泪液分泌兴奋剂:西格玛受体和药物影响。

S Shirolkar, R D Schoenwald, C F Barfknecht, E Xia, B Cheng, Y Iwai, C C Ignace, S Vidvauns, R E Newton
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引用次数: 8

摘要

将3H-DTG(1.3-二(2-[5-3H]甲基苯基)胍)或3h -氟哌啶醇加入到sigma受体(25 nM)中,在25 nM的spiperone存在下,与浓度增加的溴化辛衍生物(苯基烷基胺)孵育;10(-9)至10(-2)M)的膜均质悬浮液。两个衍生物的IC50值在3.2到8.8 nM之间。首选衍生物7A (N,N'-二甲基-2-苯基乙胺)对3h -氟哌啶醇的IC50为7.8 nM,但对3H-DTG的亲和力较低(IC50 = 900 nM)。应用Bromberg技术[j],用该化合物刺激泪腺切片或分离的完整泪腺细胞后,测定体外蛋白分泌率。体外蛋白质分泌率与蛋白质释放量的增加呈剂量-反应关系,可达10(-8)至10(-4)M浓度的溴化辛衍生物和10(-4)M浓度的碳醇。在给药后10分钟和60分钟内,通过Schirmer条收集泪液,将不同浓度的7A局部应用于新西兰白兔(n = 20-24)的右眼(50微升)。单独使用7A (10(-4) M)、单独使用氟哌啶醇(10(-4)M)或联合使用7A作为激动剂刺激蛋白质释放,而氟哌啶醇作为拮抗剂抑制释放。7A的体内蛋白分泌率也显示出剂量-反应曲线(在给药后10和60分钟),在0.15% w/v的浓度下,7A在给药的眼睛中达到具有统计学意义的最大值。蛋白质提取物的大小排除高效液相色谱分析显示,分泌蛋白增加,特别是眼泪特异性前白蛋白。
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Lacrimal secretion stimulants: sigma receptors and drug implications.

3H-DTG (1.3-di(2-[5-3H]tolyl)guanidine) or 3H-haloperidol was added to sigma-receptors (25 nM) in the presence of 25 nM spiperone and incubated with increasing concentrations of bromhexine derivatives (phenylalkylamines; 10(-9) to 10(-2)M) in membrane homogenate suspensions. IC50 values for two derivatives ranged from 3.2 to 8.8 nM for both radioligands. A preferred derivative, 7A (N,N'-dimethyl-2-phenyl-ethylamine), yielded an IC50 of 7.8 nM for 3H-haloperidol but showed much less affinity in displacing 3H-DTG (IC50 = 900 nM). Applying the technic of Bromberg [Exp. Eye Res., 40:313-320, 1985], in vitro protein secretion rates were measured following stimulation of either lacrimal gland slices or isolated, intact lacrimocytes with the compounds. In vitro protein secretion rates exhibit a dose-response relationship with increases in protein release up to a concentration of 10(-8) to 10(-4) M for various derivatives of bromhexine and 10(-4) M for carbachol. By means of Schirmer strips, tear fluid was collected over a five minute period at 10 and 60 minutes post-dosing following the topical application (50 microliters) to the right eye of New Zealand white rabbits (n = 20-24) of 7A at various concentrations. Incubation of lacrimocytes with 7A alone (10(-4) M), with haloperidol (10(-4) M) alone or in combination show that 7A is acting as an agonist to stimulate protein release, whereas haloperidol is acting as an antagonist to inhibit release. In vivo protein secretion rates also show a dose-response curve (at both 10 and 60 minutes post-dosing) for 7A that reach a statistically significant maximum in the dosed eye at a concentration of 0.15% w/v. Analysis of protein extracts using size exclusion HPLC shows an increase in secretory proteins, particularly tear-specific prealbumin.

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