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Synthesis and evaluation of C-11 F-18 and I-125 small molecule radioligands for detecting oxytocin receptors

机译:用于检测催产素受体的C-11F-18和I-125小分子放射性配合物的合成和评价

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摘要

Compounds >1–4 were synthesized and investigated for selectivity and potency for the oxytocin receptor (OTR) to determine their viability as radioactive ligands. Binding assays determined >1–4 to have high binding affinity for both the human and rodent OTR and also have high selectivity for the human OTR over human vasopressin V1a receptors (V1aR). Inadequate selectivity for OTR over V1aR was found for rodent receptors in all four compounds. The radioactive (C-11, F-18, and I-125) derivatives of >1–4 were synthesized and investigated for use as autoradiography and positron emission tomography (PET) ligands. Receptor autoradiography performed with [125I]>1 and [125I]>2 on rodent brain slices provided the first small molecule radioligand images of the OTR and V1aR. Biodistribution studies determined [125I]>1 and [125I]>2 were adequate for in vivo peripheral investigations, but not for central investigations due to low uptake within the brain. A biodistribution study with [18F]>3 suggested brain uptake occurred slowly over time. PET imaging studies with [18F]>3 and [11C]>4 using a rat model provided insufficient uptake in the brain over a 90 and 45 min scan times respectively to merit further investigations in non-human primates.
机译:合成化合物<强> 1-4℃,并研究了催产素受体(OTR)的选择性和效力,以确定其作为放射性配体的活力。结合测定率为<强> 1-4℃,对人和啮齿动物OTR具有高结合亲和力,并且对人血管加压素V1A受体(V1AR)的人OTR具有高选择性。在所有四种化合物中发现啮齿动物受体对靶差异超过V1AR的选择性不足。合成并研究了<强> 1-4℃的放射性(C-11,F-18和I-125)衍生物,以用作放射自显影和正电子发射断层扫描(PET)配体。在啮齿动物脑切片上用[ 125 i] 1 / sth>和[ 125 i] > 2-str]和[sup> 125℃] > 2-strong]进行。 OTR和V1AR的小分子放射性和图像。生物分布研究测定[ 125 i] > 1 和[ 125 i] > 2 足以体内外围调查,但由于大脑内的低吸收,而不是核心调查。生物分布研究与[ 18 f] > 3 建议的脑摄取随时间缓慢发生。使用RAT模型的宠物成像研究与[ 18℃] 3℃] > 3-str>和[ 11 c] > 4-strong>提供不足的摄取在大脑中分别超过90和45分钟的扫描时间,以优异地在非人类灵长类动物中进一步研究。

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