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Clinical Radiosynthesis and Translation of [(18)F]OP-801: A Novel Radiotracer for Imaging Reactive Microglia and Macrophages

[Image: see text] Positron emission tomography (PET) is a powerful tool for studying neuroinflammatory diseases; however, current PET biomarkers of neuroinflammation possess significant limitations. We recently reported a promising dendrimer PET tracer ([(18)F]OP-801), which is selectively taken up...

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Autores principales: Jackson, Isaac M., Carlson, Mackenzie L., Beinat, Corinne, Malik, Noeen, Kalita, Mausam, Reyes, Samantha, Azevedo, E. Carmen, Nagy, Sydney C., Alam, Israt S., Sharma, Rishi, La Rosa, Santiago Appiani, Moradi, Farshad, Cleland, Jeffrey, Shen, Bin, James, Michelle L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10326869/
https://www.ncbi.nlm.nih.gov/pubmed/37310119
http://dx.doi.org/10.1021/acschemneuro.3c00028
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author Jackson, Isaac M.
Carlson, Mackenzie L.
Beinat, Corinne
Malik, Noeen
Kalita, Mausam
Reyes, Samantha
Azevedo, E. Carmen
Nagy, Sydney C.
Alam, Israt S.
Sharma, Rishi
La Rosa, Santiago Appiani
Moradi, Farshad
Cleland, Jeffrey
Shen, Bin
James, Michelle L.
author_facet Jackson, Isaac M.
Carlson, Mackenzie L.
Beinat, Corinne
Malik, Noeen
Kalita, Mausam
Reyes, Samantha
Azevedo, E. Carmen
Nagy, Sydney C.
Alam, Israt S.
Sharma, Rishi
La Rosa, Santiago Appiani
Moradi, Farshad
Cleland, Jeffrey
Shen, Bin
James, Michelle L.
author_sort Jackson, Isaac M.
collection PubMed
description [Image: see text] Positron emission tomography (PET) is a powerful tool for studying neuroinflammatory diseases; however, current PET biomarkers of neuroinflammation possess significant limitations. We recently reported a promising dendrimer PET tracer ([(18)F]OP-801), which is selectively taken up by reactive microglia and macrophages. Here, we describe further important characterization of [(18)F]OP-801 in addition to optimization and validation of a two-step clinical radiosynthesis. [(18)F]OP-801 was found to be stable in human plasma for 90 min post incubation, and human dose estimates were calculated for 24 organs of interest; kidneys and urinary bladder wall without bladder voiding were identified as receiving the highest absorbed dose. Following optimization detailed herein, automated radiosynthesis and quality control (QC) analyses of [(18)F]OP-801 were performed in triplicate in suitable radiochemical yield (6.89 ± 2.23% decay corrected), specific activity (37.49 ± 15.49 GBq/mg), and radiochemical purity for clinical imaging. Importantly, imaging mice with tracer (prepared using optimized methods) 24 h following the intraperitoneal injection of liposaccharide resulted in the robust brain PET signal. Cumulatively, these data enable clinical translation of [(18)F]OP-801 for imaging reactive microglia and macrophages in humans. Data from three validation runs of the clinical manufacturing and QC were submitted to the Food and Drug Administration (FDA) as part of a Drug Master File (DMF). Subsequent FDA approval to proceed was obtained, and a phase 1/2 clinical trial (NCT05395624) for first-in-human imaging in healthy controls and patients with amyotrophic lateral sclerosis is underway.
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spelling pubmed-103268692023-07-08 Clinical Radiosynthesis and Translation of [(18)F]OP-801: A Novel Radiotracer for Imaging Reactive Microglia and Macrophages Jackson, Isaac M. Carlson, Mackenzie L. Beinat, Corinne Malik, Noeen Kalita, Mausam Reyes, Samantha Azevedo, E. Carmen Nagy, Sydney C. Alam, Israt S. Sharma, Rishi La Rosa, Santiago Appiani Moradi, Farshad Cleland, Jeffrey Shen, Bin James, Michelle L. ACS Chem Neurosci [Image: see text] Positron emission tomography (PET) is a powerful tool for studying neuroinflammatory diseases; however, current PET biomarkers of neuroinflammation possess significant limitations. We recently reported a promising dendrimer PET tracer ([(18)F]OP-801), which is selectively taken up by reactive microglia and macrophages. Here, we describe further important characterization of [(18)F]OP-801 in addition to optimization and validation of a two-step clinical radiosynthesis. [(18)F]OP-801 was found to be stable in human plasma for 90 min post incubation, and human dose estimates were calculated for 24 organs of interest; kidneys and urinary bladder wall without bladder voiding were identified as receiving the highest absorbed dose. Following optimization detailed herein, automated radiosynthesis and quality control (QC) analyses of [(18)F]OP-801 were performed in triplicate in suitable radiochemical yield (6.89 ± 2.23% decay corrected), specific activity (37.49 ± 15.49 GBq/mg), and radiochemical purity for clinical imaging. Importantly, imaging mice with tracer (prepared using optimized methods) 24 h following the intraperitoneal injection of liposaccharide resulted in the robust brain PET signal. Cumulatively, these data enable clinical translation of [(18)F]OP-801 for imaging reactive microglia and macrophages in humans. Data from three validation runs of the clinical manufacturing and QC were submitted to the Food and Drug Administration (FDA) as part of a Drug Master File (DMF). Subsequent FDA approval to proceed was obtained, and a phase 1/2 clinical trial (NCT05395624) for first-in-human imaging in healthy controls and patients with amyotrophic lateral sclerosis is underway. American Chemical Society 2023-06-13 /pmc/articles/PMC10326869/ /pubmed/37310119 http://dx.doi.org/10.1021/acschemneuro.3c00028 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Jackson, Isaac M.
Carlson, Mackenzie L.
Beinat, Corinne
Malik, Noeen
Kalita, Mausam
Reyes, Samantha
Azevedo, E. Carmen
Nagy, Sydney C.
Alam, Israt S.
Sharma, Rishi
La Rosa, Santiago Appiani
Moradi, Farshad
Cleland, Jeffrey
Shen, Bin
James, Michelle L.
Clinical Radiosynthesis and Translation of [(18)F]OP-801: A Novel Radiotracer for Imaging Reactive Microglia and Macrophages
title Clinical Radiosynthesis and Translation of [(18)F]OP-801: A Novel Radiotracer for Imaging Reactive Microglia and Macrophages
title_full Clinical Radiosynthesis and Translation of [(18)F]OP-801: A Novel Radiotracer for Imaging Reactive Microglia and Macrophages
title_fullStr Clinical Radiosynthesis and Translation of [(18)F]OP-801: A Novel Radiotracer for Imaging Reactive Microglia and Macrophages
title_full_unstemmed Clinical Radiosynthesis and Translation of [(18)F]OP-801: A Novel Radiotracer for Imaging Reactive Microglia and Macrophages
title_short Clinical Radiosynthesis and Translation of [(18)F]OP-801: A Novel Radiotracer for Imaging Reactive Microglia and Macrophages
title_sort clinical radiosynthesis and translation of [(18)f]op-801: a novel radiotracer for imaging reactive microglia and macrophages
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10326869/
https://www.ncbi.nlm.nih.gov/pubmed/37310119
http://dx.doi.org/10.1021/acschemneuro.3c00028
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