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一种与大鼠不同脑区结构及脊髓突触体结合的125I-P物质衍生物的特性

Properties of a 125I-substance P derivative binding to synaptosomes from various brain structures and the spinal cord of the rat.

作者信息

Torrens Y, Beaujouan J C, Viger A, Glowinski J

出版信息

Naunyn Schmiedebergs Arch Pharmacol. 1983 Sep;324(2):134-9. doi: 10.1007/BF00497019.

Abstract

Using crude synaptosomal fractions (P2 fractions) and 125I-Bolton and Hunter substance P (125I-BHSP) as a ligand, the characteristics of specific binding sites were examined in various brain structures and in the spinal cord (dorsal and ventral parts) of the rat. Scatchard plots revealed the occurrence of a single class of binding sites in the various structures studied with comparable Kd values (from 0.46 to 1.10 nmol/l in the brain and 0.51, 0.56 nmol/l in the spinal cord dorsal and ventral parts respectively) and of marked differences in the number of binding sites (Bmax) (septum greater than striatum greater than hippocampus, hypothalamus greater than mesencephalon greater than cerebral cortex and dorsal part of the spinal cord greater than ventral part). In the brain no correlation was found between the number of 125I-BHSP binding sites and the amount of substance P levels (substance P-like immunoreactivity) in synaptosomes, particularly in the hippocampus and the substantia nigra since the former structure was characterized by its low substance P content and its high number of binding sites and the reverse was observed in the substantia nigra. The ability of several C- and N-terminal fragments of substance P and of tachykinins to compete with 125I-BHSP binding to synaptosomes from the hippocampus, the hypothalamus and the dorsal part of the spinal cord was then determined. Results obtained were closely similar from one structure to another and comparable to those previously reported using whole brain synaptosomes.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

利用粗制突触体组分(P2组分)以及作为配体的125I-博尔顿和亨特P物质(125I-BHSP),在大鼠的各种脑结构和脊髓(背侧和腹侧部分)中检测了特异性结合位点的特征。斯卡查德图显示,在所研究的各种结构中存在单一类别的结合位点,其解离常数(Kd)值相当(在脑中为0.46至1.10纳摩尔/升,在脊髓背侧和腹侧部分分别为0.51、0.56纳摩尔/升),且结合位点数量(Bmax)存在显著差异(隔区大于纹状体大于海马体,下丘脑大于中脑大于大脑皮层,脊髓背侧部分大于腹侧部分)。在脑中,未发现125I-BHSP结合位点数量与突触体中P物质水平(P物质样免疫反应性)之间存在相关性,特别是在海马体和黑质中,因为前一种结构的特征是P物质含量低但结合位点数量多,而在黑质中观察到的情况则相反。然后测定了P物质和速激肽的几个C末端和N末端片段与125I-BHSP竞争结合海马体、下丘脑和脊髓背侧部分突触体的能力。从一个结构到另一个结构获得的结果非常相似,并且与先前使用全脑突触体报道的结果相当。(摘要截断于250字)

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