Kellom T A, O'Conner J L
Department of Physiology and Endocrinology, Medical College of Georgia, Augusta 30912.
Biochim Biophys Acta. 1991 Mar 19;1092(1):101-9. doi: 10.1016/0167-4889(91)90183-x.
We have shown that 4 ng luteinizing hormone releasing hormone (LHRH) pulses induced significantly greater luteinizing hormone (LH) release from proestrous rat superfused anterior pituitary cells with no cycle related differences in follicle stimulating hormone (FSH). Current studies gave 8 ng LHRH in various pulse regimens to study amplitude, duration and frequency effects on LH and FSH secretion from estrous 0800, proestrous 1500 and proestrous 1900 cells. Regimen 1 gave 8 ng LHRH as a single bolus once/h; regimen 2 divided the 8 ng into 3 equal 'minipulses' given at 4 min intervals to extend duration; regimen 3 gave the 3 'minipulses' at 10 min intervals, thereby further extending duration: regimen 4 was the same as regimen 2, except that the 3 'minipulses' were given at a pulse frequency of 2 h rather than 1 h. In experiment 1, all four regimens were employed at proestrus 1900. FSH was significantly elevated by all 8 ng regimens as compared to 4 ng pulses; further, 8 ng divided into 3 equal 'minipulses' separated by 4 min at 1 and 3 h frequencies (regimens 2 and 4) resulted in FSH secretion that was significantly greater than with either a single 8 ng bolus (regimen 1) or when the 'minipulses' were separated by 10 min (regimen 3). In experiment 2, at proestrus 1500, FSH response to the second pulse of regimen 4 was significantly greater than in regimen 2; LH release was significantly suppressed at pulse 2 compared to regimen 2 accentuating divergent FSH secretion. At estrus 0800, FSH response to the second pulse of regimen 4 was significantly stimulated FSH at proestrus 1900, 1500 and estrus 0800, FSH divergence was most marked at proestrus 1500. These data indicate a potential role for hypothalamic LHRH secretory pattern in inducing divergent gonadotropin secretion in the rat.
我们已经表明,4纳克促黄体生成素释放激素(LHRH)脉冲显著增加了动情前期大鼠体外灌流垂体前叶细胞促黄体生成素(LH)的释放,而卵泡刺激素(FSH)的释放无周期相关差异。当前研究采用不同脉冲方案给予8纳克LHRH,以研究其幅度、持续时间和频率对动情期08:00、动情前期15:00和动情前期19:00细胞LH和FSH分泌的影响。方案1给予8纳克LHRH单次推注,每小时1次;方案2将8纳克分为3个相等的“微脉冲”,每隔4分钟给予1次,以延长持续时间;方案3以10分钟的间隔给予3个“微脉冲”,从而进一步延长持续时间;方案4与方案2相同,不同之处在于3个“微脉冲”的脉冲频率为2小时而非1小时。在实验1中,所有4种方案均在动情前期19:00采用。与4纳克脉冲相比,所有8纳克方案均使FSH显著升高;此外,8纳克分为3个相等的“微脉冲”,在1小时和3小时频率下每隔4分钟给予1次(方案2和4),导致FSH分泌显著高于单次8纳克推注(方案1)或“微脉冲”间隔10分钟(方案3)的情况。在实验2中,在动情前期15:00,方案4第二个脉冲的FSH反应显著大于方案2;与方案2相比,脉冲2时LH释放显著受抑制,突出了FSH分泌的差异。在动情期08:00,方案4第二个脉冲的FSH反应显著刺激了FSH。在动情前期19:00、15:00和动情期08:00,FSH差异在动情前期15:00最为明显。这些数据表明下丘脑LHRH分泌模式在诱导大鼠促性腺激素分泌差异方面具有潜在作用。