Emily C Hanselman, Sarah M Sywanycz, Paul A S Breslin
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Fifteen healthy eumenorrheic females were asked to track their urinary estrogen metabolite estrone-3-glucuronide (E3G) via a fertility monitor. The participants were tested using oral detection thresholds for glucose, sucralose and MDG during the E3G nadir at menstruation and E3G peak (>100 ng/mL) at peri-ovulation. Seven male participants were also tested for glucose detection thresholds over the same 2-wk interval. Female participants were also asked to rate their liking for glucose solutions at mildly sweet (450 mM) and moderately sweet (900 mM) concentrations. Detection thresholds for glucose, but not sucralose or MDG, decreased peri-ovulation during estrogen peak (P < 0.05), indicating enhanced sensitivity to glucose specifically. Males showed no change in glucose threshold over the 2 wk. Liking ratings for 900 mM glucose tended to increase during ovulation (P = 0.06). 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Seven male participants were also tested for glucose detection thresholds over the same 2-wk interval. Female participants were also asked to rate their liking for glucose solutions at mildly sweet (450 mM) and moderately sweet (900 mM) concentrations. Detection thresholds for glucose, but not sucralose or MDG, decreased peri-ovulation during estrogen peak (P < 0.05), indicating enhanced sensitivity to glucose specifically. Males showed no change in glucose threshold over the 2 wk. Liking ratings for 900 mM glucose tended to increase during ovulation (P = 0.06). 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引用次数: 0
摘要
最近的研究表明,当ATP存在时,小鼠味蕾细胞中的KATP通道通过使细胞去极化来增强葡萄糖味觉信号。与此相关,雌二醇已被证明通过关闭KATP通道增强人胰腺β细胞的葡萄糖感知。由于味觉组织有雌二醇受体,我们将这两个观察结果联系起来,并测试了雌二醇升高是否也会增强人类的味觉敏感性和对葡萄糖的喜爱。我们假设,在排卵前后,当女性参与者在月经周期中雌激素达到峰值时,葡萄糖(可代谢单糖)的口腔味觉检测阈值会降低,但三氯蔗糖或葡萄糖类似物甲基- d -葡萄糖吡喃苷(MDG)的口腔味觉检测阈值不会降低(这两种甜味剂都是不关闭KATP通道的非代谢甜味剂)。15名健康的痛经女性被要求通过生育监测仪跟踪她们的尿液雌激素代谢物雌酮-3-葡萄糖醛酸盐(E3G)。在月经期E3G最低点和排卵期E3G峰值(100 ng/mL)时,对参与者进行葡萄糖、三氯蔗糖和MDG的口服检测阈值测试。七名男性参与者也在同样的两周间隔内接受了葡萄糖检测阈值测试。女性参与者还被要求评价他们对轻度甜味(450毫米)和中度甜味(900毫米)浓度的葡萄糖溶液的喜爱程度。葡萄糖的检测阈值,而不是三氯蔗糖或MDG,降低了雌激素高峰期间的排卵期(p
The peri-ovulatory time period in humans is associated with increased taste sensitivity to glucose but not calorie-free sweeteners.
Recent research has shown that KATP channels in mouse taste bud cells enhance glucose taste signaling by depolarizing the cell when ATP is present. Relatedly, estradiol has been shown to enhance glucose sensing in human pancreatic β cells via closure of KATP channels. Since taste tissue has estradiol receptors, we linked these 2 observations and tested whether elevated estradiol may also enhance taste sensitivity and liking for glucose in humans. We hypothesized that around the time of ovulation, when estrogen peaks during the menstrual cycle in female participants, oral taste detection thresholds for glucose (metabolizable monosaccharide) would decrease but would not for sucralose or the glucose analog methyl-D-glucopyranoside (MDG) (both nonmetabolizable sweeteners that do not close KATP channels). Fifteen healthy eumenorrheic females were asked to track their urinary estrogen metabolite estrone-3-glucuronide (E3G) via a fertility monitor. The participants were tested using oral detection thresholds for glucose, sucralose and MDG during the E3G nadir at menstruation and E3G peak (>100 ng/mL) at peri-ovulation. Seven male participants were also tested for glucose detection thresholds over the same 2-wk interval. Female participants were also asked to rate their liking for glucose solutions at mildly sweet (450 mM) and moderately sweet (900 mM) concentrations. Detection thresholds for glucose, but not sucralose or MDG, decreased peri-ovulation during estrogen peak (P < 0.05), indicating enhanced sensitivity to glucose specifically. Males showed no change in glucose threshold over the 2 wk. Liking ratings for 900 mM glucose tended to increase during ovulation (P = 0.06). These observations are consistent with the idea that estrogen and/or other co-modulating hormones, such as luteinizing hormone and progesterone, enhance a metabolic signaling pathway during the peri-ovulatory phase.
期刊介绍:
Chemical Senses publishes original research and review papers on all aspects of chemoreception in both humans and animals. An important part of the journal''s coverage is devoted to techniques and the development and application of new methods for investigating chemoreception and chemosensory structures.