Q. Zhang, D. Zhou, H. Wang, and J. Tan, Heterotopic ossification of tendon and ligament, J Cell Mol Med, vol.24, pp.5428-5437, 2020.

C. T. Kraft, S. Agarwal, and K. Ranganathan, Trauma-induced heterotopic bone formation and the role of the immune system: a review, J Trauma Acute Care Surg, vol.80, pp.156-165, 2016.

L. Kan, Y. Liu, and T. L. Mcguire, Dysregulation of local stem/progenitor cells as a common cellular mechanism for heterotopic ossification, Stem Cells, vol.27, pp.150-156, 2009.

C. Kan, N. Ding, and J. Yang, BMP-dependent, injury-induced stem cell niche as a mechanism of heterotopic ossification, Stem Cell Res Ther, vol.10, p.14, 2019.

G. S. Stein, J. B. Lian, and A. J. Van-wijnen, Runx2 control of organization, assembly and activity of the regulatory machinery for skeletal gene expression, Oncogene, vol.23, pp.4315-4329, 2004.

R. D. Brady, S. R. Shultz, S. J. Mcdonald, O. 'brien, and T. J. , Neurological heterotopic ossification: Current understanding and future directions, Bone, vol.109, pp.35-42, 2018.

M. J. Kane, M. Angoa-pérez, D. I. Briggs, D. C. Viano, C. W. Kreipke et al., A mouse model of human repetitive mild traumatic brain injury, J Neurosci Methods, vol.203, pp.41-49, 2012.

J. F. Klement, Y. Matsuzaki, and Q. J. Jiang, Targeted ablation of the abcc6 gene results in ectopic mineralization of connective tissues, Mol Cell Biol, vol.25, pp.8299-8310, 2005.

A. Fedorov, R. Beichel, and J. Kalpathy-cramer, 3D Slicer as an image computing platform for the Quantitative Imaging Network, Magn Reson Imaging, vol.30, pp.1323-1341, 2012.

D. Dedinszki, F. Szeri, and E. Kozák, Oral administration of pyrophosphate inhibits connective tissue calcification, EMBO Mol Med, vol.9, pp.1463-1470, 2017.

F. Genêt, I. Kulina, and C. Vaquette, Neurological heterotopic ossfication following spinal cord injury is triggered by macrophage-mediated in ammation in muscle, J Pathol, vol.236, pp.229-240, 2015.

F. Torossian, B. Guerton, and A. Anginot, Macrophage-derived oncostatin M contributes to human and mouse neurogenic heterotopic ossifications, JCI Insight, vol.2, p.96034, 2017.
URL : https://hal.archives-ouvertes.fr/ssa-01818293

S. N. Moore-lotridge, Q. Li, and B. Gibson, Trauma-Induced nanohydroxyapatite deposition in skeletal muscle is sufficient to drive heterotopic ossification, Calcif Tissue Int, vol.104, pp.411-425, 2019.

M. P. Sullivan, S. J. Torres, S. Mehta, and J. Ahn, Heterotopic ossification after central nervous system trauma, Bone Joint Res, vol.2, pp.51-57, 2013.

J. A. Forsberg, J. M. Pepek, and S. Wagner, Heterotopic ossification in high-energy wartime extremity injuries: prevalence and risk factors, J Bone Joint Surg Am, vol.91, pp.1084-1091, 2009.

R. S. Jansen, A. Küçükosmanoglu, and M. De-haas, ABCC6 prevents ectopic mineralization seen in pseudoxanthoma elasticum by inducing cellular nucleotide release, Proc Natl Acad Sci U S A, vol.110, pp.20206-20211, 2013.

R. S. Jansen, S. Duijst, and S. Mahakena, ABCC6-mediated ATP secretion by the liver is the main source of the mineralization inhibitor inorganic pyrophosphate in the systemic circulation, Arterioscler Thromb Vasc Biol, vol.34, pp.1985-1989, 2014.

P. Borst, A. Váradi, and K. Van-de-wetering, PXE, a mysterious inborn error clarified, Trends Biochem Sci, vol.44, pp.125-140, 2019.

H. Fleisch and S. Bisaz, Mechanism of calcification: inhibitory role of pyrophosphate, Nature, vol.195, p.911, 1962.

F. Fleish, R. Russell, and F. Straumann, Effect of pyrophosphate on hydroxylapatite and its implication in calcium homeostasis, Nature, vol.212, pp.901-903, 1966.

M. D. Francis, R. G. Russell, and H. Fleisch, Disphosphanates inhibits fromation of calcxium phosphate crystals in vitro and pathological calcification in vivo, Science, vol.165, pp.1264-1266, 1969.

J. L. Meyer, Can biological calcification occur in the presence of pyrophosphate?, Arch Biochem Biophys, vol.231, pp.1-8, 1984.

V. Pomozi, C. Brampton, and K. Van-de-wetering, Pyrophosphate supplementation prevents chronic and acute calcification in ABCC6-deficient mice, Am J Pathol, vol.187, pp.1258-1272, 2017.

Q. Li, J. Huang, and A. B. Pinkerton, Inhibition of tissue-nonspecific alkaline phosphatase attenuates ectopic mineralization in the Abcc6-/-mouse model of PXE but not in the Enpp1 mutant mouse models of GACI, J Invest Dermatol, vol.139, pp.360-368, 2019.

S. G. Ziegler, C. R. Ferreira, and E. G. Macfarlane, Ectopic calcification in pseudoxanthoma elasticum responds to inhibition of tissue-nonspecific alkaline phosphatase, Sci Transl Med, vol.9, p.1669, 2017.

R. A. Albright, P. Stabach, and W. Cao, ENPP1-Fc prevents mortality and vascular calcifications in rodent model of generalized arterial calcification of infancy, Nat Commun, vol.6, p.10006, 2015.

R. Villa-bellosta, ATP-based therapy prevents vascular calcification and extends longevity in a mouse model of Hutchinson-Gilford progeria syndrome, Proc Natl Acad Sci, vol.116, pp.23698-23704, 2019.

N. T?kési, E. Kozák, and K. Fülöp, Pyrophosphate therapy prevents trauma-induced calcification in the mouse model of neurogenic heterotopic ossification, J Cell Mol Med, vol.00, pp.1-9, 2020.