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水合状态对兔(Oryctolagus cuniculus)皮肤离子转运的影响。一项体外研究。

The influence of hydration status on ion transport in the rabbit (Oryctolagus cuniculus) skin-An in vitro study.

机构信息

Department of Pathobiochemistry and Clinical Chemistry, Faculty of Pharmacy, Ludwik Rydygier Collegium Medicum in Bydgoszcz, Nicolaus Copernicus University, Toruń, Poland.

Department of Pediatric Nursing, Faculty of Health Sciences, Ludwik Rydygier Collegium Medicum in Bydgoszcz, Nicolaus Copernicus University, Toruń, Poland.

出版信息

PLoS One. 2021 Aug 12;16(8):e0255825. doi: 10.1371/journal.pone.0255825. eCollection 2021.

Abstract

The preservation of physiological transport of ions and water content is particularly important for maintaining the skin barrier, touch and pain stimuli, as well as the initiation of skin regeneration processes, especially after treatments associated with breaking skin continuity and wound healing difficulties. The aim of the study was to assess changes in ion transport, measured as values of transepithelial electric resistance and potential difference in stationary conditions and during mechanical-chemical stimulations, depending on the hydration status of isolated rabbit skin specimens. The specimens were divided into five groups: control (n = 22), dehydrated in 10% NaCl (n = 30), rehydrated after dehydration (n = 26), dried at 37°C (n = 26), and rehydrated after drying (n = 25). Dehydrated tissue samples showed altered resistance compared to the control; this change was maintained regardless of rehydration. In the dehydrated samples, changes in the measured electric potential were also noted, which returned to values comparable with the control after rehydration. Dehydrated skin, regardless of the cause of dehydration, responds with changes in the transport of sodium and chloride ions and the altered cellular microenvironment. It could influence the perception of stimuli, particularly pain, and slow down the regeneration processes.

摘要

维持生理离子和水分运输对于保持皮肤屏障、触觉和痛觉刺激以及启动皮肤再生过程至关重要,特别是在与破坏皮肤连续性和伤口愈合困难相关的治疗后。本研究旨在评估离子转运的变化,通过测量兔皮标本在静止条件下和机械化学刺激期间的跨上皮电阻和电位差值来评估,这取决于分离的兔皮标本的水合状态。标本分为五组:对照组(n = 22)、10%NaCl 脱水组(n = 30)、脱水后再水化组(n = 26)、37°C 干燥组(n = 26)和干燥后再水化组(n = 25)。与对照组相比,脱水组织样本的电阻发生了改变;这种变化在再水化后仍保持不变。在脱水样本中,还观察到测量电位的变化,这些变化在再水化后恢复到与对照值可比的水平。无论脱水的原因如何,脱水皮肤都会通过改变钠离子和氯离子的转运以及改变细胞微环境来做出反应。这可能会影响刺激的感知,特别是疼痛,并减缓再生过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c26/8360594/3a1ed0e88dae/pone.0255825.g001.jpg

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