Ross Tilley Burn Centre, Sunnybrook Health Sciences Centre, Toronto, Ontario, M4N 3M5, Canada.
Ross Tilley Burn Centre, Sunnybrook Health Sciences Centre, Toronto, Ontario, M4N 3M5, Canada.
Biochim Biophys Acta Mol Basis Dis. 2017 Oct;1863(10 Pt B):2633-2644. doi: 10.1016/j.bbadis.2017.02.019. Epub 2017 Feb 20.
A severe burn can trigger a hypermetabolic state which lasts for years following the injury, to the detriment of the patient. The drastic increase in metabolic demands during this phase renders it difficult to meet the body's nutritional requirements, thus increasing muscle, bone and adipose catabolism and predisposing the patient to a host of disorders such as multi-organ dysfunction and sepsis, or even death. Despite advances in burn care over the last 50 years, due to the multifactorial nature of the hypermetabolic phenomenon it is difficult if not impossible to precisely identify and pharmacologically modulate the biological mediators contributing to this substantial metabolic derangement. Here, we discuss biomarkers and molecules which play a role in the induction and mediation of the hypercatabolic condition post-thermal injury. Furthermore, this thorough review covers the development of the factors released after burns, how they induce cellular and metabolic dysfunction, and how these factors can be targeted for therapeutic interventions to restore a more physiological metabolic phenotype after severe thermal injuries. This article is part of a Special Issue entitled: Immune and Metabolic Alterations in Trauma and Sepsis edited by Dr. Raghavan Raju.
严重烧伤可引发高代谢状态,这种状态会在损伤后持续数年,对患者造成损害。在这一阶段,代谢需求的急剧增加使得满足身体的营养需求变得困难,从而增加肌肉、骨骼和脂肪的分解代谢,并使患者易患多种疾病,如多器官功能障碍和败血症,甚至死亡。尽管在过去 50 年中烧伤治疗取得了进展,但由于高代谢现象的多因素性质,要精确识别和通过药理学调节导致这种严重代谢紊乱的生物介质非常困难,如果不是不可能的话。在这里,我们讨论了在热损伤后诱导和介导高分解代谢状态的生物标志物和分子。此外,这篇全面的综述涵盖了烧伤后释放的因子的发展情况,它们如何诱导细胞和代谢功能障碍,以及这些因子如何被靶向用于治疗干预,以在严重热损伤后恢复更生理的代谢表型。本文是由 Raghavan Raju 博士编辑的题为“创伤和败血症中的免疫和代谢改变”的特刊的一部分。