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鱼皮移植对烧伤创面愈合过程中腺苷和蛋氨酸代谢的影响。

Fish Skin Grafts Affect Adenosine and Methionine Metabolism during Burn Wound Healing.

作者信息

Kotronoulas Aristotelis, de Lomana Adrián López García, Einarsdóttir Helga Kristín, Kjartansson Hilmar, Stone Randolph, Rolfsson Óttar

机构信息

Center for Systems Biology, Medical Department, University of Iceland, Sturlugata 8, 102 Reykjavik, Iceland.

Kerecis®, 101 Reykjavik, Iceland.

出版信息

Antioxidants (Basel). 2023 Dec 5;12(12):2076. doi: 10.3390/antiox12122076.

Abstract

Burn wound healing is a complex process orchestrated through successive biochemical events that span from weeks to months depending on the depth of the wound. Here, we report an untargeted metabolomics discovery approach to capture metabolic changes during the healing of deep partial-thickness (DPT) and full-thickness (FT) burn wounds in a porcine burn wound model. The metabolic changes during healing could be described with six and seven distinct metabolic trajectories for DPT and FT wounds, respectively. Arginine and histidine metabolism were the most affected metabolic pathways during healing, irrespective of burn depth. Metabolic proxies for oxidative stress were different in the wound types, reaching maximum levels at day 14 in DPT burns but at day 7 in FT burns. We examined how acellular fish skin graft (AFSG) influences the wound metabolome compared to other standard-or-care burn wound treatments. We identified changes in metabolites within the methionine salvage pathway, specifically in DPT burn wounds that is novel to the understanding of the wound healing process. Furthermore, we found that AFSGs boost glutamate and adenosine in wounds that is of relevance given the importance of purinergic signaling in regulating oxidative stress and wound healing. Collectively, these results serve to define biomarkers of burn wound healing. These results conclusively contribute to the understanding of the multifactorial mechanism of the action of AFSG that has traditionally been attributed to its structural properties and omega-3 fatty acid content.

摘要

烧伤创面愈合是一个复杂的过程,通过一系列生化事件精心编排,根据创面深度不同,这一过程可持续数周甚至数月。在此,我们报告了一种非靶向代谢组学发现方法,用于捕捉猪烧伤创面模型中深Ⅱ度(DPT)和全层(FT)烧伤创面愈合过程中的代谢变化。DPT和FT创面愈合过程中的代谢变化分别可用六种和七种不同的代谢轨迹来描述。无论烧伤深度如何,精氨酸和组氨酸代谢是愈合过程中受影响最大的代谢途径。不同创面类型中氧化应激的代谢指标不同,DPT烧伤在第14天达到最高水平,而FT烧伤在第7天达到最高水平。我们研究了与其他标准烧伤创面治疗方法相比,脱细胞鱼皮移植(AFSG)如何影响创面代谢组。我们发现甲硫氨酸挽救途径中的代谢物发生了变化,特别是在DPT烧伤创面中,这对于理解创面愈合过程来说是新的发现。此外,我们发现AFSG可提高创面中的谷氨酸和腺苷水平,鉴于嘌呤能信号在调节氧化应激和创面愈合中的重要性,这一发现具有重要意义。总的来说,这些结果有助于定义烧伤创面愈合的生物标志物。这些结果最终有助于理解AFSG的多因素作用机制,传统上人们一直将其归因于其结构特性和ω-3脂肪酸含量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/19ac/10741162/f340e3e3f083/antioxidants-12-02076-g001.jpg

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