Department of Gerontological Nursing/Wound Care Management, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan.
Division of Care Innovation, Global Nursing Research Center, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan.
Int Wound J. 2022 Feb;19(2):351-361. doi: 10.1111/iwj.13635. Epub 2021 Jul 31.
Pressure injuries (PIs) are localised skin injuries that result from pressure with or without shear force. Shear force is more destructive than pressure in clinical settings. Therefore, determining the critical external forces is important for selecting the appropriate care to prevent PIs. To quantitatively distinguish pressure and shear loading with high specificity, we focused on microRNAs (miRs). This study aimed to identify the miRs that are distinguishable between pressure with and without shear loading in rat skin. Microarray analysis identified six candidate miRs from the comparisons among the pressure, shear, and unloaded groups. We analysed the expression levels of the candidate miRs in the process of PI development using real-time reverse transcriptase polymerase chain reaction. In the pressure and shear groups, miR-92b expressions at 6 hours after loading were 2.3 ± 1.3 and 2.9 ± 1.0, respectively, which were significantly higher than those in the control group (P = .014 and .004, respectively). miR-877 expression at 6 hours after loading was significantly increased only in the shear group (2.8 ± 0.9) compared with the control group (P = .016). These results indicate that miR-92b and miR-877 are promising biomarkers to determine for which external force healthcare professionals should intervene.
压力性损伤(PI)是由压力(有或没有切变力)导致的局部皮肤损伤。在临床环境中,切变力比压力更具破坏性。因此,确定临界外部力对于选择适当的护理措施以预防 PI 非常重要。为了定量区分压力和剪切载荷并具有高特异性,我们专注于 microRNAs(miRs)。本研究旨在确定可区分大鼠皮肤中压力和剪切加载的 miRs。通过比较压力、剪切和未加载组,微阵列分析从压力、剪切和未加载组之间的比较中鉴定出 6 个候选 miR。我们使用实时逆转录聚合酶链反应分析了候选 miR 在 PI 发展过程中的表达水平。在压力和剪切组中,加载后 6 小时 miR-92b 的表达分别为 2.3±1.3 和 2.9±1.0,明显高于对照组(P=.014 和.004)。仅在剪切组中,加载后 6 小时 miR-877 的表达明显增加(2.8±0.9),与对照组相比(P=.016)。这些结果表明,miR-92b 和 miR-877 是确定医疗保健专业人员应干预哪种外力的有前途的生物标志物。