Radionuclide generator-based production of therapeutic 177Lu from its long-lived isomer 177mLu

Journal Article (2019)
Author(s)

Rupali Bhardwaj (TU Delft - RST/Applied Radiation & Isotopes)

H. Th Wolterbeek (TU Delft - RST/Applied Radiation & Isotopes)

AG Denkova (TU Delft - RST/Applied Radiation & Isotopes)

Pablo Serra-Crespo (TU Delft - RST/Applied Radiation & Isotopes)

Research Group
RST/Applied Radiation & Isotopes
Copyright
© 2019 R. Bhardwaj, H.T. Wolterbeek, A.G. Denkova, P. Serra Crespo
DOI related publication
https://doi.org/10.1186/s41181-019-0064-5
More Info
expand_more
Publication Year
2019
Language
English
Copyright
© 2019 R. Bhardwaj, H.T. Wolterbeek, A.G. Denkova, P. Serra Crespo
Research Group
RST/Applied Radiation & Isotopes
Issue number
1
Volume number
4
Reuse Rights

Other than for strictly personal use, it is not permitted to download, forward or distribute the text or part of it, without the consent of the author(s) and/or copyright holder(s), unless the work is under an open content license such as Creative Commons.

Abstract

Background

In this work, a lutetium-177 (177Lu) production method based on the separation of nuclear isomers, 177mLu & 177Lu, is reported. The 177mLu-177Lu separation is performed by combining the use of DOTA & DOTA-labelled peptide (DOTATATE) and liquid-liquid extraction.
Methods

The 177mLu cations were complexed with DOTA & DOTATATE and kept at 77 K for periods of time to allow 177Lu production. The freed 177Lu ions produced via internal conversion of 177mLu were then extracted in dihexyl ether using 0.01 M di-(2-ethylhexyl) phosphoric acid (DEHPA) at room temperature. The liquid-liquid extractions were performed periodically for a period up to 35 days.
Results

A maximum 177Lu/177mLu activity ratio of 3500 ± 500 was achieved with [177mLu]Lu-DOTA complex, in comparison to 177Lu/177mLu activity ratios of 1086 ± 40 realized using [177mLu]Lu-DOTATATE complex. The 177Lu-177mLu separation was found to be affected by the molar ratio of lutetium and DOTA. A 177Lu/177mLu activity ratio up to 3500 ± 500 was achieved with excess DOTA in comparison to 177Lu/177mLu activity ratio 1500 ± 600 obtained when lutetium and DOTA were present in molar ratio of 1:1. Further, the 177Lu ion extraction efficiency, decreases from 95 ± 4% to 58 ± 2% in the presence of excess DOTA.
Conclusion

The reported method resulted in a 177Lu/ 177mLu activity ratio up to 3500 after the separation. This ratio is close to the lower end of 177Lu/177mLu activity ratios, attained currently during the direct route 177Lu production for clinical applications (i.e. 4000–10,000). This study forms the basis for further extending the liquid-liquid extraction based 177mLu-177Lu separation in order to lead to a commercial 177mLu/177Lu radionuclide generator.