甜菜提取物中葡萄糖基神经酰胺对人真皮成纤维细胞皮肤弹性和纤维连接蛋白产生影响的双盲研究

Mio Hori, S. Kishimoto, Yu Tezuka, H. Nishigori, K. Nomoto, U. Hamada, Y. Yonei
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引用次数: 29

摘要

目的:探讨甜菜提取物对女性干性皮肤和人真皮成纤维细胞皮肤弹性的影响。方法:为了评估口服甜菜提取物中含有的葡萄糖基神经酰胺(甜菜神经酰胺)的效果,我们对35名女性(平均年龄:40.9±4.2岁)进行了为期8周的双盲比较研究,这些女性的主观症状为皮肤干燥和角蛋白水分水平下降。该化合物以葡萄糖基神经酰胺的形式分别以0、0.6或1.8 mg/d给药3组(n=11、12、12)。结果:以下主观皮肤症状的得分显著提高:“关注皮肤暗沉”、“关注斑点或雀斑”、“皮肤粘稠、油性”、“皮肤粗糙、干燥”、“没有弹性、没有光泽”、“关注皮肤粗糙”、“眼袋”。此外,排汗量也有所改善。皮肤弹性试验(Cutometer)显示弹性指数(R2和R7)呈剂量依赖性改善。然而,我们无法证实神经酰胺在增加皮肤水分方面的作用,就像以前的研究报道的那样。在人类真皮成纤维细胞的实验中,添加甜菜神经酰胺促进了纤维连接蛋白的合成和mRNA的表达,但对成纤维细胞的增殖和胶原合成没有影响。结论:临床试验和实验结果表明,口服甜菜神经酰胺可刺激细胞内信号,并对细胞外基质产生有利影响,包括诱导纤维连接蛋白合成。此外,我们确认了对人类施用甜菜神经酰胺的安全性。
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Double-Blind Study on Effects of Glucosyl Ceramide in Beet Extract on Skin Elasticity and Fibronectin Production in Human Dermal Fibroblasts
Objective: To determine the effect of beet extract on skin elasticity in female volunteers with dry skin and in human dermal fibroblasts.Method: To assess the effects of oral administration of glucosyl ceramide contained in beet extract (beet ceramide), we conducted an 8-week double-blind comparison study with 35 females (mean age: 40.9±4.2 years) with mild subjective symptoms of dry skin and declining keratin moisture levels. The compound was administered as glucosyl ceramide at 0, 0.6, or 1.8 mg/day to 3 groups (n=11, 12, 12, respectively).Results: Scores improved significantly for the following subjective skin symptoms: “concerned about dull skin,” “concerned about spots or freckles,” “sticky, oily skin,” “coarse and desiccated skin,” “not elastic, not glossy,” “concerned about rough skin,” “bags under eyes.” In addition, perspiration levels improved. The skin elasticity test (Cutometer) indicated that the elasticity index (R2 and R7) improved in a dose-dependent manner. However, we were unable to confirm the effects of ceramide on increasing skin moisture as reported in previous studies. In experiments involving human dermal fibroblasts, addition of beet ceramide promoted fibronectin synthesis and mRNA expression but had no effect on fibroblast proliferation or collagen synthesis.Conclusion: Results from clinical trials and experiments suggested that oral ingestion of beet ceramide may stimulate intracellular signals and exert favorable effects on the extracellular matrix, including the induction of fibronectin synthesis. In addition, we confirmed the safety of administering beet ceramide to humans.
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