Faculty of Pharmacy in Hradec Králové, Charles University, Hradec Králové, Czech Republic.
Faculty of Chemical Technology, University of Chemistry and Technology Prague, Prague, Czech Republic.
J Invest Dermatol. 2021 Aug;141(8):1915-1921.e4. doi: 10.1016/j.jid.2021.02.014. Epub 2021 Mar 3.
Lipid membrane remodeling belongs to the most fundamental processes in the body. The skin barrier lipids, which are ceramide dominant and highly rigid, must attain an unusual multilamellar nanostructure with long periodicity to restrict water loss and prevent the entry of potentially harmful environmental factors. Our data suggest that the skin acid mantle, apart from regulating enzyme activities and keeping away pathogens, may also be a prerequisite for the multilamellar assembly of the skin barrier lipids. Atomic force microscopy on monolayers composed of synthetic or human stratum corneum lipids showed multilayer formation (approximately 10-nm step height) in an acidic but not in a neutral environment. X-ray diffraction, Fourier transform infrared spectroscopy, and permeability studies showed markedly altered lipid nanostructure and increased water loss at neutral pH compared with that at acidic pH. These findings are consistent with the data on the altered organization of skin lipids and increased transepidermal water loss under conditions such as inadequate skin acidification, for example, in neonates, the elderly, and patients with atopic dermatitis.
脂质膜重塑属于体内最基本的过程之一。皮肤屏障脂质以神经酰胺为主且高度刚性,必须形成具有长周期性的异常多层纳米结构,以限制水分流失并防止潜在有害环境因素的进入。我们的数据表明,皮肤的酸性覆盖层除了调节酶活性和防止病原体进入外,可能也是皮肤屏障脂质多层组装的前提。用合成或人角质层脂质组成的单层的原子力显微镜研究表明,在酸性环境而非中性环境下会形成多层结构(约 10nm 的台阶高度)。X 射线衍射、傅里叶变换红外光谱和通透性研究表明,与酸性 pH 值相比,中性 pH 值下的脂质纳米结构明显改变,水分流失增加。这些发现与皮肤脂质组织改变以及在皮肤酸化不足的情况下,如新生儿、老年人和特应性皮炎患者,经表皮水分流失增加的相关数据一致。