The Institute of Aviation Medicine, Prague, Czech Republic.
Faculty of Military Health Sciences, University of Defence, Hradec Kralove, Czech Republic.
Undersea Hyperb Med. 2020 First Quarter;47(1):31-37. doi: 10.22462/01.03.2020.4.
Hyperbaric oxygen (HBO2) therapy can have a positive effect on wound healing, angiogenesis and blood flow. No prior study has described the effects of HBO2 therapy and gene expression of this process. The goal of our research was to show the effects of HBO2 and its impact at the molecular level on angiogenesis, proliferation, differentiation, oxidative stress, inflammation, and extracellular matrix formation. Live animal subjects were used for simulating the process of wound healing under standard conditions and under the influence of HBO2.
Two experimental groups were created using injured rabbits (N=24), one group (N=12) treated with hyperbaric therapy twice a day and one (N=12) with standard wound care management. Wounds were surgical, uninfected, and in healthy animal test subjects. We compared the whole genomic analysis of the transcriptome with the use of microarray technology at three intervals during treatment.
The induction of the wounds in rabbit skin increased expression of hundreds of genes in both treatment groups. The numbers of elevated and decreased genes gradually reduced as the wound healed. Gene expression analysis showed elevated expression of several genes associated with inflammation in both groups of injured animals. Genes connected to the process of angiogenesis, proliferation, differentiation, oxidative stress and extracellular matrix formation were without statistically significant changes.
The evidence did not support that HBO2 had any significant effect on gene expression during wound healing. Additionally, there was no evidence to support that there were changes in gene expression in either treatment group.
高压氧(HBO2)治疗对伤口愈合、血管生成和血流具有积极影响。没有先前的研究描述过 HBO2 治疗及其对这一过程的基因表达的影响。我们研究的目的是展示 HBO2 的作用及其对血管生成、增殖、分化、氧化应激、炎症和细胞外基质形成的分子水平影响。使用活体动物模拟标准条件下和 HBO2 影响下的伤口愈合过程。
使用受伤的兔子创建了两个实验组(N=24),一组(N=12)每天接受两次高压氧治疗,另一组(N=12)接受标准伤口护理管理。伤口是手术的、未感染的、在健康的动物实验对象中。我们比较了使用微阵列技术在治疗过程中的三个时间点的全基因组分析转录组。
兔子皮肤伤口的诱导增加了两组中数百个基因的表达。随着伤口愈合,升高和降低的基因数量逐渐减少。基因表达分析显示,两组受伤动物的炎症相关基因表达升高。与血管生成、增殖、分化、氧化应激和细胞外基质形成过程相关的基因没有统计学意义上的变化。
证据不支持 HBO2 在伤口愈合过程中对基因表达有任何显著影响。此外,也没有证据表明在任何治疗组中基因表达发生了变化。