Literature DB >> 29688951

Prediction of Normal Organ Absorbed Doses for [177Lu]Lu-PSMA-617 Using [44Sc]Sc-PSMA-617 Pharmacokinetics in Patients With Metastatic Castration Resistant Prostate Carcinoma.

Ambreen Khawar, Elisabeth Eppard, Jean Phlippe Sinnes1, Frank Roesch1, Hojjat Ahmadzadehfar, Stefan Kürpig, Michael Meisenheimer, Florian C Gaertner, Markus Essler, Ralph A Bundschuh.   

Abstract

In vivo pharmacokinetic analysis of [Sc]Sc-PSMA-617 was used to determine the normal organ-absorbed doses that may result from therapeutic activity of [Lu]Lu-PSMA-617 and to predict the maximum permissible activity of [Lu]Lu-PSMA-617 for patients with metastatic castration-resistant prostate carcinoma.
METHODS: Pharmacokinetics of [Sc]Sc-PSMA-617 was evaluated in 5 patients with metastatic castration-resistant prostate carcinoma using dynamic PET/CT, followed by 3 static PET/CT acquisitions and blood sample collection over 19.5 hours, as well as urine sample collection at 2 time points. Total activity measured in source organs by PET imaging, as well as counts per milliliter measured in blood and urine samples, was decay corrected back to the time of injection using the half-life of Sc. Afterward, forward decay correction using the half-life of Lu was performed, extrapolating the pharmacokinetics of [Sc]Sc-PSMA-617 to that of [Lu]Lu-PSMA-617. Source organs residence times and organ-absorbed doses for [Lu]Lu-PSMA-617 were calculated using OLINDA/EXM software. Bone marrow self-dose was determined with indirect blood-based method, and urinary bladder contents residence time was estimated by trapezoidal approximation. The maximum permissible activity of [Lu]Lu-PSMA-617 was calculated for each patient considering external beam radiotherapy toxicity limits for radiation absorbed doses to kidneys, bone marrow, salivary glands, and whole body.
RESULTS: The predicted mean organ-absorbed doses were highest in the kidneys (0.44 mSv/MBq), followed by the salivary glands (0.23 mSv/MBq). The maximum permissible activity was highly variable among patients; limited by whole body-absorbed dose (1 patient), marrow-absorbed dose (1 patient), and kidney-absorbed dose (3 patients).
CONCLUSIONS: [Sc]Sc-PSMA-617 PET/CT imaging is feasible and allows theoretical extrapolation of the pharmacokinetics of [Sc]Sc-PSMA-617 to that of [Lu]Lu-PSMA-617, with the intent of predicting normal organ-absorbed doses and maximum permissible activity in patients scheduled for therapy with [Lu]Lu-PSMA-617.

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Year:  2018        PMID: 29688951     DOI: 10.1097/RLU.0000000000002102

Source DB:  PubMed          Journal:  Clin Nucl Med        ISSN: 0363-9762            Impact factor:   7.794


  5 in total

Review 1.  Production of scandium radionuclides for theranostic applications: towards standardization of quality requirements.

Authors:  R Mikolajczak; S Huclier-Markai; C Alliot; F Haddad; D Szikra; V Forgacs; P Garnuszek
Journal:  EJNMMI Radiopharm Chem       Date:  2021-05-25

Review 2.  Implications of physics, chemistry and biology for dosimetry calculations using theranostic pairs.

Authors:  Cassandra Miller; Julie Rousseau; Caterina F Ramogida; Anna Celler; Arman Rahmim; Carlos F Uribe
Journal:  Theranostics       Date:  2022-01-01       Impact factor: 11.600

3.  A feasibility study of the therapeutic application of a mixture of 67/64 Cu radioisotopes produced by cyclotrons with proton irradiation.

Authors:  Laura De Nardo; Gaia Pupillo; Liliana Mou; Juan Esposito; Antonio Rosato; Laura Meléndez-Alafort
Journal:  Med Phys       Date:  2022-02-20       Impact factor: 4.506

4.  Determination of pharmacokinetics and tissue distribution of a novel lutetium-labeled PSMA-targeted ligand, 177Lu-DOTA-PSMA-GUL, in rats by using LC-MS/MS.

Authors:  Chang Ho Song; Kweon Kim; Eunhee Kang; Bora Jeong; Myung-Su Lee; Jiyoon Jung; Tae Hwan Kim; Soyoung Shin; Beom Soo Shin
Journal:  Sci Rep       Date:  2022-09-14       Impact factor: 4.996

Review 5.  Dosing Therapeutic Radiopharmaceuticals in Obese Patients.

Authors:  Merel van Nuland; Tessa F Ververs; Marnix G E H Lam
Journal:  Int J Mol Sci       Date:  2022-01-13       Impact factor: 5.923

  5 in total

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