Beta Atlas: Charting Global Production of Nonconventional β − -Emitters for Targeted Radiopharmaceutical Therapy—Part 1

β-minus particle (β−)–emitting radionuclides have long been central to targeted radiopharmaceutical therapy. Interest in expanding their repertoire beyond conventional options has grown over time, as the need for radionuclides with different emission profiles and theranostic potential becomes increasingly clear. Nonetheless, their clinical translation remains limited by production constraints, inconsistent clinical evidence supporting their use. By reporting the state of the art in nonconventional β−-radionuclide production, the current global landscape of production centers and reviewing current clinical evaluations, this β-atlas provides a critical overview of how these radionuclides may influence the future of targeted radiopharmaceutical therapy. This perspective is intended to support researchers, clinicians, and industry in recognizing both the opportunities and the constraints associated with integrating alternative β−-emitters into clinical practice. Ultimately, this β-atlas aims to serve as a strategic resource to foster collaboration and guide investment toward more reliable and scalable supply chains of nonconventional β−-emitters, thereby strengthening the foundation for future innovation in β−-based therapy. This review focuses on β−-emitters that have already progressed to clinical evaluation, including 67Cu, 153Sm, 161Tb, 166Ho, 186Re, and 188Re.

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Publication Details

Journal
Journal of Nuclear Medicine
Published
2026-09-17
DOI
https://doi.org/10.2967/jnumed.126.272648
Primary Topic
Radiopharmaceutical Chemistry and Applications
Type
article
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article

Beta Atlas: Charting Global Production of Nonconventional β − -Emitters for Targeted Radiopharmaceutical Therapy—Part 1

Nicholas P. van der Meulen, Charlene Harriswangler, Marianna Tosato, Chiara Favaretto et al.
Journal of Nuclear Medicine
Radiopharmaceutical Chemistry and Applications
article

Beta Atlas: Charting Global Production of Nonconventional β − -Emitters for Targeted Radiopharmaceutical Therapy—Part 1

Nicholas P. van der Meulen, Charlene Harriswangler, Marianna Tosato, Chiara Favaretto, Simona Mastroianni, Mattia Asti, Jean‐François Gestin, Michiel Van de Voorde, U. Köster, Janke Kleynhans, Rebecca Hoerres, Caterina F. Ramogida, Valery Radchenko, Valeriia Starovoitova, Aruna Korde, Andrew Burgoyne, Ivis Chaple
article en

Abstract

β-minus particle (β−)–emitting radionuclides have long been central to targeted radiopharmaceutical therapy. Interest in expanding their repertoire beyond conventional options has grown over time, as the need for radionuclides with different emission profiles and theranostic potential becomes increasingly clear. Nonetheless, their clinical translation remains limited by production constraints, inconsistent clinical evidence supporting their use. By reporting the state of the art in nonconventional β−-radionuclide production, the current global landscape of production centers and reviewing current clinical evaluations, this β-atlas provides a critical overview of how these radionuclides may influence the future of targeted radiopharmaceutical therapy. This perspective is intended to support researchers, clinicians, and industry in recognizing both the opportunities and the constraints associated with integrating alternative β−-emitters into clinical practice. Ultimately, this β-atlas aims to serve as a strategic resource to foster collaboration and guide investment toward more reliable and scalable supply chains of nonconventional β−-emitters, thereby strengthening the foundation for future innovation in β−-based therapy. This review focuses on β−-emitters that have already progressed to clinical evaluation, including 67Cu, 153Sm, 161Tb, 166Ho, 186Re, and 188Re.

Journal of Nuclear Medicine
Idaho State University (US), Universidade da Coruña (ES), International Atomic Energy Agency (AT), Oak Ridge National Laboratory (US), Centre National de la Recherche Scientifique (FR), TRIUMF (CA), University of British Columbia (CA), Inserm (FR), Simon Fraser University (CA), Paul Scherrer Institute (CH), Knoxville College (US), Azienda Sanitaria Unità Locale di Reggio Emilia (IT), Centre de Recherche en Cancérologie et Immunologie Intégrée Nantes Angers (FR), Ospedale Sacro Cuore Don Calabria (IT), Institut Laue-Langevin (FR), Belgian Nuclear Research Centre (BE), Axcella Health (United States) (US), University of Tennessee at Knoxville (US), Nantes Université (FR), KU Leuven (BE)
Industry, innovation and infrastructure
Openalex Percentile: Top 12%
Radiopharmaceutical Chemistry and Applications
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