日间蓝光增强夜间昼夜节律褪黑激素对人类前列腺癌生长的抑制作用

Comparative medicine Pub Date : 2015-12-01
Robert T Dauchy, Aaron E Hoffman, Melissa A Wren-Dail, John P Hanifin, Benjamin Warfield, George C Brainard, Shulin Xiang, Lin Yuan, Steven M Hill, Victoria P Belancio, Erin M Dauchy, Kara Smith, David E Blask
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引用次数: 0

摘要

光控制松果体褪黑激素的分泌,并在时间上协调正常组织和肿瘤组织的新陈代谢和生理昼夜节律。我们以前的研究表明,白天白光透过带蓝光(与透明光相比)的啮齿动物笼子后,循环中夜间褪黑激素的峰值水平要高出 7 倍。在此,我们测试了白天蓝光放大夜间褪黑激素能增强对前列腺癌异种移植物代谢、信号活动和生长的抑制作用这一假设。在12:12小时的光暗循环下,与被关在透明笼子里的雄性裸鼠相比,被关在蓝光笼子里的大鼠(透射率增加到462-484纳米,红光减少到大于640纳米)在黑夜中期(时间,2400)的血浆褪黑激素峰值水平高出6倍多,而在光照中期(1200),两组大鼠的血浆褪黑激素水平都很低(小于3 pg/mL)。蓝笼大鼠动脉血浆中亚油酸、葡萄糖、乳酸、pO2、pCO2、胰岛素、瘦素和皮质酮的昼夜节律与透明笼大鼠的相应节律相比被打乱。植入组织分离的 PC3 人类前列腺癌异种移植物后,与透明笼养大鼠相比,蓝色笼养大鼠的肿瘤生长潜伏期和生长速度明显延迟,肿瘤的 cAMP 水平、亚油酸的摄取-代谢、有氧糖酵解(沃伯格效应)和生长信号活性降低。这些数据表明,白天将裸鼠暴露在蓝光下可提高夜间褪黑激素水平,从而显著降低人类前列腺癌的代谢、信号传导和增殖活动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Daytime Blue Light Enhances the Nighttime Circadian Melatonin Inhibition of Human Prostate Cancer Growth.

Light controls pineal melatonin production and temporally coordinates circadian rhythms of metabolism and physiology in normal and neoplastic tissues. We previously showed that peak circulating nocturnal melatonin levels were 7-fold higher after daytime spectral transmittance of white light through blue-tinted (compared with clear) rodent cages. Here, we tested the hypothesis that daytime blue-light amplification of nocturnal melatonin enhances the inhibition of metabolism, signaling activity, and growth of prostate cancer xenografts. Compared with male nude rats housed in clear cages under a 12:12-h light:dark cycle, rats in blue-tinted cages (with increased transmittance of 462-484 nm and decreased red light greater than 640 nm) evinced over 6-fold higher peak plasma melatonin levels at middark phase (time, 2400), whereas midlight-phase levels (1200) were low (less than 3 pg/mL) in both groups. Circadian rhythms of arterial plasma levels of linoleic acid, glucose, lactic acid, pO2, pCO2, insulin, leptin, and corticosterone were disrupted in rats in blue cages as compared with the corresponding entrained rhythms in clear-caged rats. After implantation with tissue-isolated PC3 human prostate cancer xenografts, tumor latency-to-onset of growth and growth rates were markedly delayed, and tumor cAMP levels, uptake-metabolism of linoleic acid, aerobic glycolysis (Warburg effect), and growth signaling activities were reduced in rats in blue compared with clear cages. These data show that the amplification of nighttime melatonin levels by exposing nude rats to blue light during the daytime significantly reduces human prostate cancer metabolic, signaling, and proliferative activities.

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