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Chen, Xinyu Nuclear Medicine, Faculty of Medicine, University of Augsburg
Kimura, Hiroyuki Agency for Health, Safety and Environment, Kyoto University
Sasaki, Takanori Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University Kaken ID researchmap
Klimek, Konrad Goethe University Frankfurt, University Hospital, Clinic for Radiology and Nuclear Medicine, Department of Nuclear Medicine
Mühlig, Saskia Department of Nuclear Medicine and Comprehensive Heart Failure Center (DZHI), University Hospital Würzburg
Arias-Loza, Anahi Paula Department of Nuclear Medicine and Comprehensive Heart Failure Center (DZHI), University Hospital Würzburg
Nose, Naoko Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University
Yagi, Yusuke Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University
Rowe, Steven P Molecular Imaging and Therapeutics, Department of Radiology, School of Medicine, University of North Carolina, Chapel Hill
Lapa, Constantin Nuclear Medicine, Faculty of Medicine, University of Augsburg
Werner, Rudolf A. Department of Nuclear Medicine, LMU Hospital, Ludwig-Maximilians-University of Munich
Higuchi, Takahiro Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University ORCID Kaken ID publons researchmap
Abstract
BACKGROUND: AT1R (angiotensin II type 1 receptors) are central to the renin-angiotensin system and are involved in regulating blood pressure and renal physiology. This study introduces [18F]DR29, a fluorine-18-labeled radiotracer for positron emission tomography imaging, to enable noninvasive visualization of AT1R expression. Its potential applications in understanding AT1R-associated renal processes are explored in healthy and hypertensive rat models.
METHODS: Radiolabeling was established, and biodistribution studies were conducted on healthy Wistar rats with and without the AT1R antagonist candesartan and transporter inhibitors. Dynamic positron emission tomography imaging assessed tracer specificity, and feasibility for renal AT1R quantification was explored using a hypertensive rat model.
RESULTS: [18F]DR29 was radiolabeled with a yield of 36±6%. High kidney uptake was observed, significantly reduced by candesartan (kidney-to-blood ratio, 0.43±0.01 versus 4.54±1.59 in vehicle, where vehicle refers to saline without any treatment). Transporter inhibition protocols targeting organic anion transporting polypeptides (liver) and organic anion transporters (kidneys) successfully reduced radiotracer clearance, increasing the specific accumulation of [18F]DR29 in the kidneys and improving renal imaging contrast. Positron emission tomography imaging revealed rapid kidney uptake and stable retention over 2 hours. In hypertensive rats, kidney uptake was higher, aligning with AT1R expression levels.
CONCLUSIONS: These results support [18F]DR29 as a promising tool for the noninvasive evaluation of renal AT1R expression in healthy and diseased states. The findings lay the groundwork for clinical translation, offering potential applications in diagnosing and managing kidney-related diseases, including hypertension and other conditions involving AT1R dysregulation.
Keywords
angiotensin II type 1 receptor
organic anion transporters
organic anion transporting polypeptides
renal imaging
renin-angiotensin system
Published Date
2025-10
Publication Title
Hypertension
Volume
volume82
Issue
issue10
Publisher
Ovid Technologies (Wolters Kluwer Health)
Start Page
1626
End Page
1637
ISSN
0194-911X
NCID
AA00214236
Content Type
Journal Article
language
English
OAI-PMH Set
岡山大学
Copyright Holders
© 2025 The Authors.
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isVersionOf https://doi.org/10.1161/hypertensionaha.124.24441
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https://creativecommons.org/licenses/by-nc-nd/4.0/
助成情報
507803309: ( German Research Council )
453989101: ( German Research Council )
424778381: ( German Research Council )
( 国立大学法人岡山大学 / Okayama University )
23K24288: Neutrophil-Specific PET Cellular Imaging for ARDS ( 独立行政法人日本学術振興会 / Japan Society for the Promotion of Science )