Literature DB >> 27404166

Burn Injury Has Skeletal Site-Specific Effects on Bone Integrity and Markers of Bone Remodeling.

Matthew Hoscheit1, Grant Conner, James Roemer, Aleksanhdra Vuckovska, Pegah Abbasnia, Paul Vana, Ravi Shankar, Richard Kennedy, John Callaci.   

Abstract

To further understand the mechanisms of perturbations in bone remodeling following severe burn injury, the biomechanical properties, genetic expression, and serological markers were evaluated in rodents at six time intervals within 6 weeks following injury. Moreover, these effects were observed in rodent tibia and lumbar vertebrae to explore possible skeletal site localization of this pathologic bone loss. Rodents underwent either thermal injury (100°C water, 30 seconds, 30% BSA) or sham burn. Bone mineral density was evaluated though peripheral quantitative computer tomography, and specialized apparatus measured the weight bearing capacity of tibia and lumbar vertebrae. Markers of bone resorption (RANK ligand, osteocalcin) and bone formation (osteoprotegerin, procollagenase type 1 alpha 2) were measured at 7, 14, and 21 days following injury, and serum RANK-ligand levels were observed at these time intervals. Rodent body mass, bone mineral density, and weight bearing capacity were negatively influenced both acutely and several weeks following burn injury. Moreover, a genetic expression profile favoring increased bone resorption and lower bone formation was demonstrated. Our serum analysis findings of significantly increased RANKL 1 and 2 weeks following injury support the increased expression of bone resorption markers. Furthermore, these effects occurred sooner and were more pronounced in the rodent lumbar vertebrae than tibia. These results suggest that severe burn injury results in perturbations in bone remodeling secondary to increased bone resorption and diminished bone formation, impacting both bone mineral density and weight bearing capacity. Furthermore, these processes had a skeletal site effect more pronounced in the lumbar vertebrae. With a better understanding of the mechanisms of burn-injury bone loss, targeted therapies can be implemented to improve long-term clinical outcomes.

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Year:  2016        PMID: 27404166      PMCID: PMC5102767          DOI: 10.1097/BCR.0000000000000389

Source DB:  PubMed          Journal:  J Burn Care Res        ISSN: 1559-047X            Impact factor:   1.845


  32 in total

Review 1.  Support of the metabolic response to burn injury.

Authors:  David N Herndon; Ronald G Tompkins
Journal:  Lancet       Date:  2004-06-05       Impact factor: 79.321

2.  Growth delay in postburn pediatric patients.

Authors:  R L Rutan; D N Herndon
Journal:  Arch Surg       Date:  1990-03

3.  Burn-associated bone disease in sheep: roles of immobilization and endogenous corticosteroids.

Authors:  G L Klein; Y Kikuchi; D J Sherrard; D J Simmons; N Biondo; D L Traber
Journal:  J Burn Care Rehabil       Date:  1996 Nov-Dec

4.  Mutations in TNFRSF11A, affecting the signal peptide of RANK, cause familial expansile osteolysis.

Authors:  A E Hughes; S H Ralston; J Marken; C Bell; H MacPherson; R G Wallace; W van Hul; M P Whyte; K Nakatsuka; L Hovy; D M Anderson
Journal:  Nat Genet       Date:  2000-01       Impact factor: 38.330

5.  The impact of muscle disuse on muscle atrophy in severely burned rats.

Authors:  Xiaowu Wu; Lisa A Baer; Steven E Wolf; Charles E Wade; Thomas J Walters
Journal:  J Surg Res       Date:  2010-09-15       Impact factor: 2.192

6.  Dietary (n-3) fat and cholesterol alter tissue antioxidant enzymes and susceptibility to oxidation in SHR and WKY rats.

Authors:  Yvonne V Yuan; David D Kitts
Journal:  J Nutr       Date:  2003-03       Impact factor: 4.798

Review 7.  Metabolic implications of severe burn injuries and their management: a systematic review of the literature.

Authors:  Bishara S Atiyeh; S William A Gunn; Saad A Dibo
Journal:  World J Surg       Date:  2008-08       Impact factor: 3.352

8.  Bone disease in burn patients.

Authors:  G L Klein; D N Herndon; T C Rutan; D J Sherrard; J W Coburn; C B Langman; M L Thomas; J G Haddad; C W Cooper; N L Miller
Journal:  J Bone Miner Res       Date:  1993-03       Impact factor: 6.741

Review 9.  Glucocorticoid-induced osteoporosis.

Authors:  B P Lukert
Journal:  South Med J       Date:  1992-08       Impact factor: 0.954

10.  Preliminary evidence of early bone resorption in a sheep model of acute burn injury: an observational study.

Authors:  Gordon L Klein; Yixia Xie; Yi-Xian Qin; Liangjun Lin; Minyi Hu; Perenlei Enkhbaatar; Lynda F Bonewald
Journal:  J Bone Miner Metab       Date:  2013-06-20       Impact factor: 2.626

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  2 in total

Review 1.  Osteocyte-Related Cytokines Regulate Osteoclast Formation and Bone Resorption.

Authors:  Hideki Kitaura; Aseel Marahleh; Fumitoshi Ohori; Takahiro Noguchi; Wei-Ren Shen; Jiawei Qi; Yasuhiko Nara; Adya Pramusita; Ria Kinjo; Itaru Mizoguchi
Journal:  Int J Mol Sci       Date:  2020-07-21       Impact factor: 5.923

2.  Experimental models of scald burns. A scope review.

Authors:  Taís Amadio Menegat; Andrea Fernandes de Oliveira; Michelle Gioia Coiado Majewski; Leila Blanes; Yara Juliano; Neil Ferreira Novo; Lydia Masako Ferreira
Journal:  Acta Cir Bras       Date:  2019-12-09       Impact factor: 1.388

  2 in total

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