Normal view
-
Cell
-
Human interpretable grammar encodes multicellular systems biology models to democratize virtual cell laboratories
We developed a plain text modeling language—a cell behavior hypothesis grammar—to easily build virtual cell models and connect them to data, helping scientists to unlock the hidden dynamics of tissues. We provide examples showing how to use them in virtual experiments exploring how cancer responds to the cells in its environment and how the brain forms layers in development.
-
MRD
-
Circulating tumour cells & circulating tumour DNA in patients with resectable colorectal liver metastases (MIRACLE): a prospective, observational biomarker study
EClinicalMedicine. 2025 Aug 12;87:103406. doi: 10.1016/j.eclinm.2025.103406. eCollection 2025 Sep.ABSTRACTBACKGROUND: Recurrence risk after curative surgery for colorectal liver metastases (CRLM) remains high, underlining the need to identify prognostic markers enabling more individualised treatment approaches.METHODS: In the MIRACLE, a prospective, observational biomarker study, a total of 188 patients with isolated, resectable CRLM without (neo)adjuvant chemotherapy were included between Octob
Circulating tumour cells & circulating tumour DNA in patients with resectable colorectal liver metastases (MIRACLE): a prospective, observational biomarker study
EClinicalMedicine. 2025 Aug 12;87:103406. doi: 10.1016/j.eclinm.2025.103406. eCollection 2025 Sep.
ABSTRACT
BACKGROUND: Recurrence risk after curative surgery for colorectal liver metastases (CRLM) remains high, underlining the need to identify prognostic markers enabling more individualised treatment approaches.
METHODS: In the MIRACLE, a prospective, observational biomarker study, a total of 188 patients with isolated, resectable CRLM without (neo)adjuvant chemotherapy were included between October 2015 and December 2021. Blood samples were collected before surgery (baseline) and three weeks after surgery. The primary objective was to assess the potential association between postoperative circulating tumour DNA (ctDNA) detection and recurrence of disease for patients with resectable CRLM within one year after resection. The secondary objective was the association between recurrence of disease within one year and detection of circulating tumour cells (CTCs). Baseline ctDNA was measured by next generation sequencing using a targeted panel (Oncomine Colon cell-free DNA assay) and postoperatively by digital PCR on genetic variants found preoperatively with the Oncomine panel. CTCs were enumerated using the FDA-approved CellSearch system.
FINDINGS: ctDNA was detected in 117/187 patients (63%) at baseline, and 28/104 evaluable patients (27%) still had detectable ctDNA postoperatively. CTC enumeration resulted in positivity for 37/183 patients (20%) at baseline and 14/158 patients (9%) postoperatively. No association was found between 1-year recurrence-free survival (RFS) and the presence of CTCs or ctDNA at baseline. In contrast, patients with postoperative undetectable ctDNA had a significantly improved 1-year RFS compared to patients with postoperative ctDNA (54% [95% CI 44%-67%] vs. 25% [95% CI 13%-47%], log-rank p = 0.0011). Similarly, patients with postoperative detectable CTCs had a significantly shorter 1-year RFS compared to patients without postoperative CTCs (15% [95% CI 4%-55%] vs. 53% [95% CI 45%-62%], log-rank p 0.0004). Also in multivariable analysis, detectable ctDNA and CTCs after surgery remained independently associated with a shorter 1-year RFS (HR 2.35; 95% CI 1.34-4.11; p = 0.0028 and HR 2.98; 95% CI 1.56-5.71; p = 0.0010, respectively).
INTERPRETATION: This is the first study conducted in patients with resectable CRLM without (neo)adjuvant chemotherapy, which demonstrates the impact of postoperative detectable circulating tumour load on 1-year RFS. Postoperative ctDNA and CTC detection both represent strong, independent predictors for a shorter RFS after local treatment, as opposed to preoperative detection.
FUNDING: This work was supported by KWF Kankerbestrijding (Dutch Cancer Society, EMCR 2014-6340).
