[


Journal

European journal of nuclear medicine and molecular imaging
ISSN: 1619-7089
Titre abrégé: Eur J Nucl Med Mol Imaging
Pays: Germany
ID NLM: 101140988

Informations de publication

Date de publication:
03 2022
Historique:
received: 07 06 2021
accepted: 23 08 2021
pubmed: 9 10 2021
medline: 27 4 2022
entrez: 8 10 2021
Statut: ppublish

Résumé

Patient eligibility for [ Ten patients with low-volume hormone-sensitive prostate cancer received a pre-therapeutic [ PET/SPECT absorbed dose ratio was 1.01 ± 0.21, 1.10 ± 0.15, 1.20 ± 0.34, and 1.11 ± 0.29 for kidneys (using a 2.2 scaling factor), liver, submandibular, and parotid glands, respectively. While a large inter-patient variation in lesion kinetics was observed, PET/SPECT absorbed dose ratio was 1.3 ± 0.7 (range: 0.4-2.7, correlation coefficient r = 0.69, p < 0.01). A single time point [

Identifiants

pubmed: 34623453
doi: 10.1007/s00259-021-05538-2
pii: 10.1007/s00259-021-05538-2
pmc: PMC8921092
doi:

Substances chimiques

Dipeptides 0
Gallium Radioisotopes 0
Heterocyclic Compounds, 1-Ring 0
PSMA-617 0
Radiopharmaceuticals 0
Lutetium 5H0DOZ21UJ
Prostate-Specific Antigen EC 3.4.21.77

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

1101-1112

Informations de copyright

© 2021. The Author(s).

