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Keywords = Lu-177–PSMA-617

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18 pages, 11315 KB  
Article
A Preliminary Evaluation of 177Lu-PSMA-617-Based Targeted Radioligand Therapy with X-Ray Stimulated PSMA Relocation Using the PiggyBac Reporter-Gene-Engineered Orthotopic Prostate Tumor Model
by Yen-Ta Chen, Ke-Hsin Huang, Chun-Yi Wu and Yi-Jang Lee
Pharmaceutics 2026, 18(8), 1009; https://doi.org/10.3390/pharmaceutics18081009 - 14 Aug 2026
Abstract
Background/Objectives: Because human prostate cancer (PCa) typically exhibits slow tumor growth, establishing reliable PCa tumor models is often time-consuming and unpredictable, thereby limiting the efficiency of preclinical theranostic research. To overcome this limitation, this study employed a non-viral PiggyBac transposon system to introduce [...] Read more.
Background/Objectives: Because human prostate cancer (PCa) typically exhibits slow tumor growth, establishing reliable PCa tumor models is often time-consuming and unpredictable, thereby limiting the efficiency of preclinical theranostic research. To overcome this limitation, this study employed a non-viral PiggyBac transposon system to introduce triple-reporter genes into PSMA-expressing C4-2 cells, generating orthotopic and subcutaneous xenograft models that allow noninvasive, real-time monitoring of PCa progression and treatment response. Methods: Reporter-engineered C4-2 3R cells were generated by co-transfecting constructs encoding the reporter cassette and PB transposase, followed by enrichment through fluorescence microscopy and fluorescence-activated cell sorting (FACS) and implantation orthotopically or subcutaneously into mice. Tumor growth and treatment response to a single 2 Gy X-ray dose followed by 14.8 MBq of 177Lu-PSMA-617, or to each monotherapy, were monitored weekly using an IVIS imaging system. Imaging findings were validated by tumor dissection and hematoxylin and eosin (H&E) staining, while PSMA expression was assessed by Western blotting and 18F-PSMA-1007 PET/CT. Results: C4-2 3R cells stably expressed the triple reporter genes (mRFP, luc2, and HSV1-tk), generating detectable orthotopic bioluminescence within one week and persisting for at least five weeks. In contrast, subcutaneous implantation generated only transient luc2 signals with no tumor formation. X-ray exposure did not increase total PSMA levels but induced the redistribution of PSMA to the cell membrane. Combined external beam radiotherapy (EBRT) and 177Lu-PSMA-617 treatment produced higher 18F-PSMA-1007 uptake and stronger tumor suppression, with minimal residual tumor mass, as compared to single-treatment or control groups. Conclusions: This preliminary investigation suggests that the C4-2 3R model provides a practical and trackable tool for investigating slow-growing PCa tumors and evaluating PSMA-targeted therapies, either alone or in combination with EBRT. Full article
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18 pages, 5111 KB  
Article
Imaging and Clinical Correlates of [177Lu]Lu-PSMA PET-Defined Eligibility in De Novo Metastatic Prostate Cancer
by Giovanna Pecoraro, Marco Cuzzocrea, Cesare Michele Iacovitti, Marialuisa Puglisi, Chiara Martinello, Alberto De Giorgi, Sara Merler, Luigi Tortola, Hui-Ming Lin, Gianmarco Leone, Fabio Turco, Ricardo Pereira Mestre, Giorgio Treglia, Ursula Vogl, Silke Gillessen, Martino Pedrani and Gaetano Paone
Biomedicines 2026, 14(8), 1818; https://doi.org/10.3390/biomedicines14081818 - 13 Aug 2026
Viewed by 176
Abstract
Objectives: Eligibility for Lutetium-177 labeled prostate-specific membrane antigen ([177Lu]Lu-PSMA) radioligand therapy depends on PSMA PET/CT interpretation and may vary across observers and centres. We aimed to identify imaging and clinical correlates of VISION-like PSMA PET-defined eligibility and to compare exploratory clinical, [...] Read more.