PMID:40838198 | PMC:PMC12361997 | DOI:10.1016/j.eclinm.2025.103406
-
Nature Biotechnology - Issue - nature.com science feeds
-
Redefining druggable targets with artificial intelligence
Nature Biotechnology, Published online: 19 August 2025; doi:10.1038/s41587-025-02770-1A vast landscape of ‘undruggable’ cancer targets remains beyond the reach of conventional therapeutic agents. Recent advances in artificial intelligence (AI), however, are challenging this paradigm. Synthesizing insights from a Cancer Moonshot workshop, we argue that systemically addressing the undruggable target space with AI requires a new conceptual framework. We highlight the failure of current target taxon
Redefining druggable targets with artificial intelligence
Nature Biotechnology, Published online: 19 August 2025; doi:10.1038/s41587-025-02770-1
A vast landscape of ‘undruggable’ cancer targets remains beyond the reach of conventional therapeutic agents. Recent advances in artificial intelligence (AI), however, are challenging this paradigm. Synthesizing insights from a Cancer Moonshot workshop, we argue that systemically addressing the undruggable target space with AI requires a new conceptual framework. We highlight the failure of current target taxonomies and the need for benchmarking datasets, and re-evaluate clinical validation for novel AI-driven modalities.-
(Multiomics OR Omics) AND (Lung OR gastric OR Hepatocellular)
-
Thor: a platform for cell-level investigation of spatial transcriptomics and histology
Nat Commun. 2025 Aug 5;16(1):7178. doi: 10.1038/s41467-025-62593-1.ABSTRACTSpatial transcriptomics links gene expression with tissue morphology, however, current tools often prioritize genomic analysis, lacking integrated image interpretation. To address this, we present Thor, a comprehensive platform for cell-level analysis of spatial transcriptomics and histological images. Thor employs an anti-shrinking Markov diffusion method to infer single-cell spatial transcriptome from spot-level data, e
Thor: a platform for cell-level investigation of spatial transcriptomics and histology
Nat Commun. 2025 Aug 5;16(1):7178. doi: 10.1038/s41467-025-62593-1.
ABSTRACT
Spatial transcriptomics links gene expression with tissue morphology, however, current tools often prioritize genomic analysis, lacking integrated image interpretation. To address this, we present Thor, a comprehensive platform for cell-level analysis of spatial transcriptomics and histological images. Thor employs an anti-shrinking Markov diffusion method to infer single-cell spatial transcriptome from spot-level data, effectively combining gene expression and cell morphology. The platform includes 10 modular tools for genomic and image-based analysis, and is paired with Mjolnir, a web-based interface for interactive exploration of gigapixel images. Thor is validated on simulated data and multiple spatial platforms (ISH, MERFISH, Xenium, Stereo-seq). Thor characterizes regenerative signatures in heart failure, screens breast cancer hallmarks, resolves fine layers in mouse olfactory bulb, and annotates fibrotic heart tissue. In high-resolution Visium HD data, it enhances spatial gene patterns aligned with histology. By bridging transcriptomic and histological analysis, Thor enables holistic tissue interpretation in spatial biology.
PMID:40764306 | PMC:PMC12325965 | DOI:10.1038/s41467-025-62593-1
-
Nature - Issue - nature.com science feeds
-
Whole-genome sequencing of 490,640 UK Biobank participants
Nature, Published online: 06 August 2025; doi:10.1038/s41586-025-09272-9A study reports whole-genome sequences for 490,640 participants from the UK Biobank and combines these data with phenotypic data to provide new insights into the relationship between human variation and sequence variation.
Whole-genome sequencing of 490,640 UK Biobank participants
Nature, Published online: 06 August 2025; doi:10.1038/s41586-025-09272-9
A study reports whole-genome sequences for 490,640 participants from the UK Biobank and combines these data with phenotypic data to provide new insights into the relationship between human variation and sequence variation.-
Cell
-
Personalized molecular signatures of insulin resistance and type 2 diabetes
Muscle samples from over 120 people were analyzed to identify molecular patterns linked to insulin resistance, a key feature of type 2 diabetes. The findings reveal new insights that could help tailor more personalized and effective treatments for the disease.
Personalized molecular signatures of insulin resistance and type 2 diabetes
-
Cell
-
The generative era of medical AI
Significant progress has been made in recent years in applying large language models and multimodal artificial intelligence to health and medicine, transforming diagnostics, patient interactions, and medical forecasting, although challenges like privacy, regulation, and system integration remain before widespread clinical adoption.
The generative era of medical AI
-
Nature - Issue - nature.com science feeds
-
Boys surpass girls in maths in the first year of school
Nature, Published online: 24 June 2025; doi:10.1038/d41586-025-01717-5A gender gap in mathematical ability arises shortly after children begin school — irrespective of the type of school they attend and their socio-economic background.
Boys surpass girls in maths in the first year of school
Nature, Published online: 24 June 2025; doi:10.1038/d41586-025-01717-5
A gender gap in mathematical ability arises shortly after children begin school — irrespective of the type of school they attend and their socio-economic background.-
Cell
-
20 years of histone lysine demethylases: From discovery to the clinic and beyond
Histone lysine demethylases are conserved enzymes that remove methyl groups from histone proteins and play important roles in development and disease. On the 20th anniversary of their discovery, this Review provides an in-depth view of their functions and roles across various contexts as well as therapeutic options to be developed for diseases related to these enzymes.