Références

Schröder FH, Hugosson J, Roobol MJ, Tammela TL, Ciatto S, Nelen V, et al. Prostate-cancer mortality at 11 years of follow-up. N Engl J Med. 2012;366:981–90.
pubmed: 22417251 pmcid: 6027585
Bray F, Ferlay J, Soerjomataram I, Siegel RL, Torre LA, Jemal A. Global cancer statistics 2018: GLOBOCAN estimates of incidence and mortality worldwide for 36 cancers in 185 countries. CA Cancer J Clin. 2018;68:394–424.
Wong MC, Goggins WB, Wang HH, Fung FD, Leung C, Wong SY, et al. Global incidence and mortality for prostate cancer: analysis of temporal patterns and trends in 36 countries. Eur Urol. 2016;70:862–74.
pubmed: 27289567
Wright Jr GL, Haley C, Beckett ML, Schellhammer PF. Expression of prostate-specific membrane antigen in normal, benign, and malignant prostate tissues. Urol Oncol. 1995;1:18–28.
Perner S, Hofer MD, Kim R, Shah RB, Li H, Möller P, et al. Prostate-specific membrane antigen expression as a predictor of prostate cancer progression. Hum Pathol. 2007;38:696–701.
pubmed: 17320151
Silver DA, Pellicer I, Fair WR, Heston W, Cordon-Cardo C. Prostate-specific membrane antigen expression in normal and malignant human tissues. Clin Cancer Res. 1997;3:81–5.
pubmed: 9815541
Zechmann CM, Afshar-Oromieh A, Armor T, Stubbs JB, Mier W, Hadaschik B, et al. Radiation dosimetry and first therapy results with a 124 I/131 I-labeled small molecule (MIP-1095) targeting PSMA for prostate cancer therapy. Eur J Nucl Med Mol Imaging. 2014;41:1280–92.
pubmed: 24577951 pmcid: 4052014
Ahmadzadehfar H, Eppard E, Kürpig S, Fimmers R, Yordanova A, Schlenkhoff CD, et al. Therapeutic response and side effects of repeated radioligand therapy with 177Lu-PSMA-DKFZ-617 of castrate-resistant metastatic prostate cancer. Oncotarget. 2016;7:12477.
pubmed: 26871285 pmcid: 4914299
Baum RP, Kulkarni HR, Schuchardt C, Singh A, Wirtz M, Wiessalla S, et al. Lutetium-177 PSMA radioligand therapy of metastatic castration-resistant prostate cancer: safety and efficacy. J Nucl Med. 2016;57(7):1006–13.
Heck MM, Tauber R, Schwaiger S, Retz M, D’Alessandria C, Maurer T, et al. Treatment outcome, toxicity, and predictive factors for radioligand therapy with 177Lu-PSMA-I&T in metastatic castration-resistant prostate cancer. Eur Urol. 2019;75:920–6.
pubmed: 30473431
Tagawa ST, Milowsky MI, Morris M, Vallabhajosula S, Christos P, Akhtar NH, et al. Phase II study of lutetium-177–labeled anti-prostate-specific membrane antigen monoclonal antibody J591 for metastatic castration-resistant prostate cancer. Clin Cancer Res. 2013;19:5182–91.
pubmed: 23714732 pmcid: 3778101
Rahbar K, Ahmadzadehfar H, Kratochwil C, Haberkorn U, Schäfers M, Essler M, et al. German multicenter study investigating 177Lu-PSMA-617 radioligand therapy in advanced prostate cancer patients. J Nucl Med. 2017;58:85–90.
pubmed: 27765862
Kratochwil C, Giesel FL, Stefanova M, Benesova M, Bronzel M, Afshar-Oromieh A, et al. PSMA-targeted radionuclide therapy of metastatic castration-resistant prostate cancer with Lu-177 labeled PSMA-617. J Nucl Med. 2016;57:1170–6.
pubmed: 26985056
Hofman MS, Emmett L, Sandhu SK, Iravani A, Joshua AM, Goh JC, et al. TheraP: A randomised phase II trial of 177Lu-PSMA-617 (LuPSMA) theranostic versus cabazitaxel in metastatic castration resistant prostate cancer (mCRPC) progressing after docetaxel: initial results (ANZUP protocol 1603). J Clin Oncol. 2020;38:5500-.
Hofman MS, Violet J, Hicks RJ, Ferdinandus J, Thang SP, Akhurst T, et al. [177Lu]-PSMA-617 radionuclide treatment in patients with metastatic castration-resistant prostate cancer (LuPSMA trial): a single-centre, single-arm, phase 2 study. Lancet Oncol. 2018;19:825–33.
pubmed: 29752180
Delker A, Fendler WP, Kratochwil C, Brunegraf A, Gosewisch A, Gildehaus FJ, et al. Dosimetry for 177 Lu-DKFZ-PSMA-617: a new radiopharmaceutical for the treatment of metastatic prostate cancer. Eur J Nucl Med Mol Imaging. 2016;43:42–51.
pubmed: 26318602
Kabasakal L, AbuQbeitah M, Aygün A, Yeyin N, Ocak M, Demirci E, et al. Pre-therapeutic dosimetry of normal organs and tissues of 177 Lu-PSMA-617 prostate-specific membrane antigen (PSMA) inhibitor in patients with castration-resistant prostate cancer. Eur J Nucl Med Mol Imaging. 2015;42:1976–83.
pubmed: 26227531
Okamoto S, Thieme A, Allmann J, D’Alessandria C, Maurer T, Retz M, et al. Radiation dosimetry for 177Lu-PSMA I&T in metastatic castration-resistant prostate cancer: absorbed dose in normal organs and tumor lesions. J Nucl Med Off Publ Soc Nucl Med. 2017;58:445–50.
Hofman MS, Emmett L, Sandhu S, Iravani A, Joshua AM, Goh JC, et al. [177Lu] Lu-PSMA-617 versus cabazitaxel in patients with metastatic castration-resistant prostate cancer (TheraP): a randomised, open-label, phase 2 trial. Lancet. 2021;397:797–804.