Objectives: Eligibility for Lutetium-177 labeled prostate-specific membrane antigen ([177Lu]Lu-PSMA) radioligand therapy depends on PSMA PET/CT interpretation and may vary across observers and centres. We aimed to identify imaging and clinical correlates of VISION-like PSMA PET-defined eligibility and to compare exploratory clinical, PET-based, and combined models. Materials and Methods: Seventy-six consecutive patients with de novo metastatic prostate cancer undergoing PSMA PET/CT were retrospectively assessed for [177Lu]Lu-PSMA eligibility. Candidacy was determined by consensus of two nuclear medicine physicians using VISION-like criteria. Three stepwise logistic regression models used clinical variables, PSMA PET/CT variables, or both, and were internally validated with bootstrap out-of-bag predictions. Results: Forty-three patients (56.6%) met VISION-like criteria for RLT. Internally validated area under the curve (AUC) values were 0.731, 0.817, and 0.829 for the clinical, PSMA PET/CT, and combined models. PET-defined candidacy was associated with higher PSMA-positive lesion count, greater PET-derived tumour burden, and higher mean standardised uptake value (SUVmean). Clinically, CHAARTED low-volume disease and prior docetaxel exposure were linked to lower probability, whereas disease state at imaging was not significant. In the combined multivariable model, SUVmean was independently associated with higher candidacy (odds ratio [OR]: 1.22, 95% confidence interval [CI]: 1.04–1.42; p = 0.015), whereas prior docetaxel showed the opposite association (OR: 0.10, 95% CI: 0.0129–0.776; p = 0.028). Conclusions: PSMA-positive lesion count and SUVmean were the most reproducible determinants of VISION-like eligibility. Prior docetaxel exposure was associated with lower candidacy in the combined model, although the exposed subgroup was small and the confidence interval wide. Whether systemic therapy modifies PSMA expression, and with it access to subsequent PSMA-targeted lines, requires paired imaging before and after treatment in the same patients. Full article
(This article belongs to the Section Cancer Biology and Oncology)
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24 pages, 12095 KB  
Article
Sarcosine-Based Pharmacokinetic Optimization and Fluorescent Dye Library Evaluation of Dual-Labeled PSMA Inhibitors for Fluorescence-Guided Surgery
by Paul Minges, Jessica Matthias, Lisa-Charlotte Domogalla, Björn Thomas, Nils Steinacker, Nawal Ayada Amgar, Holger Müller, Antje Dietzel-Schaarschmidt, Philipp T. Meyer, Matthias Eder and Ann-Christin Eder
Pharmaceuticals 2026, 19(8), 1187; https://doi.org/10.3390/ph19081187 - 29 Jul 2026
Viewed by 346
Abstract
Objectives: Fluorescence-guided surgery (FGS) targeting prostate-specific membrane antigen (PSMA) holds promise for improving surgical precision in prostate cancer. Since conjugation of fluorescent dyes to targeting vectors can substantially alter pharmacokinetic properties, we systematically evaluated a library of fluorescent dyes conjugated to a [...] Read more.
Objectives: Fluorescence-guided surgery (FGS) targeting prostate-specific membrane antigen (PSMA) holds promise for improving surgical precision in prostate cancer. Since conjugation of fluorescent dyes to targeting vectors can substantially alter pharmacokinetic properties, we systematically evaluated a library of fluorescent dyes conjugated to a PSMA-617-derived scaffold incorporating sarcosine-based spacers to identify candidates with favorable biodistribution and optical profiles for clinical translation. Methods: Nineteen fluorescent dyes spanning NIR, large Stokes shift, and STED-compatible categories were conjugated to a dual-labeled PSMA-617-derived precursor (Glu-urea-Lys-2Nal-TXA-Sar10-Lys(DOTA)-Sar5-βAla; hereafter DP). Compounds were radiolabeled with 68Ga or 177Lu and characterized for serum stability, lipophilicity, binding affinity, and internalization in LNCaPPSMA+ cells. In vivo pharmacokinetics were assessed in LNCaP xenograft-bearing BALB/c nu/nu mice by µPET/MRI (1 and 2 h p.i., 500 pmol 68Ga), organ distribution (0.5, 1, and 2 h p.i., 60 pmol 177Lu), and clinical-grade endoscopic fluorescence imaging. Results: All conjugates retained hydrophilic character (logD: −3.72 to −1.79), low nanomolar binding affinity (Ki: 18–87 nM), and high serum stability (94–100% intact at 24 h). Despite comparable in vitro properties, dye conjugation markedly influenced in vivo pharmacokinetics: tumor uptake at 2 h p.i. ranged from 1 to 23%ID/g and kidney accumulation from 3 to 82%ID/g. Visible-range dyes exhibited faster renal washout within the imaging window and higher tumor-to-background contrast than NIR fluorophores. Fluorescence signal intensity did not correlate with radiotracer-derived uptake, underscoring the importance of dye-specific photophysical properties. Conclusions: DP-12 (SulfoCy5), DP-15 (Alexa Fluor 647), and DP-18 (Tide Fluor 5WS) were identified as lead candidates combining favorable pharmacokinetics with strong fluorescence contrast, warranting further evaluation toward fluorescence-guided prostate cancer surgery. Full article
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18 pages, 2962 KB  
Article
Theranostic Potential of 177Lu-TLX591 with Best Standard-of-Care and 68Ga-PSMA-11 PET for Patients with Metastatic Castration-Resistant Prostate Cancer: Results from the Phase 1 ProstACT SELECT Trial
by Nat Lenzo, Kenneth O’Byrne, Stanley Ngai, Laurence Krieger, Veronica Wong and David N. Cade
Cancers 2026, 18(14), 2331; https://doi.org/10.3390/cancers18142331 - 20 Jul 2026
Viewed by 995
Abstract
Background/Objectives: Lutetium (177Lu) TLX591 (177Lu-TLX591) is a radio antibody–drug conjugate (rADC) that utilizes a novel monoclonal antibody-based approach for treatment of patients with prostate-specific membrane antigen (PSMA)-expressing metastatic castration-resistant prostate cancer (mCRPC). ProstACT SELECT (NCT04786847) was a multicenter, [...] Read more.
