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利用自然丰度 ¹³C 固态 NMR 对角质层分子动力学进行表征。

Characterization of stratum corneum molecular dynamics by natural-abundance ¹³C solid-state NMR.

机构信息

Division of Physical Chemistry, Center for Chemistry and Chemical Engineering, Lund University, Lund, Sweden.

出版信息

PLoS One. 2013 Apr 23;8(4):e61889. doi: 10.1371/journal.pone.0061889. Print 2013.

Abstract

Despite the enormous potential for pharmaceutical applications, there is still a lack of understanding of the molecular details that can contribute to increased permeability of the stratum corneum (SC). To investigate the influence of hydration and heating on the SC, we record the natural-abundance (13)C signal of SC using polarization transfer solid-state NMR methods. Resonance lines from all major SC components are assigned. Comparison of the signal intensities obtained with the INEPT and CP pulse sequences gives information on the molecular dynamics of SC components. The majority of the lipids are rigid at 32°C, and those lipids co-exist with a small pool of mobile lipids. The ratio between mobile and rigid lipids increases with hydration. An abrupt change of keratin filament dynamics occurs at RH = 80-85%, from completely rigid to a structure with rigid backbone and mobile protruding terminals. Heating has a strong effect on the lipid mobility, but only a weak influence on the keratin filaments. The results provide novel molecular insight into how the SC constituents are affected by hydration and heating, and improve the understanding of enhanced SC permeability, which is associated with elevated temperatures and SC hydration.

摘要

尽管在药物应用方面有巨大的潜力,但对于能够提高角质层(SC)通透性的分子细节仍然缺乏了解。为了研究水合作用和加热对 SC 的影响,我们使用极化转移固态 NMR 方法记录 SC 的天然丰度(13)C 信号。分配了来自所有主要 SC 成分的共振线。比较 INEPT 和 CP 脉冲序列获得的信号强度可提供有关 SC 成分分子动力学的信息。大多数脂质在 32°C 时是刚性的,而这些脂质与少量的可移动脂质共存。随着水合作用的增加,移动性脂质与刚性脂质的比例增加。角蛋白丝动力学在 RH=80-85%时发生突然变化,从完全刚性变为刚性骨架和可移动突出端的结构。加热对脂质流动性有强烈影响,但对角蛋白丝的影响较弱。研究结果为 SC 成分如何受水合作用和加热影响提供了新的分子见解,并提高了对与温度升高和 SC 水合作用相关的增强 SC 通透性的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ebb/3633950/51a872c409cc/pone.0061889.g001.jpg

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