Scleraxis-Lineage Cells Contribute to Ectopic Bone Formation in Muscle and Tendon

Author:

Agarwal Shailesh1,Loder Shawn J.1,Cholok David1,Peterson Joshua1,Li John1,Breuler Christopher1,Cameron Brownley R.1,Hsin Sung Hsiao1,Chung Michael T.1,Kamiya Nobuhiro2,Li Shuli1,Zhao Bin3,Kaartinen Vesa4,Davis Thomas A.5,Qureshi Ammar T.5,Schipani Ernestina6,Mishina Yuji4,Levi Benjamin1

Affiliation:

1. a Department of Surgery, Section of Plastic Surgery, Burn/Wound and Regenerative Medicine Laboratory, University of Michigan, Michigan, USA

2. b Department of Sports Medicine, Tenri University, Japan

3. c Department of Genetics, Albert Einstein College of Medicine, Bronx, New York, USA

4. d Department of Biologic and Materials Sciences, University of Michigan School of Dentistry, Michigan, USA

5. e Regenerative Medicine Department, Naval Medical Research Center, Silver Spring, Maryland, USA

6. f Department of Orthopaedic Surgery, Orthopaedic Research Laboratories, University of Michigan, Michigan, USA

Abstract

Abstract The pathologic development of heterotopic ossification (HO) is well described in patients with extensive trauma or with hyperactivating mutations of the bone morphogenetic protein (BMP) receptor ACVR1. However, identification of progenitor cells contributing to this process remains elusive. Here we show that connective tissue cells contribute to a substantial amount of HO anlagen caused by trauma using postnatal, tamoxifen-inducible, scleraxis-lineage restricted reporter mice (Scx-creERT2/tdTomatofl/fl). When the scleraxis-lineage is restricted specifically to adults prior to injury marked cells contribute to each stage of the developing HO anlagen and coexpress markers of endochondral ossification (Osterix, SOX9). Furthermore, these adult preinjury restricted cells coexpressed mesenchymal stem cell markers including PDGFRα, Sca1, and S100A4 in HO. When constitutively active ACVR1 (caACVR1) was expressed in scx-cre cells in the absence of injury (Scx-cre/caACVR1fl/fl), tendons and joints formed HO. Postnatal lineage-restricted, tamoxifen-inducible caACVR1 expression (Scx-creERT2/caACVR1fl/fl) was sufficient to form HO after directed cardiotoxin-induced muscle injury. These findings suggest that cells expressing scleraxis within muscle or tendon contribute to HO in the setting of both trauma or hyperactive BMP receptor (e.g., caACVR1) activity.

Funder

Congressional Directed Medical Research Programs grant

NIH/NIGMS

Association for Academic Surgery Roslyn Award and the Research & Education Foundation Scholarship

American Association for the Surgery of Trauma Research

Education Foundation Scholarship

Plastic Surgery Foundation/AAPS Pilot Award

International FOP Association and American Association of Plastic Surgery Research Fellowship

Howard Hughes Medical Institute Medical Research Fellowship

NIH/NIDCR

Society Research Fellowship

NIH

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Molecular Medicine

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