Bajsert Julia, De Glas Valérie, Faway Emilie, Lambert de Rouvroit Catherine, Pérez-Aso Miguel, Cook Paul W, Poumay Yves
NARILIS-Faculty of Medicine, University of Namur, Namur, Belgium.
Provital S.A., Barcelona, Spain.
JID Innov. 2024 Jun 28;4(5):100298. doi: 10.1016/j.xjidi.2024.100298. eCollection 2024 Sep.
The Reconstructed Human Epidermis (RHE) model derived from epidermal keratinocytes offers an ethical and scientific alternative to animal experimentation, particularly in cutaneous toxicology and dermatological research, where the elimination of animal cruelty is of paramount importance. Thus, we compared commercially available chemically defined animal origin-free (cdAOF) supplements, designed for regenerative medicine, to the widely utilized supplement (human keratinocyte growth supplement), which contains growth factors and bovine pituitary extract. Herein we present the extended characterization of RHE derived from newborn, adult, and immortalized N/telomerase reverse transcriptase keratinocytes under cdAOF conditions. Culture of RHE in the cdAOF media produced histological features that were similar to that produced using human keratinocyte growth supplement, with the exception that the basal keratinocytes were less cylindrical. Additionally, immunolocalization of involucrin in the basal layer and increased mRNA expression of several inflammatory-proliferative markers were observed under cdAOF conditions. In RHEs cultured in cdAOF media, expression and immunolocalization of other expected markers of keratinization were similar, while monitoring of barrier function (transepithelial electrical resistance) revealed results that were statistically equal to, or lower than those observed in RHE cultured in human keratinocyte growth supplement. Our study indicates that reconstruction of RHE was accomplished under cdAOF culture conditions and that further refinement could promote an expanded use beyond regenerative medicine, for in vitro toxicology applications.
源自表皮角质形成细胞的重建人表皮(RHE)模型为动物实验提供了一种伦理和科学的替代方案,特别是在皮肤毒理学和皮肤病学研究中,消除动物虐对待至关重要。因此,我们将用于再生医学的市售化学成分明确的无动物源(cdAOF)补充剂与广泛使用的含有生长因子和牛垂体提取物的补充剂(人角质形成细胞生长补充剂)进行了比较。在此,我们展示了在cdAOF条件下,源自新生儿、成人和永生化N/端粒酶逆转录酶角质形成细胞的RHE的扩展特征。在cdAOF培养基中培养的RHE产生的组织学特征与使用人角质形成细胞生长补充剂产生的特征相似,只是基底角质形成细胞的柱状形态不那么明显。此外,在cdAOF条件下观察到了基底层中兜甲蛋白的免疫定位以及几种炎症增殖标志物的mRNA表达增加。在cdAOF培养基中培养的RHE中,其他预期的角质化标志物的表达和免疫定位相似,而屏障功能监测(经上皮电阻)显示的结果在统计学上与在人角质形成细胞生长补充剂中培养的RHE观察到的结果相当或更低。我们的研究表明,在cdAOF培养条件下完成了RHE的重建,进一步优化可促进其在再生医学之外的体外毒理学应用中的更广泛使用。