Related Experiment Video
Updated: Apr 20, 2026

Laser Capture Microdissection of Mouse Embryonic Cartilage and Bone for Gene Expression Analysis
Published on: December 18, 2019
Single-cell transcriptome profiling reveals the heterogeneity of ossification of the posterior longitudinal ligament
Zhongyuan He1,2, Jiaxiang Zhou2, Fuan Wang2
1Department of Orthopaedics, The Second Affiliated Hospital of Chongqing Medical University, Chongqing, 400016, China.
Background:
Ossification of the posterior longitudinal ligament (OPLL) is a heterotopic ossification process of the posterior longitudinal ligament (PLL) that can compress the spinal cord and nerve roots, yet its cellular heterogeneity and pathogenesis remain unclear.
Methods:
We performed single-cell RNA sequencing (scRNA-seq) with integrative computational analyses and histological validation on 4,683 cells from surgically resected cervical OPLL lesions obtained from human patients.
Results:
We identified 15 major cell subsets, including chondrocyte-lineage populations-progenitor/proliferative fibrocartilage chondrocytes (ProFCs), pre-hypertrophic chondrocytes (preHTCs), and hypertrophic chondrocytes (HTCs)-as well as osteoblasts, endothelial cells, and diverse immune cells. Pseudotime analysis suggested an inferred trajectory from cartilage progenitor-like cells through inflammatory/reactive and hypertrophic states toward osteogenic programs, with progressive activation of ossification, extracellular-matrix, and inflammation-related pathways. Cell-cell communication analyses showed coordinated immune-stromal crosstalk, with FGF signaling enriched in earlier pseudotime states and SPP1-CD44 signaling enriched in later states. SPP1 signals originated predominantly from HTCs, whereas macrophages were prominently involved in the broader inflammatory niche and immune-stromal communication within OPLL lesions. Consistently, SPP1/CD44-positive cells were enriched in OPLL tissues and further increased by IL-1β stimulation in vitro and in an Enpp1-driven OPLL mouse model.
Conclusions:
This exploratory single-cell atlas suggests that an inflammatory niche may couple chondrocyte hypertrophy with osteogenic activation and highlights candidate immune-stromal pathways for future biomarker and therapeutic exploration in OPLL.
Related Concept Videos
Bone Formation by Intramembranous Ossification
The process begins when mesenchymal cells in the embryonic skeleton gather together and differentiate into osteogenic cells, which then develop into ...
Bone Formation by Endochondral Ossification
Osteoclasts in Bone Remodeling
Bone Remodeling and Repair
Growth of Cartilage and Bone Tissue
Embryonic Connective Tissues
The mesenchyme is the first connective tissue that emerges in the developing embryo. It consists of loosely arranged multipotent mesenchymal cells and reticular fibers in the extracellular matrix. This loose arrangement allows easy migration of cells, which is essential for germ layer positioning, patterning, and organ morphogenesis during embryonic development.