20 years of histone lysine demethylases: From discovery to the clinic and beyond
-
Cell
-
Systems-level immunomonitoring in children with solid tumors to enable precision medicine
In a population-based cohort of 191 children with diverse solid tumors, systems-level analyses unravel immune variation with age and tumor type and provide a reference for future precision immunotherapies tailored for the evolving immune systems of children.
Systems-level immunomonitoring in children with solid tumors to enable precision medicine
-
Nature - Issue - nature.com science feeds
-
Rare disease gene association discovery in the 100,000 Genomes Project
Nature, Published online: 26 February 2025; doi:10.1038/s41586-025-08623-wA rare variant burden analytical framework for Mendelian diseases was developed and applied to data from the 100,000 Genomes Project, identifying 69 probable new disease–gene associations.
Rare disease gene association discovery in the 100,000 Genomes Project
Nature, Published online: 26 February 2025; doi:10.1038/s41586-025-08623-w
A rare variant burden analytical framework for Mendelian diseases was developed and applied to data from the 100,000 Genomes Project, identifying 69 probable new disease–gene associations.-
(Multiomics OR Omics) AND (Lung OR gastric OR Hepatocellular)
-
A statistical framework for multi-trait rare variant analysis in large-scale whole-genome sequencing studies
Nat Comput Sci. 2025 Feb 7. doi: 10.1038/s43588-024-00764-8. Online ahead of print.ABSTRACTLarge-scale whole-genome sequencing (WGS) studies have improved our understanding of the contributions of coding and noncoding rare variants to complex human traits. Leveraging association effect sizes across multiple traits in WGS rare variant association analysis can improve statistical power over single-trait analysis, and also detect pleiotropic genes and regions. Existing multi-trait methods have limi
A statistical framework for multi-trait rare variant analysis in large-scale whole-genome sequencing studies
Nat Comput Sci. 2025 Feb 7. doi: 10.1038/s43588-024-00764-8. Online ahead of print.
ABSTRACT
Large-scale whole-genome sequencing (WGS) studies have improved our understanding of the contributions of coding and noncoding rare variants to complex human traits. Leveraging association effect sizes across multiple traits in WGS rare variant association analysis can improve statistical power over single-trait analysis, and also detect pleiotropic genes and regions. Existing multi-trait methods have limited ability to perform rare variant analysis of large-scale WGS data. We propose MultiSTAAR, a statistical framework and computationally scalable analytical pipeline for functionally informed multi-trait rare variant analysis in large-scale WGS studies. MultiSTAAR accounts for relatedness, population structure and correlation among phenotypes by jointly analyzing multiple traits, and further empowers rare variant association analysis by incorporating multiple functional annotations. We applied MultiSTAAR to jointly analyze three lipid traits in 61,838 multi-ethnic samples from the Trans-Omics for Precision Medicine (TOPMed) Program. We discovered and replicated new associations with lipid traits missed by single-trait analysis.
PMID:39920506 | DOI:10.1038/s43588-024-00764-8
-
(Multiomics OR Omics) AND (Lung OR gastric OR Hepatocellular)
-
Genomic and phenotypic correlates of mosaic loss of chromosome Y in blood
Am J Hum Genet. 2025 Jan 6:S0002-9297(24)00456-7. doi: 10.1016/j.ajhg.2024.12.014. Online ahead of print.ABSTRACTMosaic loss of Y (mLOY) is the most common somatic chromosomal alteration detected in human blood. The presence of mLOY is associated with altered blood cell counts and increased risk of Alzheimer disease, solid tumors, and other age-related diseases. We sought to gain a better understanding of genetic drivers and associated phenotypes of mLOY through analyses of whole-genome sequenci
Genomic and phenotypic correlates of mosaic loss of chromosome Y in blood
Am J Hum Genet. 2025 Jan 6:S0002-9297(24)00456-7. doi: 10.1016/j.ajhg.2024.12.014. Online ahead of print.
ABSTRACT
Mosaic loss of Y (mLOY) is the most common somatic chromosomal alteration detected in human blood. The presence of mLOY is associated with altered blood cell counts and increased risk of Alzheimer disease, solid tumors, and other age-related diseases. We sought to gain a better understanding of genetic drivers and associated phenotypes of mLOY through analyses of whole-genome sequencing (WGS) of a large set of genetically diverse males from the Trans-Omics for Precision Medicine (TOPMed) program. We show that haplotype-based calling methods can be used with WGS data to successfully identify mLOY events. This approach enabled us to identify differences in mLOY frequencies across populations defined by genetic similarity, revealing a higher frequency of mLOY in the European (EUR) ancestry group compared to other ancestries. We identify multiple loci associated with mLOY susceptibility and show that subsets of human hematopoietic stem cells are enriched for the activity of mLOY susceptibility variants. Finally, we found that certain alleles on chromosome Y are more likely to be lost than others in detectable mLOY clones.