Background/Objectives: Lutetium (177Lu) TLX591 (177Lu-TLX591) is a radio antibody–drug conjugate (rADC) that utilizes a novel monoclonal antibody-based approach for treatment of patients with prostate-specific membrane antigen (PSMA)-expressing metastatic castration-resistant prostate cancer (mCRPC). ProstACT SELECT (NCT04786847) was a multicenter, single-arm, open-label Phase 1 trial evaluating patient selection for 177Lu-TLX591 therapy using 68Ga-PSMA-11 PSMA positron emission tomography (PET) in a heterogenous sample of patients with mCRPC. Primary and key secondary objectives were to evaluate safety and tolerability, biodistribution, and organ radiation dosimetry of 177Lu-TLX591 in combination with the best standard of care (SOC) for patients with PSMA-expressing mCRPC who progressed despite prior treatment with an androgen receptor pathway inhibitor. Methods: Thirty patients received 177Lu-TLX591 intravenously in combination with investigator-determined SOC. Cohort 1 (n = 5) received an imaging dose of 177Lu-TLX591 (1 GBq [27 mCi]), followed 14 days later by one therapeutic dose (2.8 GBq [76 mCi]). Cohort 2 received two therapeutic doses of 177Lu-TLX591, 14 days apart. Baseline 68Ga-PSMA-11 PET was performed to confirm eligibility and was qualitatively compared with serial 177Lu-TLX591 single-photon emission computed tomography (SPECT)/CT, which was performed at five timepoints following the first 177Lu-TLX591 administration and also used to evaluate organ radiation dosimetry. Safety assessments included monitoring for treatment-emergent adverse events and collection of laboratory samples at specified timepoints used for biomarker analyses. Results: Tumor targeting observed on 177Lu-TLX591 SPECT/CT imaging was qualitatively consistent with uptake observed on 68Ga-PSMA-11 PET imaging. No new safety signals were observed. Radiation exposure was within safety limits, with the highest absorbed dose to liver (clearance organ; 2.44 ± 0.56 Gy/GBq) and with lower exposure to salivary glands (0.07 ± 0.03 Gy/GBq) and kidneys (0.64 ± 0.17 Gy/GBq). Activity was retained in tumor lesions through to the final protocol-specified imaging timepoint (312 h) following administration. Conclusions: In this Phase 1, single-arm study, 68Ga-PSMA-11 PET supported patient selection for 177Lu-TLX591 therapy. In a heterogenous population representative of a real-world setting, 177Lu-TLX591 therapy in combination with SOC demonstrated a manageable and predictable safety profile, durable retention, and low salivary gland radiation exposure. Further evaluation in larger, randomized studies is warranted. Full article
(This article belongs to the Section Cancer Metastasis)
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20 pages, 1321 KB  
Review
Baseline PSMA PET/CT Biomarkers for Patient Selection in [177Lu]Lu-PSMA Radioligand Therapy: Clinical Promise, Methodological Heterogeneity and Future Standardization
by Grytė Galnaitienė, Matas Šimkus, Ieva Balčiūnaitė, Kornelija Lušaitė, Fang Wen, Marco Hoffmann, Matthias Saar, Felix M. Mottaghy, Donatas Vajauskas and Susanne Lütje
Pharmaceuticals 2026, 19(7), 1084; https://doi.org/10.3390/ph19071084 - 14 Jul 2026
Viewed by 566
Abstract
PSMA PET/CT imaging biomarkers are increasingly investigated as predictors of response and survival outcomes following [177Lu]Lu-PSMA radioligand therapy in prostate cancer. This review summarizes the current evidence and clinical relevance of these biomarkers. As [177Lu]Lu-PSMA radioligand therapy is increasingly [...] Read more.
