Thermodynamic evaluation of the stability of the bone-seeking radiopharmaceutical [177Lu]Lu(III)aDOTP under simulated blood plasma conditions

The stability and in vivo robustness of [177Lu]LuaDOTP as a potential bone-targeting radiopharmaceutical was determined with the aid of thermodynamic blood plasma modeling simulations. Glass electrode potentiometry was employed to measure the stability constants of the complexes of Lu3+ with DOTP. S...

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Veröffentlicht in:Analytica chimica acta 2012-06, Vol.730, p.66-70
Hauptverfasser: Sepini, Lebogang C, Jarvis, Neil V, Jansen, David R, Zeevaart, Jan Rijn
Format: Artikel
Sprache:eng
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Zusammenfassung:The stability and in vivo robustness of [177Lu]LuaDOTP as a potential bone-targeting radiopharmaceutical was determined with the aid of thermodynamic blood plasma modeling simulations. Glass electrode potentiometry was employed to measure the stability constants of the complexes of Lu3+ with DOTP. Similarly, the complexes of DOTP with a selection of the important physiological metal ions: Ca2+, Mg2+, and Cu2+ were determined, representing the typical interactions that the ligand would encounter upon administration. This made possible the construction of a blood plasma model of DOTP, aiding in establishing the potential susceptibility of the radiopharmaceutical. The ligand binds predominantly to calcium in vivo, accounting for 59.6% of that initially introduced as a component of the LuaDOTP complex. Furthermore, due to a preference of the DOTP to bind to Cu2+ it causes mobilization of the ions in blood plasma, and would therefore indicate a deficiency if the ligand is administered at a concentration of 8.5 A 10a5 mol dma3. The lutetium-ions are preferentially bound to DOTP, with as much as 98.1% of the Lu3+ occupying the ligand under physiological conditions.
ISSN:0003-2670
DOI:10.1016/j.aca.2011.10.068