PMID:39809269 | DOI:10.1016/j.ajhg.2024.12.014
-
Nature - Issue - nature.com science feeds
-
Functional evaluation and clinical classification of <i>BRCA2</i> variants
Nature, Published online: 08 January 2025; doi:10.1038/s41586-024-08388-8Results from a comprehensive evaluation of the function of BRCA2 variants, particularly variants of uncertain significance, provide a useful resource to improve the clinical management of individuals who carry such genetic variants.
Functional evaluation and clinical classification of <i>BRCA2</i> variants
Nature, Published online: 08 January 2025; doi:10.1038/s41586-024-08388-8
Results from a comprehensive evaluation of the function of BRCA2 variants, particularly variants of uncertain significance, provide a useful resource to improve the clinical management of individuals who carry such genetic variants.-
Cell
-
How to build the virtual cell with artificial intelligence: Priorities and opportunities
Advances in AI and omics enable the creation of AI virtual cells (AIVCs)—multi-scale, multimodal neural network models that simulate molecules, cells, and tissues across diverse states. This vision outlines their design and collaborative development, promising to transform biological research through high-fidelity simulations, accelerating discoveries, and fostering interdisciplinary open science collaborations.
How to build the virtual cell with artificial intelligence: Priorities and opportunities
-
Nature - Issue - nature.com science feeds
-
Bridge RNAs direct programmable recombination of target and donor DNA
Nature, Published online: 26 June 2024; doi:10.1038/s41586-024-07552-4A bispecific non-coding RNA expressed by the IS110 family of mobile genetic elements forms the basis of a programmable genome-editing system that enables the insertion, excision or inversion of specific target DNA sequences.
Bridge RNAs direct programmable recombination of target and donor DNA
Nature, Published online: 26 June 2024; doi:10.1038/s41586-024-07552-4
A bispecific non-coding RNA expressed by the IS110 family of mobile genetic elements forms the basis of a programmable genome-editing system that enables the insertion, excision or inversion of specific target DNA sequences.-
Cell
-
DrugMap: A quantitative pan-cancer analysis of cysteine ligandability
DrugMap serves as a roadmap to develop covalent ligands for oncogenic drivers.
DrugMap: A quantitative pan-cancer analysis of cysteine ligandability
-
Oncogene - Issue - nature.com science feeds
-
A prismatic view of the epigenetic-metabolic regulatory axis in breast cancer therapy resistance
Oncogene, Published online: 08 May 2024; doi:10.1038/s41388-024-03054-9A prismatic view of the epigenetic-metabolic regulatory axis in breast cancer therapy resistance
A prismatic view of the epigenetic-metabolic regulatory axis in breast cancer therapy resistance
Oncogene, Published online: 08 May 2024; doi:10.1038/s41388-024-03054-9
A prismatic view of the epigenetic-metabolic regulatory axis in breast cancer therapy resistance-
Nature - Issue - nature.com science feeds
-
Tumor-selective activity of RAS-GTP inhibition in pancreatic cancer
Nature, Published online: 08 April 2024; doi:10.1038/s41586-024-07379-zTumor-selective activity of RAS-GTP inhibition in pancreatic cancer
Tumor-selective activity of RAS-GTP inhibition in pancreatic cancer
Nature, Published online: 08 April 2024; doi:10.1038/s41586-024-07379-z
Tumor-selective activity of RAS-GTP inhibition in pancreatic cancer-
Cell Death Discovery nature.com science feeds
-
Potential role of lipophagy impairment for anticancer effects of glycolysis-suppressed pancreatic ductal adenocarcinoma cells
Cell Death Discovery, Published online: 05 April 2024; doi:10.1038/s41420-024-01933-4Potential role of lipophagy impairment for anticancer effects of glycolysis-suppressed pancreatic ductal adenocarcinoma cells
Potential role of lipophagy impairment for anticancer effects of glycolysis-suppressed pancreatic ductal adenocarcinoma cells
Cell Death Discovery, Published online: 05 April 2024; doi:10.1038/s41420-024-01933-4
Potential role of lipophagy impairment for anticancer effects of glycolysis-suppressed pancreatic ductal adenocarcinoma cells