[125I]IQNP同分异构体对QNB的体内放射自显影竞争研究表明,QNB在体内具有m2毒蕈碱亚型选择性。

Receptors & signal transduction Pub Date : 1997-01-01
B R Zeeberg, S F Boulay, V K Sood, M R Rayeq, R A Danesh, D W McPherson, F F Knapp
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引用次数: 0

摘要

(R,S)-[125I]IQNB已广泛用于大鼠体内研究,并在竞争研究中用于证明非放射性配体的体内亚型选择性。由于对阿尔茨海默病(AD)研究的影响,那些表现出m2选择性的配体受到了特别的关注。放射性标记的Z-和E-(-,-)-1-氮杂环[2.2.2]辛-3-基α -羟基- α -(1-碘-1-丙烯-3-基)- α -苯乙酸(Z-和E-(-,-)-[125I]IQNP)是(R,S)-[125I]IQNB的类似物。大鼠脑区域解剖研究和(R,S)-[125I]IQNB、Z-(-,-)-[125I]IQNP和E-(-,-)-[125I]IQNP的体内放射自显影比较表明,Z-和E-(-,-)-[125I]IQNP总体上与(R,S)-[125I]IQNB分布相似。与(R,S)-[125I]IQNB相比,Z-(-,-)-[125I]IQNP与m2亚型富集的脑区毒蕈碱受体结合的%剂量/g约高2至5倍。因此,正如我们在这里展示的放射自显像,在与Z-(-,-)-[125I]IQNP的体内竞争研究中,使用QNB作为竞争的非放射性配体,为证明非放射性配体的体内m2选择性提供了一个敏感而准确的探针。
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In vivo autoradiographic competition studies of isomers of [125I]IQNP against QNB demonstrating in vivo m2 muscarinic subtype selectivity for QNB.

(R,S)-[125I]IQNB has been used extensively in in vivo studies in rats, and has been of utility in demonstrating the in vivo subtype selectivity of nonradioactive ligands in competition studies. Because of the implications for the study of Alzheimer's disease (AD), those ligands that demonstrate m2 selectivity are of particular interest. Radiolabelled Z- and E-(-,-)-1-azabicyclo[2.2.2]oct-3-yl alpha-hydroxy-alpha-(1-iodo-1-propen-3-yl)-alpha-phenylacetate (Z- and E-(-,-)-[125I]IQNP) are analogs of (R,S)-[125I]IQNB. Rat brain regional dissection studies and in vivo autoradiographic comparison of the time-courses of (R,S)-[125I]IQNB, Z-(-,-)-[125I]IQNP, and E-(-,-)-[125I]IQNP have indicated that Z- and E-(-,-)-[125I]IQNP, in general, are distributed similarly to (R,S)-[125I]IQNB. Z-(-,-)-[125I]IQNP binds to the muscarinic receptors in those brain regions enriched in the m2 subtype with approximately a two- to fivefold higher % dose/g compared with (R,S)-[125I]IQNB. Thus, as we show here autoradiographically, using QNB as the competing nonradioactive ligand in in vivo competition studies against Z-(-,-)-[125I]IQNP provides a sensitive and accurate probe for demonstrating the in vivo m2 selectivity of nonradioactive ligands.

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The carboxyl-terminal cytoplasmic domain of CD36 is required for oxidized low-density lipoprotein modulation of NF-kappaB activity by tumor necrosis factor-alpha. Adenosine 3',5'-cyclic monophosphate/vanadate-sensitive phosphorylation of DARPP-32- and inhibitor-1-immunoreactive proteins. A novel receptor mediated ATP transport system regulated by tyrosine and serine/threonine phosphokinases in Trypanosoma cruzi trypomastigotes. In vivo autoradiographic competition studies of isomers of [125I]IQNP against QNB demonstrating in vivo m2 muscarinic subtype selectivity for QNB. Expression of functional alpha2-adrenergic receptor subtypes in human corpus cavernosum and in cultured trabecular smooth muscle cells.
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