Literature DB >> 28668522

The traumatic bone: trauma-induced heterotopic ossification.

Devaveena Dey1, Benjamin M Wheatley2, David Cholok3, Shailesh Agarwal3, Paul B Yu4, Benjamin Levi3, Thomas A Davis2.   

Abstract

Heterotopic ossification (HO) is a common occurrence after multiple forms of extensive trauma. These include arthroplasties, traumatic brain and spinal cord injuries, extensive burns in the civilian setting, and combat-related extremity injuries in the battlefield. Irrespective of the form of trauma, heterotopic bone is typically endochondral in structure and is laid down via a cartilaginous matrix. Once formed, the heterotopic bone typically needs to be excised surgically, which may result in wound healing complications, in addition to a risk of recurrence. Refinements of existing diagnostic modalities, like micro- and nano-CT are being adapted toward early intervention. Trauma-induced HO is a consequence of aberrant wound healing, systemic and local immune system activation, infections, extensive vascularization, and innervation. This intricate molecular crosstalk culminates in activation of stem cells that initiate heterotopic endochondral ossification. Development of animal models recapitulating the unique traumatic injuries has greatly facilitated the mechanistic understanding of trauma-induced HO. These same models also serve as powerful tools to test the efficacy of small molecules which specifically target the molecular pathways underlying ectopic ossification. This review summarizes the recent advances in the molecular understanding, diagnostic and treatment modalities in the field of trauma-induced HO. Published by Elsevier Inc.

Entities:  

Mesh:

Year:  2017        PMID: 28668522      PMCID: PMC6715128          DOI: 10.1016/j.trsl.2017.06.004

Source DB:  PubMed          Journal:  Transl Res        ISSN: 1878-1810            Impact factor:   7.012


  40 in total

1.  Characterizing the Circulating Cell Populations in Traumatic Heterotopic Ossification.

Authors:  Shawn J Loder; Shailesh Agarwal; Michael T Chung; David Cholok; Charles Hwang; Noelle Visser; Kaetlin Vasquez; Michael Sorkin; Joe Habbouche; Hsiao H Sung; Joshua Peterson; David Fireman; Kavitha Ranganathan; Christopher Breuler; Caitlin Priest; John Li; Xue Bai; Shuli Li; Paul S Cederna; Benjamin Levi
Journal:  Am J Pathol       Date:  2018-08-22       Impact factor: 4.307

2.  Size of ischial fibro-ostosis is associated with heterotopic ossification after total hip arthroplasty.

Authors:  Jakob Bollmann; Christian Bergdolt; Peter R Aldinger; Michael W Maier; Tobias Gotterbarm; Christian Merle
Journal:  Int Orthop       Date:  2018-12-13       Impact factor: 3.075

Review 3.  Prophylactic Radiotherapy of Hip Heterotopic Ossification: A Narrative Mini Review.

Authors:  Massimiliano De Paolis; Alessio Giuseppe Morganti; Erika Galietta; Luca Gaiani; Claudio Giannini; Andrea Sambri; Milly Buwenge; Gabriella Macchia; Francesco Deodato; Savino Cilla; Lidia Strigari; Michele Fiore; Silvia Cammelli
Journal:  In Vivo       Date:  2022 Mar-Apr       Impact factor: 2.155

4.  Mkx-Deficient Mice Exhibit Hedgehog Signaling-Dependent Ectopic Ossification in the Achilles Tendons.

Authors:  Han Liu; Jingyue Xu; Rulang Jiang
Journal:  J Bone Miner Res       Date:  2019-02-25       Impact factor: 6.741

5.  High Frequency Spectral Ultrasound Imaging Detects Early Heterotopic Ossification in Rodents.

Authors:  Nicole J Edwards; Eric Hobson; Devaveena Dey; Alisha Rhodes; Archie Overmann; Benjamin Hoyt; Sarah A Walsh; Chase A Pagani; Amy L Strong; Geoffrey E Hespe; Karthik R Padmanabhan; Amanda Huber; Cheri Deng; Thomas A Davis; Benjamin Levi
Journal:  Stem Cells Dev       Date:  2021-04-19       Impact factor: 3.272

6.  BMP Ligand Trap ALK3-Fc Attenuates Osteogenesis and Heterotopic Ossification in Blast-Related Lower Extremity Trauma.

Authors:  Amy L Strong; Philip J Spreadborough; Devaveena Dey; Peiran Yang; Shuli Li; Arthur Lee; Ryan M Haskins; Patrick D Grimm; Ravi Kumar; Matthew J Bradley; Paul B Yu; Benjamin Levi; Thomas A Davis
Journal:  Stem Cells Dev       Date:  2020-12-24       Impact factor: 3.272

Review 7.  Crosstalk between Bone and Nerves within Bone.

Authors:  Qian-Qian Wan; Wen-Pin Qin; Yu-Xuan Ma; Min-Juan Shen; Jing Li; Zi-Bin Zhang; Ji-Hua Chen; Franklin R Tay; Li-Na Niu; Kai Jiao
Journal:  Adv Sci (Weinh)       Date:  2021-02-10       Impact factor: 16.806

Review 8.  The War after War: Volumetric Muscle Loss Incidence, Implication, Current Therapies and Emerging Reconstructive Strategies, a Comprehensive Review.

Authors:  Stefano Testa; Ersilia Fornetti; Claudia Fuoco; Carles Sanchez-Riera; Francesco Rizzo; Mario Ciccotti; Stefano Cannata; Tommaso Sciarra; Cesare Gargioli
Journal:  Biomedicines       Date:  2021-05-18

Review 9.  Tissue Engineering Through 3D Bioprinting to Recreate and Study Bone Disease.

Authors:  Adriene Pavek; Christopher Nartker; Maamoon Saleh; Matthew Kirkham; Sana Khajeh Pour; Ali Aghazadeh-Habashi; Jared J Barrott
Journal:  Biomedicines       Date:  2021-05-14

10.  Relationship between miRNA-433 and SPP1 in the presence of fracture and traumatic brain injury.

Authors:  Zhen Han; Feng Shi; Ya Chen; Xiaoqing Dong; Bo Zhang; Meng Li
Journal:  Exp Ther Med       Date:  2021-06-30       Impact factor: 2.447

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