Published August 31, 2025 | Version v1

A mesothelial differentiation gateway drives fibrosis

Description

Internal organs are encased by a supportive epithelial monolayer of mesodermal origin, termed mesothelium. The nature, evolution and function of mesothelial cells, and their genetic regulation impacting disease development are insufficiently understood.

Here, we generate a comprehensive organ-wide single-cell transcriptomic compendium of mesothelium across healthy and diseased mouse and human organs, delineating the evolution of conserved activated states of mesothelial cells in response to disease. We uncover genetic drives behind each cell state and reveal a conserved metabolic gate into multipotent proteolytic, inflammatory and fibrotic cell differentiation, in mouse and human. Using lung injury models in mice, in combination with mesothelial cell-specific viral approaches, we show that direct metabolic reprogramming using Ifi27l2a and Crip1 on organ surfaces, blocks multipotent differentiation and protects mouse lungs from fibrotic disease. These findings place mesothelial cells as cellular exemplars and gateway to fibrotic disease, opening new translational approaches to subvert fibrosis across a range of clinical indications.

Files

Atlas_generation.ipynb

Files (48.3 GB)

Name Size
md5:d97f66544bc279f5112029fee1ff4e00
785.7 kB Preview Download
md5:b2877e33fadbeff348455b84c84b97fb
289.4 MB Preview Download
md5:253548556bbeb18bf4ac29ad304ab619
16.9 GB Download
md5:b61fc36b406245655ae3388439b79ac5
6.1 GB Download
md5:35694113831dcd2de5dfb9d30fd040e6
42.6 MB Preview Download
md5:3625d201f3cff8cb293203bbaa17d10d
141.9 MB Preview Download
md5:aaa62d26f40867f89c13ca903a290edc
11.5 MB Preview Download
md5:ba3728556b4d457257c6273ae80ee2e1
17.7 GB Download
md5:f93fc146c78e5fa0d9aa533195c259a5
7.2 GB Download

Additional details

Dates

Created
2025-08