pubmed: 33581798
Khreish F, Ebert N, Ries M, Maus S, Rosar F, Bohnenberger H, et al. 225 Ac-PSMA-617/177 Lu-PSMA-617 tandem therapy of metastatic castration-resistant prostate cancer: pilot experience. Eur J Nucl Med Mol Imaging. 2020;47:721–8.
pubmed: 31758224
Kratochwil C, Bruchertseifer F, Giesel FL, Weis M, Verburg FA, Mottaghy F, et al. 225Ac-PSMA-617 for PSMA-targeted α-radiation therapy of metastatic castration-resistant prostate cancer. J Nucl Med. 2016;57:1941–4.
pubmed: 27390158
Kratochwil C, Bruchertseifer F, Rathke H, Bronzel M, Apostolidis C, Weichert W, et al. Targeted alpha therapy of mCRPC with 225actinium-PSMA-617: dosimetry estimate and empirical dose finding. J Nucl Med. 2017;58(10):1624–31.
Kratochwil C, Haberkorn U, Giesel FL. 225Ac-PSMA-617 for therapy of prostate cancer. Semin Nucl Med. 2020;50:133–40.
Sathekge M, Bruchertseifer F, Knoesen O, Reyneke F, Lawal I, Lengana T, et al. 225Ac-PSMA-617 in chemotherapy-naive patients with advanced prostate cancer: a pilot study. Eur J Nucl Med Mol Imaging. 2019;46:129–38.
pubmed: 30232539
Privé BM, Peters SMB, Muselaers CHJ, van Oort IM, Janssen MJR, Sedelaar M, et al. Lutetium-177-PSMA-617 in low-volume hormone sensitive metastatic prostate cancer, a prospective pilot study. Clin Cancer Res. 2021;27:3595–601.
Afshar-Oromieh A, Avtzi E, Giesel FL, Holland-Letz T, Linhart HG, Eder M, et al. The diagnostic value of PET/CT imaging with the 68 Ga-labelled PSMA ligand HBED-CC in the diagnosis of recurrent prostate cancer. Eur J Nucl Med Mol Imaging. 2015;42:197–209.
pubmed: 25411132
Maurer T, Gschwend JE, Rauscher I, Souvatzoglou M, Haller B, Weirich G, et al. Diagnostic efficacy of 68gallium-PSMA positron emission tomography compared to conventional imaging for lymph node staging of 130 consecutive patients with intermediate to high risk prostate cancer. J Urol. 2016;195:1436–43.
pubmed: 26682756
Giesel FL, Knorr K, Spohn F, Will L, Maurer T, Flechsig P, et al. Detection efficacy of 18F-PSMA-1007 PET/CT in 251 patients with biochemical recurrence of prostate cancer after radical prostatectomy. J Nucl Med. 2019;60:362–8.
pubmed: 30042163 pmcid: 6424235
Kesch C, Kratochwil C, Mier W, Kopka K, Giesel FL. 68Ga or 18F for prostate cancer imaging? J Nucl Med. 2017;58:687–8.
pubmed: 28408526
Pandit-Taskar N, O’Donoghue JA, Ruan S, Lyashchenko SK, Carrasquillo JA, Heller G, et al. First-in-human imaging with 89Zr-Df-IAB2M anti-PSMA minibody in patients with metastatic prostate cancer: pharmacokinetics, biodistribution, dosimetry, and lesion uptake. J Nucl Med. 2016;57:1858–64.
pubmed: 27516450 pmcid: 5450345
Violet JA, Jackson P, Ferdinandus J, Sandhu S, Akhurst T, Iravani A, et al. Dosimetry of Lu-177 PSMA-617 in metastatic castration-resistant prostate cancer: correlations between pre-therapeutic imaging and “whole body” tumor dosimetry with treatment outcomes. J Nucl Med. 2019;60:517–23.
Peters SMB, Prive BM, Gotthardt M, de Lange F, Nagarajah J, Konijnenberg MW, et al. Dosimetry of Lu-177-PSMA-617 in low-volume hormone sensitive metastatic prostate cancer and correlation with treatment outcome. Eur J Nucl Med Mol Imaging. 2021.
Scarpa L, Buxbaum S, Kendler D, Fink K, Bektic J, Gruber L, et al. The 68 Ga/177 Lu theragnostic concept in PSMA targeting of castration-resistant prostate cancer: correlation of SUV max values and absorbed dose estimates. Eur J Nucl Med Mol Imaging. 2017;44:788–800.
pubmed: 28083690
Ferdinandus J, Violet J, Sandhu S, Hicks RJ, Ravi Kumar AS, Iravani A, et al. Prognostic biomarkers in men with metastatic castration-resistant prostate cancer receiving [177Lu]-PSMA-617. Eur J Nucl Med Mol Imaging. 2020;47:2322–7.
pubmed: 32140802
Kolbert KS, Pentlow KS, Pearson JR, Sheikh A, Finn RD, Humm JL, et al. Prediction of absorbed dose to normal organs in thyroid cancer patients treated with <sup>131</sup>I by use of <sup>124</sup>I PET and 3-dimensional internal dosimetry software. J Nucl Med. 2007;48:143–9.
pubmed: 17204711
Lassmann M, Reiners C, Luster M. Dosimetry and thyroid cancer: the individual dosage of radioiodine. Endocr Relat Cancer. 2010;17:R161–72.
pubmed: 20448022
Sgouros G, Hobbs RF, Atkins FB, Van Nostrand D, Ladenson PW, Wahl RL. Three-dimensional radiobiological dosimetry (3D-RD) with 124I PET for 131I therapy of thyroid cancer. Eur J Nucl Med Mol Imaging. 2011;38:41–7.
Plyku D, Hobbs RF, Huang K, Atkins F, Garcia C, Sgouros G, et al. Recombinant human thyroid-stimulating hormone versus thyroid hormone withdrawal in <sup>124</sup>I PET/CT–based dosimetry for <sup>131</sup>I therapy of metastatic differentiated thyroid cancer. J Nucl Med. 2017;58:1146–54.
