Distinct Inflammatory Macrophage Populations Sequentially Infiltrate Bone-to-Tendon Interface Tissue After Anterior Cruciate Ligament (ACL) Reconstruction Surgery in Mice

Takayuki Fujii, Susumu Wada, Camila B. Carballo, Richard D. Bell, Wataru Morita, Yusuke Nakagawa, Yake Liu, Daoyun Chen, Tania Pannellini, Upneet K. Sokhi, Xiang hua Deng, Kyung Hyung Park-Min, Scott A. Rodeo, Lionel B. Ivashkiv

Résultat de rechercheexamen par les pairs

8 Citations (Scopus)

Résumé

Macrophages are important for repair of injured tissues, but their role in healing after surgical repair of musculoskeletal tissues is not well understood. We used single-cell RNA sequencing (RNA-seq), flow cytometry, and transcriptomics to characterize functional phenotypes of macrophages in a mouse anterior cruciate ligament reconstruction (ACLR) model that involves bone injury followed by a healing phase of bone and fibrovascular interface tissue formation that results in bone-to-tendon attachment. We identified a novel “surgery-induced” highly inflammatory CD9+ IL1+ macrophage population that expresses neutrophil-related genes, peaks 1 day after surgery, and slowly resolves while transitioning to a more homeostatic phenotype. In contrast, CX3CR1+ CCR2+ macrophages accumulated more slowly and unexpectedly expressed an interferon signature, which can suppress bone formation. Deletion of Ccr2 resulted in an increased amount of bone in the surgical bone tunnel at the tendon interface, suggestive of improved healing. The “surgery-induced macrophages” identify a new cell type in the early phase of inflammation related to bone injury, which in other tissues is dominated by blood-derived neutrophils. The complex patterns of macrophage and inflammatory pathway activation after ACLR set the stage for developing therapeutic strategies to target specific cell populations and inflammatory pathways to improve surgical outcomes.

Langue d'origineEnglish
Numéro d'articlee10635
JournalJBMR Plus
Volume6
Numéro de publication7
DOI
Statut de publicationPublished - juill. 2022

Financement

Bailleurs de fondsNuméro du bailleur de fonds
N.I.H.
Rosensweig Genomics Center
Weill Cornell Medicine Genomics Core Facility
Weill Cornell Medical College
Tow Foundation

    ASJC Scopus Subject Areas

    • Endocrinology, Diabetes and Metabolism
    • Orthopedics and Sports Medicine

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