Completed Cells, Biochemistry & Physiology Genetics & Molecular Biology

An Extended Pilot for the Human Cell Atlas: Adult tissues, human development and inflammation-mediated pathologies

In plain English

AI plain-English summary

A UK team will map the molecular identities and spatial positions of hundreds of thousands of individual human cells across multiple adult and fetal tissues, then compare those healthy reference maps with samples from patients with inflammatory diseases. The Human Cell Atlas aims to catalogue every cell type in the body, but building a complete, high-quality reference requires standardised methods and large-scale infrastructure. This project fills that gap by establishing the UK’s technical capacity to generate consistent, spatially-resolved cell data from diverse tissues—adult organs, fetal material, and diseased skin—using hardened protocols for single-cell RNA sequencing and tissue imaging. If successful, the project will produce a public, healthy-cell reference that researchers worldwide can use to pinpoint exactly which cells and genes go wrong in immune-mediated disorders such as psoriasis, rheumatoid arthritis, or inflammatory bowel disease. That could accelerate diagnosis and drug target discovery for conditions affecting millions. The work is primarily fundamental science—creating a foundational resource rather than a direct therapy—but past cell-atlas efforts have already revealed unexpected cell types and disease mechanisms, making such reference maps a prerequisite for future precision medicine.

View original technical description
The Human Cell Atlas (HCA) is an international, collaborative effort that “…aims to define all human cell types in terms of their distinctive patterns of gene expression, physiological states, developmental trajectories, and location”. Here, we will contribute directly to the first phase of the HCA by forming an ‘extended pilot’ to implement UK infrastructure for large-scale, high quality human cell atlas experiments. We will generate a high-level atlas, with spatial resolution, for multiple adult human tissues along with matched data from human fetal material. We will then illustrate the power of a deep and focused investigation of a single tissue (skin) to produce highly-detailed data describing its cellular composition and spatial organisation. Finally, for selected tissues that have been profiled in adults and fetal material, we will analyse samples from immune-mediated disorders as a comparison with our reference data to gain deeper understanding of the pathological mechanisms. This will demonstrate the utility of the HCA as a ‘healthy reference’ for comparison with disease. Throughout, we will generate profound biological insight from primary human cells and lay a foundation of technology development and optimisation with a set of hardened and scalable methods for single-cell RNA-sequencing, spatially-resolved gene expression, and tissue imaging.

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Researchers

John Marioni (EPMC Awardee)Kourosh Saeb-Parsy (EPMC Awardee)Muzlifah Haniffa (EPMC Awardee)

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Original classification

Strategic Support: Science

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