首页> 外文期刊>Journal of medicinal food >Sesamum indicum L. Oil and Sesamin Induce Auditory-Protective Effects Through Changes in Hearing Loss-Related Gene Expression
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Sesamum indicum L. Oil and Sesamin Induce Auditory-Protective Effects Through Changes in Hearing Loss-Related Gene Expression

机译:SesaMum Indicum L. Oil和SeSamin通过变化与听力丧失相关基因表达的变化诱导听觉保护作用

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摘要

Changing consumption patterns and increasing health awareness, especially in Europe, are resulting in an increased demand for sesame seeds. In 2016, Asia imported the highest quantity of sesame seeds, followed by Europe and North America. We examined, for the first time, the effects of treatment with sesame oil and sesamin in hearing impairment models. Sesame oil exhibited an ameliorative effect on auditory impairment in a hair cell line in zebrafish and mice. In ototoxic zebrafish larvae, neuromasts and otic cells increased in numbers because of sesame oil. Furthermore, auditory function in noise-induced hearing loss (NIHL) was studied through auditory brainstem response to evaluate the therapeutic effects of sesame oil. Sesame oil reduced the hearing threshold shift in response to clicks and 8, 16-kHz tone bursts in NIHL mice. Auditory-protective effect of sesame oil was seen in zebrafish and mice; therefore, we used chromatographic analysis to study sesamin, which is the major effective factor in sesame oil. To investigate its effects related to auditory function, we studied the hearing-related gene, Tecta, using the 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl-tetrazoliumbromide (MTT) assay. Auditory cell proliferation was induced by treatment with sesame oil and sesamin using Tecta (Tectorin Alpha) regulation. The expression of Tecta increases in the apex area of the cochlear hair cells as they grow, and their activity is enhanced by sesame oil and sesamin. These results provide a novel mechanistic insight into the sesame oil activities and suggest that sesamin, the key constituent in sesame oil, is responsible for its auditory function related benefits, including protection of auditory cells and reversal of their impairments.
机译:不断变化的消费模式和提高健康意识,特别是在欧洲,导致对芝麻种子的需求增加。 2016年,亚洲进口了最多的芝麻籽,其次是欧洲和北美。我们首次审查了用芝麻油和芝麻素治疗的影响听力障碍模型的影响。芝麻油对斑马鱼和小鼠的毛细胞系中听觉障碍的改进作用。在耳毒性斑马鱼幼虫中,由于芝麻油,神经孢状物和耳机的数量增加。此外,通过听觉脑干反应研究了噪声引起的听力损失(NIH1)的听觉功能,以评估芝麻油的治疗效果。芝麻油响应点击和8,16-kHz音调在NIHL小鼠中减少了听力阈值班。在斑马鱼和小鼠中看到芝麻油的听觉保护作用;因此,我们使用色谱分析来研究SESAMIN,这是芝麻油的主要有效因素。为了研究其与听觉功能相关的效果,我们研究了使用3-(4,5-二甲基噻唑-2-基)-2,5-二苯基 - 四唑溴铵(MTT)测定来研究听力相关的基因TectA。通过使用Tecta(Tectorin alpha)调节,通过用芝麻油和芝麻素治疗诱导听觉细胞增殖。 Tecta的表达在耳蜗毛细胞的顶点增加时,它们生长,芝麻油和芝麻酸的活性增强。这些结果为芝麻油活动提供了一种新的机制洞察力,并表明SESAMIN,芝麻油的关键组成部分负责其与听觉功能相关的福利,包括保护听觉细胞和障碍的逆转。

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