4.3 Article

Development of TASP0410457 (TASP457), a novel dihydroquinolinone derivative as a PET radioligand for central histamine H3 receptors

Journal

EJNMMI RESEARCH
Volume 6, Issue -, Pages -

Publisher

SPRINGER HEIDELBERG
DOI: 10.1186/s13550-016-0170-2

Keywords

Positron emission tomography; Histamine H-3 receptor; Receptor occupancy; Liquid chromatography and tandem mass spectrometry

Funding

  1. Ministry of Education, Culture, Sports, Science and Technology, Japan [23111009]
  2. Grants-in-Aid for Scientific Research [26861031, 15H05917] Funding Source: KAKEN

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Background: Histamine H-3 receptor (H3R) is a potential therapeutic target of sleep-and cognition-related disorders. The purpose of the present study is to develop a novel positron emission tomography (PET) ligand for H(3)Rs from dihydroquinolinone derivatives, which we previously found to have high affinity with these receptors. Methods: Six compounds were selected from a dihydroquinolinone compound library based on structural capability for C-11 labeling and binding affinity for H(3)Rs. Their in vivo kinetics in the rat brain were examined in a comparative manner by liquid chromatography and tandem mass spectrometry (LC-MS/MS). Chemicals with appropriate kinetic properties were then labeled with C-11 and evaluated in rats and monkeys using PET. Results: Of the six compounds, TASP0410457 (also diminutively called TASP457) and TASP0434988 exhibited fast kinetics and relatively high brain uptakes in ex vivo LC-MS/MS and were selected as candidate PET imaging agents. PET data in rat brains were mostly consistent with LC-MS/MS findings, and rat and monkey PET scans demonstrated that [C-11]TASP0410457 was superior to [C-11]TASP0434988 for high-contrast H3R PET imaging. In the monkey brain PET, distribution volume for [C-11]TASP0410457 could be quantified, and receptor occupancy by a nonradioactive compound was measurable using this radioligand. The specific binding of [C-11]TASP0410457 to H(3)Rs was confirmed by autoradiography using rat and monkey brain sections. Conclusions: We developed [11C]TASP0410457 as a radioligand enabling a robust quantification of H(3)Rs in all brain regions and demonstrated the utility of ex vivo LC-MS/MS and in vivo PET assays for selecting appropriate imaging tracers. [C-11]TASP0410457 will help to examine the implication of H(3)Rs in neuropsychiatric disorders and to characterize emerging therapeutic agents targeting H(3)Rs.

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