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首页> 外文期刊>Molecules >Therapeutic Effects of Cold-Pressed Perilla Oil Mainly Consisting of Linolenic acid, Oleic Acid and Linoleic Acid on UV-Induced Photoaging in NHDF Cells and SKH-1 Hairless Mice
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Therapeutic Effects of Cold-Pressed Perilla Oil Mainly Consisting of Linolenic acid, Oleic Acid and Linoleic Acid on UV-Induced Photoaging in NHDF Cells and SKH-1 Hairless Mice

机译:主要由亚麻酸,油酸和亚油酸组成的冷压紫苏油对紫外线诱导NHDF细胞和SKH-1无毛小鼠光老化的治疗作用

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Positive physiological benefits of several plant oils on the UV-induced photoaging have been reported in some cell lines and model mice, but perilla oil collected from the seeds of Perilla frutescens L. has not been investigated in this context. To study the therapeutic effects of cold-pressed perilla oil (CPO) on UV-induced photoaging in vitro and in vivo, UV-induced cellular damage and cutaneous photoaging were assessed in normal human dermal fibroblasts (NHDFs) and HR-1 hairless mice. CPO contained five major fatty acids including linolenic acid (64.11%), oleic acid (16.34%), linoleic acid (11.87%), palmitic acid (5.06%), and stearic acid (2.48%). UV-induced reductions in NHDF cell viability, ROS production, SOD activity, and G2/M cell cycle arrest were remarkably improved in UV + CPO treated NHDF cells as compared with UV + Vehicle treated controls. Also, UV-induced increases in MMP-1 protein and galactosidase levels were remarkably suppressed by CPO. In UV-radiated hairless mice, topical application of CPO inhibited an increase in wrinkle formation, transepidermal water loss (TEWL), erythema value, hydration and melanin index on dorsal skin of UVB-irradiated hairless mice. CPO was observed to similarly suppress UV-induced increases in epidermal thickness, mast cell numbers, and galactosidase and MMP-3 mRNA levels. These results suggest CPO has therapeutic potential in terms of protecting against skin photoaging by regulating skin morphology, histopathology and oxidative status.
机译:在某些细胞系和模型小鼠中,已经报道了几种植物油对紫外线诱导的光老化的积极生理益处,但是在此背景下尚未研究从紫苏种子中收集的紫苏油。为了研究冷压紫苏油(CPO)在体外和体内对UV诱导的光老化的治疗效果,在正常人皮肤成纤维细胞(NHDF)和HR-1无毛小鼠中评估了UV诱导的细胞损伤和皮肤光老化。 CPO包含五种主要脂肪酸,包括亚麻酸(64.11%),油酸(16.34%),亚油酸(11.87%),棕榈酸(5.06%)和硬脂酸(2.48%)。与UV +载体处理的对照组相比,UV + CPO处理的NHDF细胞中,UV诱导的NHDF细胞活力,ROS产生,SOD活性和G2 / M细胞周期停滞的降低显着改善。此外,CPO显着抑制了UV诱导的MMP-1蛋白和半乳糖苷酶水平的增加。在紫外线辐射的无毛小鼠中,局部应用CPO可抑制紫外线辐射的无毛小鼠背部皮肤的皱纹形成,表皮失水(TEWL),红斑值,水合作用和黑色素指数增加。观察到CPO同样抑制紫外线引起的表皮厚度,肥大细胞数量以及半乳糖苷酶和MMP-3 mRNA水平的增加。这些结果表明,在调节皮肤形态,组织病理学和氧化状态方面,CPO具有预防皮肤光老化的治疗潜力。

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