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Early-life inflammation primes a T helper 2 cell-fibroblast niche in skin

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Updated November 8, 2023

Inflammation early in life can prime the local immune milieu of peripheral tissues, which can cause lasting changes in immunological tone that confer disease protection or susceptibility1. The cellular and molecular mechanisms that prompt changes in immune tone in many nonlymphoid tissues remain largely unknown. Here we find that time-limited neonatal inflammation induced by a transient reduction in neonatal regulatory T cells causes a dysregulation of subcutaneous tissue in mouse skin. This is accompanied by the selective accumulation of type 2 helper T (TH2) cells within a distinct microanatomical niche. TH2 cells are maintained into adulthood through interactions with a fibroblast population in skin fascia that we refer to as TH2-interacting fascial fibroblasts (TIFFs), which expand in response to TH2 cytokines to form subcutaneous fibrous bands. Activation of the TH2-TIFF niche due to neonatal inflammation primes the skin for altered reparative responses to wounding. Furthermore, we identify fibroblasts in healthy human skin that express the TIFF transcriptional signature and detect these cells at high levels in eosinophilic fasciitis, an orphan disease characterized by inflammation and fibrosis of the skin fascia. Taken together, these data define a previously unidentified TH2 cell niche in skin and functionally characterize a disease-associated fibroblast population. The results also suggest a mechanism of immunological priming whereby inflammation early in life creates networks between adaptive immune cells and stromal cells to establish an immunological set-point in tissues that is maintained throughout life.

Ian C BoothbyUniversity of California at San Fransciscoian.boothby@ucsf.edu
Michael D RosenblumUniversity of California at San FransciscoMichael.Rosenblum@ucsf.edu
Ian C Boothby1
Maxime J Kinet1
Devi P Boda1
Elaine Y Kwan1
Sean Clancy1
Jarish N Cohen1
Ireneusz Habrylo1
Margaret M Lowe1
Mariela Pauli1
Ashley E Yates1
Jamie D Chan1
Hobart W Harris1
Isaac M Neuhaus1
Timothy H McCalmont1
Ari B Molofsky1
Michael D Rosenblum1
1University of California at San Franscisco
Rachel Schwartz

To reference this project, please use the following link:

https://explore.data.humancellatlas.org/projects/031980e6-9f2b-433a-8f6e-081bd9aad0a3
None
INSDC Project Accessions:GEO Series Accessions:INSDC Study Accessions:

Atlas

SkinSkin v1.0

Analysis Portals

None

Project Label

EarlyInflammationSkin

Species

2 species

Sample Type

specimens

Anatomical Entity

skin of body

Organ Part

5 organ parts

Selected Cell Types

stromal cell

Disease Status (Specimen)

2 disease statuses

Disease Status (Donor)

2 disease statuses

Development Stage

2 development stages

Library Construction Method

2 library construction methods

Nucleic Acid Source

single cell

Paired End

false

Analysis Protocol

analysis_protocol_1

File Format

3 file formats

Cell Count Estimate

14.2k

Donor Count

6
fastq.gz60 file(s)tar1 file(s)xlsx1 file(s)
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