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皮肤热损伤在小鼠模型中对血液和皮肤代谢组的影响不同。

Cutaneous Thermal Injury Modulates Blood and Skin Metabolomes Differently in a Murine Model.

机构信息

Firefighters' Burn and Surgical Research Laboratory, MedStar Health Research Institute, Washington, District of Columbia.

The Burn Center, MedStar Washington Hospital Center, Washington, District of Columbia.

出版信息

J Burn Care Res. 2021 Aug 4;42(4):727-742. doi: 10.1093/jbcr/iraa209.

Abstract

As the field of metabolomics develops further, investigations of how the metabolome is affected following thermal injury may be helpful to inform diagnostics and guide treatments. In this study, changes to the metabolome were tested and validated in a murine burn injury model. After a 30% total body surface scald injury or sham procedure sera and skin biopsies were collected at 1, 2, 6, or 24 hr. Burn-specific changes in the metabolome were detected compared to sham animals. The sera metabolome exhibited a more rapid response to burn injury than that of the skin and it peaked more proximal to injury (6 vs 24 hr). Progression of metabolic response in the skin was less synchronous and showed a higher overlap of the significantly modified metabolites (SMMs) among tested time-points. Top affected pathways identified by SMMs of skin included inositol phosphate metabolism, ascorbate and alderate metabolism, caffeine metabolism, and the pentose phosphate pathway. Future research is warranted in human and larger animal models to further elucidate the role of metabolomic perturbations and the pathophysiology following burn injury.

摘要

随着代谢组学领域的进一步发展,研究代谢组在热损伤后的变化可能有助于为诊断提供信息并指导治疗。在这项研究中,在小鼠烧伤模型中对代谢组的变化进行了测试和验证。在进行 30%的全身体表面积烫伤或假手术程序后,在 1、2、6 或 24 小时采集血清和皮肤活检。与假动物相比,检测到烧伤特异性的代谢组变化。与皮肤相比,血清代谢组对烧伤损伤的反应更快,其峰值更接近损伤部位(6 小时 vs 24 小时)。皮肤代谢反应的进展不太同步,测试时间点之间的显著改变代谢物(SMM)重叠程度更高。通过皮肤 SMM 鉴定出的受影响的主要途径包括肌醇磷酸盐代谢、抗坏血酸和阿德尔酸盐代谢、咖啡因代谢和戊糖磷酸途径。需要在人类和更大的动物模型中进行进一步的研究,以阐明烧伤损伤后代谢组学改变和病理生理学的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4940/8335952/f507b7e7e46f/iraa209f0001.jpg

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