Gandolfi O, Barbaccia M L, Costa E
Life Sci. 1985 Feb 25;36(8):713-21. doi: 10.1016/0024-3205(85)90190-0.
In minces prepared from the frontal cortex of rats treated with ketanserin (10 mg/kg i.p.) or mianserin (5 mg/kg i.p.) twice daily for 21 days, the Vmax of the adenylate cyclase stimulated by NE (100 microM) is attenuated, suggesting that ketanserin and mianserin share with a number of antidepressants the ability to attenuate the adenylate cyclase stimulation by NE. Ketanserin, given with the above mentioned dose schedule for 7 consecutive days, reduced the Bmax of 5HT2 recognition sites but failed to change either the Bmax or the apparent Kd of H-mianserin binding. A significant decrease in the Bmax of 5HT2 binding sites is elicited also by a single injection of mianserin (1). This drug also down-regulates its own binding when given twice daily for 3 weeks. From this and other information (2,3), it is concluded that ketanserin and mianserin bind to distinct recognition sites. The possibility that 5HT2 and mianserin recognition sites are functionally related and that serotonergic synapses are modulated by multiple chemical signals might be considered.
在用酮色林(10毫克/千克腹腔注射)或米安色林(5毫克/千克腹腔注射)每天两次连续处理21天的大鼠额叶皮质制备的碎末中,去甲肾上腺素(100微摩尔)刺激的腺苷酸环化酶的Vmax减弱,这表明酮色林和米安色林与许多抗抑郁药一样,具有减弱去甲肾上腺素对腺苷酸环化酶刺激的能力。按上述给药方案连续7天给予酮色林,可降低5HT2识别位点的Bmax,但未能改变H-米安色林结合的Bmax或表观解离常数。单次注射米安色林(1)也可引起5HT2结合位点Bmax的显著降低。当每天两次给药3周时,这种药物也会下调其自身的结合。根据这些及其他信息(2,3),得出酮色林和米安色林结合于不同识别位点的结论。可以考虑5HT2和米安色林识别位点在功能上相关以及血清素能突触受多种化学信号调节的可能性。