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首页> 外文期刊>European journal of pharmaceutical sciences >Comparative SAXS and DSC study on stratum corneum structural organization in an epidermal cell culture model (ROC): Impact of cultivation time
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Comparative SAXS and DSC study on stratum corneum structural organization in an epidermal cell culture model (ROC): Impact of cultivation time

机译:SAXS和DSC在表皮细胞培养模型(ROC)中对角质层结构组织的比较研究:培养时间的影响

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Cell cultured skin equivalents present an alternative for dermatological in vitro evaluations of drugs and excipients as they provide the advantage of availability, lower variability and higher assay robustness compared to native skin. For penetration/permeation studies, an adequate stratum corneum barrier similar to that of human stratum corneum is, however, a prerequisite. In this study, the stratum corneum lipid organization in an epidermal cell culture model based on rat epidermal keratinocytes (REK organotypic culture, ROC) was investigated by small-angle X-ray scattering (SAXS) in dependence on ROC cultivation time and in comparison to native human and rat stratum cornea. In addition, the thermal phase behavior was studied by differential scanning calorimetry (DSC) and barrier properties were checked by measurements of the permeability of tritiated water. The development of the barrier of ROC SC obtained at different cultivation times (7, 14 and 21 days at the air-liquid interface) was connected with an increase in structural order of the SC lipids in SAXS measurements: Already cultivation for 14 days at the air-liquid interface resulted overall in a competent SC permeability barrier and SC lipid organization. Cultivation for 21 days resulted in further minor changes in the structural organization of ROC SC. The SAXS patterns of ROC SC had overall large similarities with that of human SC and point to the presence of a long periodicity phase with a repeat distance of about 122 ?, e.g. slightly smaller than that determined for human SC in the present study (127 ?). Moreover, SAXS results also indicate the presence of covalently bound ceramides, which are crucial for a proper SC barrier, although the corresponding thermal transitions were not clearly detectable by DSC. Due to the competent SC barrier properties and high structural and organizational similarity to that of native human SC, ROC presents a promising alternative for in vitro studies, particularly as it can be obtained under overall rather straightforward cell culture conditions and thus low assay costs.
机译:细胞培养的皮肤等效物为药物和赋形剂的皮肤病学体外评估提供了一种替代方法,因为与天然皮肤相比,它们具有可用性,较低的变异性和较高的测定稳定性等优点。对于渗透/渗透研究,与人类角质层相似的足够的角质层屏障是前提。在这项研究中,通过小角度X射线散射(SAXS)研究了基于大鼠表皮角质形成细胞(REK有机型培养物,ROC)的表皮细胞培养模型中的角质层脂质组织,并与ROC培养时间进行了比较。天然人类和大鼠角膜层。另外,通过差示扫描量热法(DSC)研究了热相行为,并通过测量tri化水的渗透性检查了阻隔性能。在SAXS测量中,不同培养时间(在气液界面7、14和21天)获得的ROC SC屏障的发展与SC脂质结构顺序的增加有关:气液界面总体上导致有效的SC渗透屏障和SC脂质组织。培养21天导致ROC SC的结构组织发生了进一步的细微变化。 ROC SC的SAXS模式总体上与人类SC的相似性很高,并指出存在较长的周期性相位,重复距离约为122。略小于本研究中确定的人类SC(127?)。此外,SAXS结果还表明存在共价键合的神经酰胺,这对于适当的SC屏障至关重要,尽管DSC不能清楚地检测到相应的热转变。由于出色的SC屏障特性以及与天然人SC的高度结构和组织相似性,ROC为体外研究提供了一种有希望的替代方法,特别是因为它可以在整体相当简单的细胞培养条件下获得,因此检测成本低。

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