pubmed: 28104741 pmcid: 5493009
Jentzen W, Verschure F, van Zon A, van de Kolk R, Wierts R, Schmitz J, et al. <sup>124</sup>I PET assessment of response of bone metastases to initial radioiodine treatment of differentiated thyroid cancer. J Nucl Med. 2016;57:1499–504.
pubmed: 27199362
Nagarajah J, Janssen M, Hetkamp P, Jentzen W. Iodine symporter targeting with <sup>124</sup>I/<sup>131</sup>I theranostics. J Nucl Med. 2017;58:34S-S38.
pubmed: 28864610
Jentzen W. An improved iterative thresholding method to delineate PET volumes using the delineation-averaged signal instead of the enclosed maximum signal. J Nucl Med Technol. 2015;43:28–35.
pubmed: 25655341
Jentzen W, Freudenberg L, Bockisch A. Quantitative imaging of (124) I with PET/CT in pretherapy lesion dosimetry. Effects impairing image quantification and their corrections. The Quarterly Journal of Nuclear Medicine and Molecular Imaging: Official Publication of the Italian Association of Nuclear Medicine (AIMN)[and] the International Association of Radiopharmacology (IAR),[and] Section of the Society of. 2011; 55: 21–43.
Geworski L, Knoop BO, de Cabrejas ML, Knapp WH, Munz DL. Recovery correction for quantitation in emission tomography: a feasibility study. Eur J Nucl Med. 2000;27:161–9.
pubmed: 10755721
Walrand S, Jamar F, Mathieu I, De Camps J, Lonneux M, Sibomana M, et al. Quantitation in PET using isotopes emitting prompt single gammas: application to yttrium-86. Eur J Nucl Med Mol Imaging. 2003;30:354–61.
pubmed: 12634962
Tossici-Bolt L, Hoffmann SM, Kemp PM, Mehta RL, Fleming JS. Quantification of [123 I] FP-CIT SPECT brain images: an accurate technique for measurement of the specific binding ratio. Eur J Nucl Med Mol Imaging. 2006;33:1491–9.
pubmed: 16858570
de Nijs R, Lagerburg V, Klausen TL, Holm S. Improving quantitative dosimetry in 177Lu-DOTATATE SPECT by energy window-based scatter corrections. Nucl Med Commun. 2014;35:522.
pubmed: 24525900 pmcid: 3969156
Jentzen W, Balschuweit D, Schmitz J, Freudenberg L, Eising E, Hilbel T, et al. The influence of saliva flow stimulation on the absorbed radiation dose to the salivary glands during radioiodine therapy of thyroid cancer using 124 I PET (/CT) imaging. Eur J Nucl Med Mol Imaging. 2010;37:2298–306.
pubmed: 20625723
Sandgren K, Johansson L, Axelsson J, Jonsson J, Ögren M, Ögren M, et al. Radiation dosimetry of [68Ga]PSMA-11 in low-risk prostate cancer patients. EJNMMI Physics. 2019;6:2.
pubmed: 30631980 pmcid: 6328430
Demirci E, Toklu T, Yeyin N, Ocak M, Alan-Selcuk N, Araman A, et al. Estimation of the organ absorbed doses and effective dose from 68Ga-PSMA-11 PET scan†. Radiat Prot Dosimetry. 2018;182:518–24.
pubmed: 30137614
Afshar-Oromieh A, Hetzheim H, Kübler W, Kratochwil C, Giesel FL, Hope TA, et al. Radiation dosimetry of 68 Ga-PSMA-11 (HBED-CC) and preliminary evaluation of optimal imaging timing. Eur J Nucl Med Mol Imaging. 2016;43:1611–20.
pubmed: 27260521
Pfob CH, Ziegler S, Graner FP, Köhner M, Schachoff S, Blechert B, et al. Biodistribution and radiation dosimetry of 68 Ga-PSMA HBED CC—a PSMA specific probe for PET imaging of prostate cancer. Eur J Nucl Med Mol Imaging. 2016;43:1962–70.
pubmed: 27207281
Afshar-Oromieh A, Hetzheim H, Kratochwil C, Benesova M, Eder M, Neels OC, et al. The theranostic PSMA ligand PSMA-617 in the diagnosis of prostate cancer by PET/CT: biodistribution in humans, radiation dosimetry, and first evaluation of tumor lesions. J Nucl Med. 2015;56:1697–705.
pubmed: 26294298
Fendler WP, Eiber M, Beheshti M, Bomanji J, Ceci F, Cho S, et al. 68Ga-PSMA PET/CT: joint EANM and SNMMI procedure guideline for prostate cancer imaging: version 1.0. Eur J Nucl Med Mol Imaging. 2017;44:1014–24.
pubmed: 28283702
Sachpekidis C, Kopka K, Eder M, Hadaschik BA, Freitag MT, Pan L, et al. 68Ga-PSMA-11 dynamic PET/CT imaging in primary prostate cancer. Clin Nucl Med. 2016;41:e473–9.
pubmed: 27607173
Dietlein F, Kobe C, Munoz Vazquez S, Fischer T, Endepols H, Hohberg M, et al. An
Gear JI, Cox MG, Gustafsson J, Gleisner KS, Murray I, Glatting G, et al. EANM practical guidance on uncertainty analysis for molecular radiotherapy absorbed dose calculations. Eur J Nucl Med Mol Imaging. 2018;45:2456–74.
pubmed: 30218316 pmcid: 6208822
Gourni E, Henriksen G. Metal-based PSMA radioligands. Molecules. 2017;22:523.
pmcid: 6154343
Gourni E, Canovas C, Goncalves V, Denat F, Meyer PT, Maecke HR. (R)-NODAGA-PSMA: a versatile precursor for radiometal labeling and nuclear imaging of PSMA-positive tumors. PLoS One. 2015;10:e0145755.
pubmed: 26700033 pmcid: 4689406

