monotockylab.bsky.social @imperialcollegeldn.bsky.social Temporal Mechanisms of T-Cell Fate Decisions under Immune Checkpoint Blockade Resolved by CanonicalTockySeq www.biorxiv.org/content/10.6...
I am pleased to share the release of CanonicalTockySeq: Canonical Tocky Analysis for Temporal Gradient on a Transcriptomic Manifold. This package provides tools for analysing temporal gradients on transcriptomic manifolds within the Tocky framework. monotockylab.github.io/CanonicalToc...
Delighted to share our new bioRxiv preprint: www.biorxiv.org/content/10.6... We present a new approach to resolve T cell temporal states at single-cell resolution in cancer immunotherapy. My thanks to all co-authors and collaborators. #Immunology #CancerResearch
Honoured that our T-cell immunotherapy research at Imperial is featured in The Telegraph via Cancer Research UK. Using Tocky, we reveal the behaviour of therapy-responsive and anti-cancer T cells, aiming to further improve immunotherapy approaches to melanoma. www.telegraph.co.uk/science/canc...
How good bugs are fighting back against skin cancer
The answer lies in the microbiome. Read about the breakthrough research offering new hope
telegraph.co.uk
Honoured that our T-cell immunotherapy research at Imperial is featured in The Telegraph via Cancer Research UK. Using Tocky, we reveal the behaviour of therapy-responsive and anti-cancer T cells, aiming to further improve immunotherapy approaches to melanoma. www.telegraph.co.uk/science/canc...
How good bugs are fighting back against skin cancer
The answer lies in the microbiome. Read about the breakthrough research offering new hope
telegraph.co.uk
🚀 Thrilled to share our new paper using Deep Learning and Tocky! www.nature.com/articles/s41... 👉 We build on our original Tocky method by integrating CRISPR & deep learning to decode transcriptional dynamics. 🔥 7 years of work - toward data-driven immunology!
Machine learning-assisted decoding of temporal transcriptional dynamics via fluorescent timer - Nature Communications
Transcriptional dynamics govern gene regulation across development and immunity. Here, the authors combine CRISPR-engineered Timer reporter mice with machine learning to reveal age- and enhancer-depen...
nature.com
🚀 Our next-generation cytometry tool GatingTree now published in #CytometryPartA! 🔗 onlinelibrary.wiley.com/doi/10.1002/... GatingTree enables systematic analysis of high-dimensional flow cytometry data, without relying on dimensionality reduction. 💻
GatingTree: Pathfinding Analysis of Group‐Specific Effects in Cytometry Data
Advancements in cytometry technologies have led to a remarkable increase in the number of markers that can be analyzed simultaneously, presenting significant challenges in data analysis. Traditional ....
onlinelibrary.wiley.com
🚀 New paper out! Our ConvNet + Grad-CAM approach decodes Fluorescent Timer (Tocky) data at single-cell resolution. Using Foxp3 Tocky, we reveal CNS2-controlled and developmental transcriptional dynamics. Built on 7 years of work with AI and CRISPR! www.nature.com/articles/s41...
Machine learning-assisted decoding of temporal transcriptional dynamics via fluorescent timer - Nature Communications
Transcriptional dynamics govern gene regulation across development and immunity. Here, the authors combine CRISPR-engineered Timer reporter mice with machine learning to reveal age- and enhancer-depen...
nature.com
Bored of black-box UMAP and clustering in #Cytometry? GatingTree skips such methods, directly analyses high-dimensional data, builds reproducible tree paths across markers, and reveals group-specific effects. No dimensionality reduction, just interpretable gates. 🌳
🚀 Our next-generation cytometry tool GatingTree now published in #CytometryPartA! 🔗 onlinelibrary.wiley.com/doi/10.1002/... GatingTree enables systematic analysis of high-dimensional flow cytometry data, without relying on dimensionality reduction. 💻
GatingTree: Pathfinding Analysis of Group‐Specific Effects in Cytometry Data
Advancements in cytometry technologies have led to a remarkable increase in the number of markers that can be analyzed simultaneously, presenting significant challenges in data analysis. Traditional ....
onlinelibrary.wiley.com
🚀Thrilled to announce our new Tocky-CRISPR-Deep Learning paper! ✅ConvNet + Grad-CAM decodes fluorescent timer (Tocky) data ✅Enables single-cell identification of enhancer-dependent Foxp3 transcription dynamics www.nature.com/articles/s41... 🔥A step toward data-driven immunology!
🚀Thrilled to announce our new Tocky-CRISPR-Deep Learning paper! ✅ConvNet + Grad-CAM decodes fluorescent timer (Tocky) data ✅Enables single-cell identification of enhancer-dependent Foxp3 transcription dynamics www.nature.com/articles/s41... 🔥A step toward data-driven immunology!
