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Harnessing α-Emitting Radionuclides for Therapy: Radiolabeling Method Review

delete2021-09-09
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OA
AI
H
Hua Yang *
J
Justin J. Wilson
C
Chris Orvig
Y
Yawen Li
D
D. Scott Wilbur
C
Caterina F. Ramogida
V
Valery Radchenko
P
Paul Schaffer
DOI:10.2967/jnumed.121.262687delete
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Abstract

Abstract

En 中文
Targeted alpha-therapy (TAT) is an emerging powerful tool treating late-stage cancers for which therapeutic options are limited. At the core of TAT are targeted radiopharmaceuticals, where isotopes are paired with targeting vectors to enable tissue- or cell-specific delivery of a-emitters. DOTA (1,4,7,10-tetraazacyclododecane-1,4,7,10-tetraacetic acid) and DTPA (diethylenetriamine pentaacetic acid) are commonly used to chelate metallic radionuclides but have limitations. Significant efforts are underway to develop effective stable chelators for a-emitters and are at various stages of development and community Tb-149 , Bi-212/213 , (212)pb (for Bi-212), adoption. Isotopes such as (225)AC, and Th-226/227 have found suitable chelators, although further studies, especially in vivo studies, are required. For others, including Ra-223, U-230 and, arguably At-211, the ideal chemistry remains elusive. This review summarizes the methods reported to date for the incorporation of Tb-149, At-211, Bi-212/213, Pb-212 (for Bi-212), Ra-223, Ra-225, Ac-225, Th-226/227, and U-230 into radiopharmaceuticals, with a focus on new discoveries and remaining challenges.
Keywords:
alpha-emitter
targeted alpha-therapy
chelation
radiolabeling
review

Journal

Journal of Nuclear Medicine cover
Journal of Nuclear Medicine
IF:
9.1
Papers:
6.2K
Citations:
3.0W

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U
University of Washington
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Papers: 7.0W
Citations: 12.5W
C
Cornell University
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University of British Columbia
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Papers: 6.1W
Citations: 8.6W
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