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烧伤对骨骼完整性和骨重塑标志物具有骨骼部位特异性影响。

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

作者信息

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

机构信息

From the *Loyola University Medical Center, Maywood, Illinois; and †Saint Louis University, Missouri.

出版信息

J Burn Care Res. 2016 Nov/Dec;37(6):367-378. doi: 10.1097/BCR.0000000000000389.

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.

摘要

为进一步了解严重烧伤后骨重塑紊乱的机制,在伤后6周内的6个时间点对啮齿动物的生物力学特性、基因表达和血清学标志物进行了评估。此外,在啮齿动物的胫骨和腰椎中观察到这些影响,以探索这种病理性骨质流失可能的骨骼部位定位。啮齿动物接受热损伤(100°C水,30秒,30%体表面积)或假烧伤。通过外周定量计算机断层扫描评估骨密度,并用专门仪器测量胫骨和腰椎的承重能力。在伤后7、14和21天测量骨吸收标志物(核因子κB受体活化因子配体、骨钙素)和骨形成标志物(骨保护素、1型前胶原酶α2),并在这些时间点观察血清核因子κB受体活化因子配体水平。烧伤后急性和数周内,啮齿动物的体重、骨密度和承重能力均受到负面影响。此外,还证明了有利于骨吸收增加和骨形成降低的基因表达谱。我们的血清分析结果显示,伤后1和2周核因子κB受体活化因子配体显著增加,支持了骨吸收标志物表达的增加。此外,这些影响在啮齿动物腰椎中比胫骨出现得更早且更明显。这些结果表明,严重烧伤导致骨重塑紊乱,继发于骨吸收增加和骨形成减少,影响骨密度和承重能力。此外,这些过程在腰椎中的骨骼部位效应更明显。更好地了解烧伤后骨质流失的机制,可实施针对性治疗以改善长期临床结局。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f280/5102767/1adb793121a3/nihms-789622-f0001.jpg

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