🚀 New paper out! Our ConvNet + Grad-CAM approach decodes Fluorescent Timer (Tocky) data at single-cell resolution. Using Foxp3 Tocky, we reveal CNS2-controlled and developmental transcriptional dynamics. Built on 7 years of work with AI and CRISPR! www.nature.com/articles/s41...
Machine learning-assisted decoding of temporal transcriptional dynamics via fluorescent timer - Nature Communications
Transcriptional dynamics govern gene regulation across development and immunity. Here, the authors combine CRISPR-engineered Timer reporter mice with machine learning to reveal age- and enhancer-depen...
nature.com
Excellent work from my long-term collaborator of over 17 years, @Sato_Y_Lab (on X) 🔬 on Runx/HTLV-1! The start of our collaboration goes back to my own Runx paper in 2007: www.nature.com/articles/nat... This Runx/HTLV-1 study is the latest milestone 🔬. Honoured to be a co-author 📄✨
🚨Out now! An intragenic open chromatin region in human T cell leukemia virus type 1 functions as a transcriptional silencer and regulates transcriptional burst by recruiting the host transcription factor RUNX. #MicroSky 🧬🦠 www.nature.com/articles/s41...
Excellent work from my long-term collaborator of over 17 years, @Sato_Y_Lab (on X) 🔬 on Runx/HTLV-1! The start of our collaboration goes back to my own Runx paper in 2007: www.nature.com/articles/nat... This Runx/HTLV-1 study is the latest milestone 🔬. Honoured to be a co-author 📄✨
🚨Out now! An intragenic open chromatin region in human T cell leukemia virus type 1 functions as a transcriptional silencer and regulates transcriptional burst by recruiting the host transcription factor RUNX. #MicroSky 🧬🦠 www.nature.com/articles/s41...
What if Tregs are not a separate lineage, but part of spontaneously activated T cells? In this work, we integrate this idea with our recent findings: Adult T cell leukemia (ATL) is not 'Treg cancer', challenging the current concept of Treg as a distinct entity.🧵(1/4) academic.oup.com/discovimmuno...
Spectrum of Treg and self-reactive T cells: single cell perspectives from old friend HTLV-1
Summary. Despite extensive regulatory T cell (Treg) research, fundamental questions on in vivo dynamics remain to be answered. The current study aims to di
academic.oup.com
What if Tregs are not a separate lineage, but part of spontaneously activated T cells? In this work, we integrate this idea with our recent findings: Adult T cell leukemia (ATL) is not 'Treg cancer', challenging the current concept of Treg as a distinct entity.🧵(1/4) academic.oup.com/discovimmuno...
Spectrum of Treg and self-reactive T cells: single cell perspectives from old friend HTLV-1
Summary. Despite extensive regulatory T cell (Treg) research, fundamental questions on in vivo dynamics remain to be answered. The current study aims to di
academic.oup.com
Explore how HTLV-1 hijacks self-reactive T cells via Periodic TCR signalling - a fresh lens on Treg biology and immune regulation. Game-changing insights from single-cell analysis. 👇 📄 Ono & Satou (2024) 🧬 bit.ly/42gRcuR
🔍 New Blog Post: The Dogma of Treg and The True Origins of Tocky monotockylab.github.io/blog/2025/As... The blog explores what is certain in Treg immunology and what is not, unraveling the past two decades of my research life that have been triggered by the non-reproducible evidence in Treg biology.
Masahiro Ono | The Dogma of Treg and The True Origins of Tocky
What is Preventing Advancements and Whats is Required for the Future?
monotockylab.github.io
www.linkedin.com/posts/cancer...
Dr Masahiro Ono at Imperial College London is working to develop ways to… | Cancer Research UK (CRUK)
Dr Masahiro Ono at Imperial College London is working to develop ways to activate immune cells more effectively in the lab, so that we can make immunotherapy treatments more successful for people with...
linkedin.com
www.linkedin.com/posts/cancer...
Dr Masahiro Ono at Imperial College London is working to develop ways to… | Cancer Research UK (CRUK)
Dr Masahiro Ono at Imperial College London is working to develop ways to activate immune cells more effectively in the lab, so that we can make immunotherapy treatments more successful for people with...
linkedin.com
Single-cell analysis reveals how periodic TCR signalling defines the spectrum of Treg and self-reactive T cells—and how HTLV-1 may hijack this for immune evasion and transformation. The study fills key gaps in Treg biology and viral #immunology. 🔗 bit.ly/42gRcuR
🔍 New Blog Post: The Dogma of Treg and The True Origins of Tocky monotockylab.github.io/blog/2025/As... The blog explores what is certain in Treg immunology and what is not, unraveling the past two decades of my research life that have been triggered by the non-reproducible evidence in Treg biology.
Masahiro Ono | The Dogma of Treg and The True Origins of Tocky
What is Preventing Advancements and Whats is Required for the Future?
monotockylab.github.io