Auteurs

Steffie M B Peters (SMB)

Department of Medical Imaging, Radboud University Medical Center, P.O. Box 9101, 6500 HB, Nijmegen, The Netherlands. steffie.peters@radboudumc.nl.

Regina Hofferber (R)

Department of Nuclear Medicine, Essen University Hospital, Essen, Germany.

Bastiaan M Privé (BM)

Department of Medical Imaging, Radboud University Medical Center, P.O. Box 9101, 6500 HB, Nijmegen, The Netherlands.

Maarten de Bakker (M)

Department of Medical Imaging, Radboud University Medical Center, P.O. Box 9101, 6500 HB, Nijmegen, The Netherlands.

Martin Gotthardt (M)

Department of Medical Imaging, Radboud University Medical Center, P.O. Box 9101, 6500 HB, Nijmegen, The Netherlands.

Marcel Janssen (M)

Department of Medical Imaging, Radboud University Medical Center, P.O. Box 9101, 6500 HB, Nijmegen, The Netherlands.

Frank de Lange (F)

Department of Medical Imaging, Radboud University Medical Center, P.O. Box 9101, 6500 HB, Nijmegen, The Netherlands.

Constantijn H J Muselaers (CHJ)

Department of Urology, Radboud University Medical Center, Nijmegen, The Netherlands.

Niven Mehra (N)

Department of Medical Oncology, Radboud University Medical Center, Nijmegen, The Netherlands.

J Alfred Witjes (JA)

Department of Urology, Radboud University Medical Center, Nijmegen, The Netherlands.

Pedro F Costa (PF)

Department of Nuclear Medicine, Essen University Hospital, Essen, Germany.

James Nagarajah (J)

Department of Medical Imaging, Radboud University Medical Center, P.O. Box 9101, 6500 HB, Nijmegen, The Netherlands.

Mark W Konijnenberg (MW)

Department of Medical Imaging, Radboud University Medical Center, P.O. Box 9101, 6500 HB, Nijmegen, The Netherlands.
Department of Radiology and Nuclear Medicine, Erasmus MC, Rotterdam, The Netherlands.

Walter Jentzen (W)

Department of Nuclear Medicine, Essen University Hospital, Essen, Germany.

Articles similaires

[Redispensing of expensive oral anticancer medicines: a practical application].

Lisanne N van Merendonk, Kübra Akgöl, Bastiaan Nuijen
1.00
Humans Antineoplastic Agents Administration, Oral Drug Costs Counterfeit Drugs

Smoking Cessation and Incident Cardiovascular Disease.

Jun Hwan Cho, Seung Yong Shin, Hoseob Kim et al.
1.00
Humans Male Smoking Cessation Cardiovascular Diseases Female
Humans United States Aged Cross-Sectional Studies Medicare Part C
1.00
Humans Yoga Low Back Pain Female Male

Classifications MeSH