Lepor H, Baumann M, Shapiro E
Department of Urology (Surgery), Medical College of Wisconsin, Milwaukee 53226.
Prostate. 1990;16(1):29-38. doi: 10.1002/pros.2990160104.
The binding and functional properties of doxazosin were characterized in the canine brain and human prostate. 3H-Doxazosin binding sites were characterized in canine brain and human prostate homogenates using saturation experiments. The binding of 3H-doxazosin in the canine brain was consistently saturable and of high affinity. The mean equilibrium dissociation constant (Kd) and density (Bmax) of 3H-doxazosin binding sites in the canine brain were 0.19 nM and 2.17 fmol/mg wet wt, respectively. The binding of 3H-doxazosin in human prostate homogenates was not consistently linear owing to a relatively high proportion of nonspecific doxazosin binding sites. The mean Kd and Bmax of 3H-doxazosin binding sites in the prostate determined from the saturation experiments yielding linear Scatchard plots were 0.2 nM and 0.51 fmol/mg wet wt. The pharmacology of doxazosin binding sites was further characterized in the canine brain using competitive binding experiments. The rank order of IC50corr values for norepinephrine, clonidine, yohimbine, terazosin, and prazosin indicated that doxazosin binds selectively to alpha 1 and alpha 2 adrenergic binding sites. The relative affinity of unlabeled doxazosin for alpha 1 and alpha 2 binding sites in the human prostate was determined by displacing 125I-Heat or 3H-rauwolscine with varying concentrations of unlabeled doxazosin. The affinity of doxazosin for alpha 1 binding sites in the prostate adenoma was approximately 100-fold greater than its affinity for alpha 2 binding sites. The potency of doxazosin for inhibiting phenylephrine-induced contractions in the prostate indicated that prostate smooth muscle contraction is mediated by alpha 1 adrenoceptors.
在犬脑和人类前列腺中对多沙唑嗪的结合和功能特性进行了表征。使用饱和实验对犬脑和人类前列腺匀浆中的³H-多沙唑嗪结合位点进行了表征。³H-多沙唑嗪在犬脑中的结合始终具有饱和性且亲和力高。犬脑中³H-多沙唑嗪结合位点的平均平衡解离常数(Kd)和密度(Bmax)分别为0.19 nM和2.17 fmol/mg湿重。由于非特异性多沙唑嗪结合位点比例相对较高,³H-多沙唑嗪在人类前列腺匀浆中的结合并非始终呈线性。从产生线性Scatchard图的饱和实验确定的前列腺中³H-多沙唑嗪结合位点的平均Kd和Bmax分别为0.2 nM和0.51 fmol/mg湿重。使用竞争性结合实验在犬脑中进一步表征了多沙唑嗪结合位点的药理学特性。去甲肾上腺素、可乐定、育亨宾、特拉唑嗪和哌唑嗪的IC50corr值的排序表明,多沙唑嗪选择性地与α1和α2肾上腺素能结合位点结合。通过用不同浓度的未标记多沙唑嗪取代¹²⁵I-Heat或³H-萝芙木碱来确定未标记多沙唑嗪对人类前列腺中α1和α2结合位点的相对亲和力。多沙唑嗪对前列腺腺瘤中α1结合位点的亲和力比对α2结合位点的亲和力大约高100倍。多沙唑嗪抑制前列腺中去氧肾上腺素诱导的收缩的效力表明,前列腺平滑肌收缩是由α1肾上腺素能受体介导的。