红果油对UVB照射下皮肤MMP-1基因表达和丙二醛水平的抗氧化作用

Monita Sugianto, A. Achadiyani, G. Nugraha
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引用次数: 2

摘要

背景:长期暴露于紫外线(UV)-B辐射会导致活性氧(ROS)的形成。此外,ROS会诱导丙二醛的形成,增加基质金属蛋白酶(MMP)-1的表达。对抗自由基影响的一种策略是食用抗氧化剂。本研究旨在分析红果油(RFO)对暴露于UVB射线下的MMP-1表达和丙二醛水平的抗氧化作用。材料与方法:雄性Wistar大鼠30只,随机分为5组。P0组不给予治疗,P1组仅UVB光照射,P2组UVB光照射并给予0.5 mL/200 g体重(BW)的RFO, P3组UVB光照射并给予1 mL/200 g体重(BW)的RFO, P4组UVB光照射并给予2 mL/200 g体重(BW)的RFO。检测实验动物MMP-1表达及丙二醛水平。RFO可通过β-胡萝卜素和生育酚含量进行鉴定。结果:RFO中检测到β -胡萝卜素和生育酚。RFO显著降低MMP-1表达(p0.05)。结论:我们的研究表明含有生育酚和β-胡萝卜素的RFO可以降低MMP-1的表达,但不影响暴露于UVB射线下的丙二醛水平。降低丙二醛水平和MMP-1表达的有效剂量为1 mL/200 g BW。关键词:红果油,抗氧化剂,皮肤,MMP-1表达,丙二醛,UVB射线,光老化
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Antioxidant Effects of Red Fruit Oil on MMP-1 Gene Expression and Malondialdehyde Levels on Skin Exposed to UVB Rays
Background: Chronic exposure ultraviolet (UV)-B radiation causes reactive oxygen species (ROS) formation. Furthermore, ROS will induce the formation of malondialdehyde and increase matrix metalloproteinase (MMP)-1 expression. One strategy against the free radicals effects is by consuming antioxidants. This study aims to analyze the antioxidants effect of red fruit oil (RFO) on MMP-1 expression and malondialdehyde levels due to exposure to UVB rays.Materials and Methods: Thirty male Wistar rats were divided into 5 groups. The P0 group was not given treatment, the P1 group was only exposed to UVB light, the P2 group was exposed to UVB light and given 0.5 mL/200 g body weight (BW) of RFO, the P3 group was exposed to UVB light and given 1 mL/200 g BW of RFO, and group P4 exposed to UVB rays and given 2 mL/200 g BW of RFO. Experimental animals would be examined for MMP-1 expression and malondialdehyde level. RFO would be identified with β-carotene and tocopherol content.Results: Beta-carotene and tocopherol were detected in RFO. RFO reduced significantly MMP-1 expression (p<0.05) in P2 group (0.73±1.27), P3 group (0.63±0.95), P4 group (9.56±20.97) compared group P1 (48.07±65.58). However, RFO did not reduce malondialdehyde levels (p>0.05).Conclusion: Our research demonstrates RFO containing tocopherol and β-carotene can reduce the MMP-1 expression, but does not affect malondialdehyde levels due to exposure to UVB rays. An effective dose that can reduce malondialdehyde levels and MMP-1 expression is 1 mL/200 g BW.Keywords: red fruit oil, antioxidant, skin, MMP-1 expression, malondialdehyde, UVB rays, photoaging 
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