更好地了解暴露物,以维护人类健康

Y. Minamiyama, S. Takemura, H. Ichikawa, Toshikazu Yoshikawa
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引用次数: 0

摘要

长期接触环境因素和化学品会损害人体健康。一个被称为暴露量的新概念是指暴露的总量及其对健康的影响。京都立大学生命与环境科学研究生院应用生命科学系食品卫生与环境健康系Yukiko Minamiyama教授正在探索生活方式因素如何减少暴露并维持人体健康,以及某些生活方式的改变如何控制或避免慢性氧化应激。她和她的团队正在深入研究暴露性和慢性氧化应激的概念,以增强对人类的理解,促进明智的、有益的变化。Minamiyama正在与氧化应激领域的首席研究员Toshikazu Yoshikawa博士、同志社大学生命与医学科学学院的Hiroshi Ichikawa博士以及大阪城市大学医学研究生院的Shigekazu Takemura博士合作。Minamiyama和他的团队认为,控制自由基和活性氧(ROS)可以预防或改善疾病。虽然食品添加剂是不可避免的,但Minamiyama认为食用抗氧化剂可以帮助减少氧化应激和疾病。在一项研究中,研究人员研究了食品添加剂对雄性大鼠大脑和精子/睾丸的体外和体内影响,重点关注氧化应激,发现食品添加剂甜菊糖苷诱导精子产生ROS,导致精子功能障碍。他们还发现,用抗氧化剂-生育酚治疗可以显著改善氧化应激。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Better understanding the exposome in order to maintain human health
Cumulative exposure to environmental factors and chemicals can be damaging to human health. A new concept called the exposome refers to the totality of exposures and their impact on health. Professor Yukiko Minamiyama, Food Hygiene and Environmental Health Division of Applied Life Science, Graduate School of Life and Environmental Sciences, Kyoto Prefectural University, is exploring how lifestyle factors could reduce exposure and maintain human health and also how certain lifestyle changes could control or avoid chronic oxidative stress. She and her team are delving deeper into the concept of the exposome and chronic oxidative stress to enhance understanding and facilitate informed, beneficial changes for humankind. Minamiyama is collaborating with a leading researcher on oxidative stress Dr Toshikazu Yoshikawa, Dr Hiroshi Ichikawa of Doshisha University School of Life and Medical Sciences and Dr Shigekazu Takemura of Osaka Metropolitan University Graduate School of Medicine. Minamiyama and the team believe controlling free radicals and reactive oxygen species (ROS) can prevent or improve diseases. Although food additives are unavoidable, Minamiyama believes that consuming antioxidants could help reduce oxidative stress and disease. In one study , the researchers investigated the in vitro and in vivo effects of food additives on the male rat brain and sperm/testes, with an emphasis on oxidative stress and found that the food additive stevioside induced ROS production in sperm and resulted in sperm dysfunction. They also discovered that treatment with the antioxidant alpha-tocopherol significantly improved oxidative stress.
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