Han Se Jik, Moon Donggerami, Park Moon Young, Kwon Sangwoo, Noh Minjoo, Jang Jihui, Lee Jun Bae, Kim Kyung Sook
Department of Biomedical Engineering, Graduate school, Kyung Hee University, Seoul, South Korea.
Department of Biomedical Engineering, College of medicine, Kyung Hee University, Seoul, South Korea.
Skin Res Technol. 2020 Nov;26(6):914-922. doi: 10.1111/srt.12894. Epub 2020 Jun 28.
An electric field (EF) can be used to change the mechanical properties of cells and skin tissues. We demonstrate EF-induced elasticity changes in human dermal fibroblasts (HDFs) and a human skin equivalent and identify the underlying principles related to the changes.
HDFs and human skin equivalent were stimulated with electric fields of 1.0 V/cm. Change in cellular elasticity was determined by using atomic force microscopy. Effects of EF on the biomechanical and chemical properties of a human skin equivalent were analyzed. In cells and tissues, the effects of EF on biomarkers of cellular elasticity were investigated at the gene and protein levels.
In HDFs, the cellular elasticity was increased and the expression of biomarkers of cellular elasticity was regulated by the EF. Expression of the collagen protein in the human skin equivalent was changed by EF stimulation; however, changes in density and microstructure of the collagen fibrils were not significant. The viscoelasticity of the human skin equivalent increased in response to EF stimulation, but molecular changes were not observed in collagen.
Elasticity of cells and human skin equivalent can be regulated by electrical stimulation. Especially, the change in cellular elasticity was dependent on cell age.
电场(EF)可用于改变细胞和皮肤组织的力学性能。我们展示了电场诱导的人真皮成纤维细胞(HDFs)和人皮肤等效物的弹性变化,并确定了与这些变化相关的潜在原理。
用1.0 V/cm的电场刺激人真皮成纤维细胞和人皮肤等效物。使用原子力显微镜测定细胞弹性的变化。分析了电场对人皮肤等效物生物力学和化学性质的影响。在细胞和组织中,在基因和蛋白质水平研究了电场对细胞弹性生物标志物的影响。
在人真皮成纤维细胞中,细胞弹性增加,细胞弹性生物标志物的表达受电场调节。电场刺激改变了人皮肤等效物中胶原蛋白的表达;然而,胶原纤维的密度和微观结构变化不显著。人皮肤等效物的粘弹性因电场刺激而增加,但在胶原蛋白中未观察到分子变化。
细胞和人皮肤等效物的弹性可通过电刺激来调节。特别是,细胞弹性的变化取决于细胞年龄。