CTIBIOTECH, Meyzieu-Lyon, France.
BASF Beauty Care Solutions, Lyon, France.
Cell Prolif. 2019 Jan;52(1):e12524. doi: 10.1111/cpr.12524. Epub 2018 Nov 6.
Sebaceous glands maintain skin homeostasis by producing sebum. Low production can induce hair loss and fragile skin. Overproduction provokes seborrhoea and may lead to acne and inflammatory events. To better study sebaceous gland maintenance, sebocyte maturation, lipid production and ageing or inflammatory processes, we developed innovative 3D ex vivo models for human sebaceous glands.
Culture conditions and analytical methods optimized on sebocyte monolayers were validated on extracted sebaceous glands and allowed the development of two 3D models: (a) "air-liquid" interface and (b) human fibronectin-coated "sandwich" method. Lipid production was assessed with microscopy, fluorometry or flow cytometry analysis after Nile Red staining. Specific lipids (particularly squalene and peroxidized squalene) were measured by Gas or liquid Chromatography and Mass spectrometry.
This study allowed us to select appropriate conditions and design Seb4Gln culture medium inducing sebocyte proliferation and neutral lipid production. The "air-liquid" model was appropriate to induce sebocyte isolation. The "sandwich" model enabled sebaceous gland maintenance up to 42 days. A treatment with Insulin Growth Factor-1 allowed validation of the model as we succeeded in mimicking dynamic lipid overproduction.
Functional sebocyte maturation and physiological maintenance were preserved up to 6 weeks in our models. Associated with functional assays, they provide a powerful platform to mimic physiological skin lipid metabolism and to screen for active ingredients modulating sebum production.
皮脂腺通过分泌皮脂来维持皮肤的稳态。皮脂分泌不足会导致脱发和皮肤脆弱,分泌过多则会引起皮脂溢性皮炎,甚至导致痤疮和炎症性病变。为了更好地研究皮脂腺的维持、成熟、脂质产生和老化或炎症过程,我们开发了用于人皮脂腺的创新型 3D 体外模型。
在皮脂细胞单层上优化的培养条件和分析方法,经过提取的皮脂腺验证后,可开发出两种 3D 模型:(a)“气-液”界面和(b)人纤维连接蛋白包被的“三明治”法。用尼罗红染色后通过显微镜、荧光计或流式细胞术分析评估脂质产生。用气相或液相色谱和质谱法测量特定脂质(特别是角鲨烯和过氧化物化角鲨烯)。
本研究使我们能够选择合适的条件并设计 Seb4Gln 培养基来诱导皮脂细胞增殖和中性脂质产生。“气-液”模型适合诱导皮脂细胞分离。“三明治”模型可维持皮脂腺长达 42 天。用胰岛素样生长因子-1(IGF-1)处理可验证模型,因为我们成功模拟了脂质的动态过度产生。
在我们的模型中,功能性皮脂细胞成熟和生理维持可保持长达 6 周。与功能测定相结合,它们提供了一个强大的平台来模拟生理皮肤脂质代谢,并筛选调节皮脂产生的活性成分。