Matsuoka Takaaki, Dan Katsuaki, Takanashi Keita, Ogino Akihiro
Omotesando Helene Clinic, Minato-ku 107-0062, Tokyo, Japan.
Department of Pathophysiology, Yokohama University of Pharmacy, Yokohama-shi 245-0066, Kanagawa, Japan.
J Funct Biomater. 2024 Oct 15;15(10):306. doi: 10.3390/jfb15100306.
The initial efficacy of placental extracts (Pla-Exts) and human mesenchymal stem-cell-derived exosomes (hMSC-Exo) against aging-induced stress in human dermal fibroblasts (HDFs) was examined. The effect of Pla-Ext alone, hMSC-Exo alone, the combined effect of Pla-Ext and hMSC-Exo, and the effect of hMSC-Exo (Pla/MSC-Exo) recovered from cultures with Pla-Ext added to hMSC were verified using collagen, elastin, and hyaluronic acid synthase mRNA levels for each effect. Cells were subjected to photoaging (UV radiation), glycation (glycation end-product stimulation), and oxidation (HO stimulation) as HDF stressors. Pla-Ext did not significantly affect normal skin fibroblasts with respect to intracellular parameters; however, a pro-proliferative effect was observed. Pla-Ext induced resistance to several stresses in skin fibroblasts (UV irradiation, glycation stimulation, HO stimulation) and inhibited reactive oxygen species accumulation following HO stimulation. Although the effects of hMSC-Exo alone or the combination of hMSC-Exo and Pla-Ext are unknown, pretreated hMSC-Exo stimulated with Pla-Ext showed changes that conferred resistance to aging stress. This suggests that Pla-Ext supplementation may cause some changes in the surface molecules or hMSC-Exo content (e.g., microRNA). In skin cells, the direct action of Pla-Ext and exosomes secreted from cultured hMSCs pretreated with Pla-Ext (Pla/MSC-Exo) also conferred resistance to early aging stress.
研究了胎盘提取物(Pla-Exts)和人骨髓间充质干细胞衍生外泌体(hMSC-Exo)对人皮肤成纤维细胞(HDFs)衰老诱导应激的初始疗效。通过检测胶原蛋白、弹性蛋白和透明质酸合酶的mRNA水平,验证了单独使用Pla-Ext、单独使用hMSC-Exo、Pla-Ext与hMSC-Exo的联合作用以及从添加了Pla-Ext的hMSC培养物中回收的hMSC-Exo(Pla/MSC-Exo)的效果。将细胞暴露于光老化(紫外线辐射)、糖基化(糖基化终产物刺激)和氧化(HO刺激)作为HDF应激源。Pla-Ext对正常皮肤成纤维细胞的细胞内参数没有显著影响;然而,观察到了促增殖作用。Pla-Ext诱导皮肤成纤维细胞对多种应激(紫外线照射、糖基化刺激、HO刺激)产生抗性,并抑制HO刺激后活性氧的积累。虽然单独使用hMSC-Exo或hMSC-Exo与Pla-Ext组合的效果尚不清楚,但用Pla-Ext刺激预处理的hMSC-Exo显示出对衰老应激产生抗性的变化。这表明补充Pla-Ext可能会导致表面分子或hMSC-Exo含量(如微小RNA)发生一些变化。在皮肤细胞中,Pla-Ext和用Pla-Ext预处理培养hMSC分泌的外泌体(Pla/MSC-Exo)的直接作用也赋予了对早期衰老应激的抗性。