Department of Biosciences, Durham University, Durham DH1 3LE, UK.
Department of Earth Sciences, Durham University, Durham DH1 3LE, UK.
Cells. 2021 May 12;10(5):1177. doi: 10.3390/cells10051177.
Mechanotransduction is defined as the ability of cells to sense mechanical stimuli from their surroundings and translate them into biochemical signals. Epidermal keratinocytes respond to mechanical cues by altering their proliferation, migration, and differentiation. In vitro cell culture, however, utilises tissue culture plastic, which is significantly stiffer than the in vivo environment. Current epidermal models fail to consider the effects of culturing keratinocytes on plastic prior to setting up three-dimensional cultures, so the impact of this non-physiological exposure on epidermal assembly is largely overlooked. In this study, primary keratinocytes cultured on plastic were compared with those grown on 4, 8, and 50 kPa stiff biomimetic hydrogels that have similar mechanical properties to skin. Our data show that keratinocytes cultured on biomimetic hydrogels exhibited major changes in cellular architecture, cell density, nuclear biomechanics, and mechanoprotein expression, such as specific Linker of Nucleoskeleton and Cytoskeleton (LINC) complex constituents. Mechanical conditioning of keratinocytes on 50 kPa biomimetic hydrogels improved the thickness and organisation of 3D epidermal models. In summary, the current study demonstrates that the effects of extracellular mechanics on keratinocyte cell biology are significant and therefore should be harnessed in skin research to ensure the successful production of physiologically relevant skin models.
机械转导被定义为细胞感知周围环境中机械刺激并将其转化为生化信号的能力。表皮角质形成细胞通过改变其增殖、迁移和分化来响应机械线索。然而,体外细胞培养使用组织培养塑料,其刚性明显高于体内环境。目前的表皮模型在建立三维培养之前没有考虑到在塑料上培养角质形成细胞对表皮组装的影响,因此这种非生理暴露对表皮组装的影响在很大程度上被忽视了。在这项研究中,将培养在塑料上的原代角质形成细胞与培养在具有类似皮肤机械性能的 4、8 和 50 kPa 刚性仿生水凝胶上的角质形成细胞进行了比较。我们的数据表明,在仿生水凝胶上培养的角质形成细胞在细胞结构、细胞密度、核生物力学和机械蛋白表达方面发生了重大变化,例如特定的核骨架和细胞骨架(LINC)复合体成分。在 50 kPa 仿生水凝胶上对角质形成细胞进行机械条件处理可改善 3D 表皮模型的厚度和组织。总之,本研究表明细胞外力学对角质形成细胞生物学的影响是显著的,因此应该在皮肤研究中加以利用,以确保成功生产具有生理相关性的皮肤模型。