Lowenstein P R, González Solveyra C, Cardinali D P
J Pineal Res. 1984;1(3):207-13. doi: 10.1111/j.1600-079x.1984.tb00212.x.
As a part of a study aiming to characterize the physiological and pharmacological significance of the high affinity pineal benzodiazepine (BZP) binding sites reported previously, we examined the uptake of the BZP derivative 3H-flunitrazepam (FNZP) by rat pineal glands in vitro. At 37 degrees C, 3H-radioactivity was taken up by tissue up to a pineal/medium concentration of about 12, while at 0 degrees C the uptake amounted to only one-third that at 37 degrees C. Reciprocal of uptake analyzed by Lineweaver-Burk plots indicated apparent Km's of 1.74 and 1.45 microM, and Vmax's of 1.32 and 1.04 pmol per min per mg tissue, for control and superior cervical ganglionectomized rats, respectively, suggesting that the neural compartment does not participate significantly in 3H-FNZP uptake. Cerebral cortex explants of similar size and weight as the pineal ones took up 3H-FNZP to a maximum tissue/medium concentration of about 2. Neither pineal nor cerebral cortex 3H-radioactivity uptake exhibited significant changes as a function of time of day. A number of agents, including several BZP analogues, cocaine, desipramine, melatonin, fluoxetine, nomifensine, and dipiridamol, as well as changes in the ionic environment or metabolic inhibitors, did not affect 3H-FNZP uptake significantly. Other tissues, such as liver, muscle, kidney, adrenal gland, or anterior pituitary, took up 3H-radioactivity to tissue concentrations slightly lower than those of the cerebral cortex, suggesting that drug liposolubility accounted only to a limited extent for the high in vitro uptake detected in incubated pineals.
作为一项旨在表征先前报道的高亲和力松果体苯二氮䓬(BZP)结合位点的生理和药理学意义的研究的一部分,我们在体外研究了大鼠松果体对BZP衍生物3H-氟硝西泮(FNZP)的摄取。在37℃时,组织摄取3H放射性,直至松果体/培养基浓度约为12,而在0℃时,摄取量仅为37℃时的三分之一。通过Lineweaver-Burk图分析的摄取倒数表明,对照大鼠和颈上神经节切除大鼠的表观Km分别为1.74和1.45μM,Vmax分别为每分钟每毫克组织1.32和1.04 pmol,这表明神经部分对3H-FNZP摄取的参与不显著。与松果体大小和重量相似的大脑皮质外植体摄取3H-FNZP,最大组织/培养基浓度约为2。松果体和大脑皮质的3H放射性摄取均未随一天中的时间呈现显著变化。包括几种BZP类似物、可卡因、地昔帕明、褪黑素、氟西汀、诺米芬辛和双嘧达莫在内的多种药物,以及离子环境变化或代谢抑制剂,均未显著影响3H-FNZP摄取。其他组织,如肝脏、肌肉、肾脏、肾上腺或垂体前叶,摄取3H放射性至组织浓度略低于大脑皮质,这表明药物脂溶性仅在有限程度上解释了在孵育的松果体中检测到的高体外摄取。