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首页> 外文期刊>Life sciences >In vivo imaging of brain nicotinic acetylcholine receptors with 5-(123I)iodo-A-85380 using single photon emission computed tomography.
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In vivo imaging of brain nicotinic acetylcholine receptors with 5-(123I)iodo-A-85380 using single photon emission computed tomography.

机译:使用单光子发射计算机断层摄影术通过5-(123I)碘-A-85380对脑内烟碱型乙酰胆碱受体进行体内成像。

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摘要

The distribution and kinetics of 5-[123I]iodo-A-85380, a novel ligand for brain nicotinic acetylcholine receptors (nAChRs), were evaluated in the Rhesus monkey using single photon emission computed tomography (SPECT). Peak levels of radioactivity were measured in brain at 90 min after injection of the tracer. Accumulation of radioactivity was highest in the thalamus, intermediate in the frontal cortex and basal ganglia, and lowest in the cerebellum. The ratio of specific to nonspecific binding (V3") in the thalamus, estimated from the (thalamic-cerebellar)/cerebellar radioactivity ratio, reached a value of 6 at 4 h post-injection. Specific binding was reduced by subcutaneous injection of 1 mg/kg cytisine at 2.25 h after injection of radiotracer. At 2.5 h after cytisine administration, radioactivity in the thalamus was reduced by 84%, in the frontal cortex, by 76%, and in the basal ganglia, by 57% of the level measured at the time of cytisine administration, demonstrating that the binding was reversible. On the basis of these findings, together with other data indicating high affinity, receptor subtype selectivity, low nonspecific binding and lack of toxicity in animals, 5-[123I]iodo-A-85380 appears to be a promising ligand for SPECT imaging of nAChRs in the human brain.
机译:使用单光子发射计算机断层扫描(SPECT)在恒河猴中评估了5- [123I] iodo-A-85380(一种大脑烟碱型乙酰胆碱受体(nAChRs)的新型配体)的分布和动力学。注射示踪剂后90分钟,在大脑中测量放射性的峰值水平。放射性的积累在丘脑中最高,在额叶皮层和基底神经节中居中,而在小脑中最低。根据(丘脑-小脑)/小脑放射性比估算的丘脑中特异性结合与非特异性结合(V3“)之比在注射后4 h达到6。通过皮下注射1 mg降低特异性结合/ kg半胱氨酸在注射放射性示踪剂后2.25小时;在半胱氨酸给药后2.5小时,丘脑的放射性降低了84%,额叶皮层的放射性降低了76%,基底神经节的放射性降低了所测水平的57%根据这些发现,结合表明高亲和力,受体亚型选择性,低非特异性结合和对动物缺乏毒性的其他数据,证明这些结合是可逆的,5- [123I] iodo- A-85380似乎是对人脑中nAChRs进行SPECT成像的有前途的配体。

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