Single-cell RNA landscape of the osteoimmunology microenvironment in periodontitis

Access Granted
Updated June 24, 2025

Single-cell RNA sequencing (scRNA-seq) enables specific profiling of cell populations at single-cell resolution. The osteoimmunology microenvironment in the occurrence and development of periodontitis remains poorly understood at the single-cell level. In this study, we used single-cell transcriptomics to comprehensively reveal the complexities of the molecular components and differences with counterparts residing in periodontal tissues. Methods: We performed scRNA-seq to identify 51248 single cells from healthy controls (n=4), patients with severe chronic periodontitis (n=5), and patients with severe chronic periodontitis after initial periodontal therapy within 1 month (n=3). Uniform manifold approximation and projection (UMAP) were further conducted to explore the cellular composition of periodontal tissues. Pseudotime cell trajectory and RNA velocity analysis, combined with gene enrichment analysis were used to reveal the molecular pathways underlying cell fate decisions. CellPhoneDB were performed to identify ligand-receptor pairs among the major cell types in the osteoimmunology microenvironment of periodontal tissues. Results: A cell atlas of the osteoimmunology microenvironment in periodontal tissues was characterized and included ten major cell types, such as fibroblasts, monocytic cells, endothelial cells, and T and B cells. The enrichment of TNFRSF21+ fibroblasts with high expression of CXCL1, CXCL2, CXCL5, CXCL6, CXCL13, and IL24 was detected in patients with periodontitis compared to healthy individuals. The fractions of CD55+ mesenchymal stem cells (MSCs), APOE+ pre-osteoblasts (pre-OBs), and IBSP+ osteoblasts decreased significantly in response to initial periodontal therapy. In addition, CXCL12+ MSC-like pericytes could convert their identity into a pre-OB state during inflammatory responses even after initial periodontal therapy confirmed by single-cell trajectory. Moreover, we portrayed the distinct subtypes of monocytic cells and abundant endothelial cells significantly involved in the immune response. The heterogeneity of T and B cells in periodontal tissues was characterized. Finally, we mapped osteoblast/osteoclast differentiation mediators to their source cell populations by identifying ligand-receptor pairs and highlighted the effects of Ephrin-Eph signaling on bone regeneration after initial periodontal therapy. Conclusions: Our analyses uncovered striking spatiotemporal dynamics in gene expression, population composition, and cell-cell interactions during periodontitis progression. These findings provide insights into the cellular and molecular underpinning of periodontal bone regeneration.

Wen SunAffiliated Stomatological Hospital of Nanjing Medical University; Jiangsu Province Key Laboratory of Oral Diseases; Jiangsu Province Engineering Research Center of Stomatological Translational Medicinewensun@njmu.edu.cn
Yue Chen1
Hua Wang1
Qiudong Yang1
Wenhua Zhao1
Yuyi Chen1
Qiaoqi Ni1
Wenlei Li1
Jiali Shi1
Wei Zhang1
Lu Li1
Yan Xu1
Hengwei Zhang2
Dengshun Miao3
Lianping Xing2
Wen Sun1
1Affiliated Stomatological Hospital of Nanjing Medical University; Jiangsu Province Key Laboratory of Oral Diseases; Jiangsu Province Engineering Research Center of Stomatological Translational Medicine
2University of Rochester Medical Center
3Nanjing Medical University; Research Center for Bone and Stem Cells
Ida Zucchi

To reference this project, please use the following link:

https://explore.data.humancellatlas.org/projects/40604447-14e4-4e55-ad22-1fd2d7eb4c68
None
GEO Series Accessions:
INSDC Project Accessions:
INSDC Study Accessions:

Atlas

Oral and CraniofacialORCF v1.0

Analysis Portals

None

Project Label

scOsteoimmunologyPeriodontitis

Species

Homo sapiens

Sample Type

specimens

Anatomical Entity

6 anatomical entities

Organ Part

periodontium

Selected Cell Types

Unspecified

Disease Status (Specimen)

2 disease statuses

Disease Status (Donor)

2 disease statuses

Development Stage

human adult stage

Library Construction Method

BD Rhapsody Whole Transcriptome Analysis

Nucleic Acid Source

single cell

Paired End

false

Analysis Protocol

raw_matrix_generation

File Format

4 file formats

Cell Count Estimate

51.2k

Donor Count

12
fastq.gz36 file(s)tsv.gz12 file(s)txt.gz12 file(s)xlsx1 file(s)
HCA Data PortalHCA Data Portal
AboutHelpPrivacyContact
v2.20.4-15c85d8-dcp52