Martin J E, Kirk K L, Klein D C
Endocrinology. 1980 Jan;106(1):398-401. doi: 10.1210/endo-106-1-398.
The effects of 6-hydroxy-, 6-fluoro-, and 4,6-difluoromelatonin on the pituitary LH response to LHRH were studied in organ culture. Anterior pituitary glands obtained from 5-day-old female rats and maintained in culture in control medium for 24 h were incubated for an additional 6 h with the test substances. Medium LH content was determined by double antibody RIA. 6-Hydroxymelatonin, the primary metabolite of melatonin after iv administration, had no detectable effect on either basal or LHRH-stimulated release of LH when tested at concentrations up to 10(-6) M. This finding demonstrates that hydroxylation in position 6 will inactivate melatonin with regard to its pituitary effect. By contrast, 6-fluoro- and 4,6-difluoromelatonin at nanomolar concentrations both markedly suppressed the LH response to LHRH. Fluorine substitution for hydrogen in position 6, therefore, does not detectably interfere with activation of the pituitary melatonin receptor. Furthermore, in view of the increased strength of the carbon-fluorine bond compared to the carbon-hydrogen bond, the 6-fluoro analogs should be less susceptible than melatonin to inactivation by hydroxylation in position 6. These analogs, therefore, may be useful as long acting inhibitors of reproductive function in the intact animal.
在器官培养中研究了6-羟基褪黑素、6-氟褪黑素和4,6-二氟褪黑素对垂体促黄体生成素(LH)对促性腺激素释放激素(LHRH)反应的影响。从5日龄雌性大鼠获取的垂体前叶,在对照培养基中培养24小时后,再与受试物质一起孵育6小时。用双抗体放射免疫分析法测定培养基中LH的含量。静脉注射后褪黑素的主要代谢产物6-羟基褪黑素,在浓度高达10^(-6) M时进行测试,对基础或LHRH刺激的LH释放均未产生可检测到的影响。这一发现表明,6位的羟基化会使褪黑素在垂体效应方面失活。相比之下,纳摩尔浓度的6-氟褪黑素和4,6-二氟褪黑素均显著抑制了LH对LHRH的反应。因此,6位的氢被氟取代并不会明显干扰垂体褪黑素受体的激活。此外,鉴于碳-氟键比碳-氢键更强,6-氟类似物应该比褪黑素更不易因6位的羟基化而失活。因此,这些类似物可能作为完整动物生殖功能的长效抑制剂有用。