PSMA PET/CT imaging biomarkers are increasingly investigated as predictors of response and survival outcomes following [177Lu]Lu-PSMA radioligand therapy in prostate cancer. This review summarizes the current evidence and clinical relevance of these biomarkers. As [177Lu]Lu-PSMA radioligand therapy is increasingly being introduced into earlier treatment lines of prostate cancer management, the identification of reliable imaging biomarkers for response prediction and outcome assessment is becoming increasingly important. Quantitative PSMA PET/CT parameters such as whole-body (WB) mean standardized uptake value (SUVmean), WB PSMA-positive tumor volume, and tumor load, as well as qualitative features including disease distribution and phenotype (e.g., visceral metastases and FDG-avid, PSMA-negative discordant lesions), have been associated with treatment response, progression-free survival, and overall survival. However, the clinical utility of these imaging biomarkers is limited by heterogeneous study designs, small cohorts, and a lack of standardization in image acquisition, quantification, and cutoff definitions. This review critically appraises available data on baseline PSMA PET/CT-based prognostic and potentially predictive biomarkers for RLT and identifies the methodological barriers that must be addressed before these biomarkers can be implemented in clinical practice. Full article
(This article belongs to the Special Issue Advances in Theranostic Radiopharmaceuticals)
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14 pages, 656 KB  
Review
PSMA-Targeted Radioligand Therapy Beyond the Post-Taxane Setting: A Review of Evidence Across the Prostate Cancer Spectrum
by Kaiying Wang, Daanesh Huned Hassanbhai, Roxanne Yong Ai Teo, Chloe Shu Hui Ong, Kah Wai Lai, Si Xuan Koo, Wai Loon Yam and Joshua Yi Min Tung
Cancers 2026, 18(13), 2161; https://doi.org/10.3390/cancers18132161 - 5 Jul 2026
Viewed by 929
Abstract
Lutetium-177-PSMA-617 (Lu-PSMA) radioligand therapy (RLT) is established in metastatic castration-resistant prostate cancer (mCRPC), with regulatory approvals based on the VISION and TheraP trials. Subsequent trials have extended the evidence to taxane-naive mCRPC (PSMAfore) and demonstrated that combining Lu-PSMA with enzalutamide yields a significant [...] Read more.
Lutetium-177-PSMA-617 (Lu-PSMA) radioligand therapy (RLT) is established in metastatic castration-resistant prostate cancer (mCRPC), with regulatory approvals based on the VISION and TheraP trials. Subsequent trials have extended the evidence to taxane-naive mCRPC (PSMAfore) and demonstrated that combining Lu-PSMA with enzalutamide yields a significant overall survival benefit over enzalutamide alone (ENZA-p). However, higher and more homogeneous PSMA expression in treatment-naive disease, combined with lower tumor burden and preserved bone marrow reserve, provides a biological rationale for deploying RLT earlier in the disease course. In metastatic hormone-sensitive prostate cancer (mHSPC), the Phase III PSMAddition trial reported improved radiographic progression-free survival when Lu-PSMA was added to standard androgen deprivation therapy (ADT) plus androgen receptor pathway inhibitor (ARPI), and the Phase II UpFrontPSMA trial demonstrated enhanced biochemical responses with Lu-PSMA induction before docetaxel. In oligometastatic and oligorecurrent disease, the BULLSEYE and LUNAR trials have shown progression-free survival benefits, raising the possibility of deferring androgen deprivation therapy and its associated morbidity. Meanwhile, next-generation radionuclides, including actinium-225 (WARMTH) and the dual beta-Auger emitter terbium-161 (VIOLET), are entering clinical development to address the radiobiological limitations of Lutetium-177. This review synthesizes the evidence for PSMA-targeted radioligand therapy across the prostate cancer disease continuum and discusses patient selection, treatment sequencing, and the access and cost-effectiveness considerations that will shape adoption in earlier disease settings. Full article
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16 pages, 452 KB  
Article
Dose-Limiting Cytopenias Associated with Lutetium-177-PSMA-617 for Metastatic Castration-Resistant Prostate Cancer: An Institutional Review
by Evan Adler, Krishna Gandhi, Debamita Kundu, Paul Viscuse, Jack Masur, Michael Devitt, Robert Dreicer and William Paul Skelton
Biologics 2026, 6(3), 20; https://doi.org/10.3390/biologics6030020 - 3 Jul 2026
Viewed by 510
Abstract
Background: Despite the therapeutic advances made in castration-sensitive prostate cancer, progression to castration-resistant disease is inevitable. Lutetium-177 vipivotide tetraxetan (177Lu-PSMA-617) is a novel radioligand approved for use in metastatic castration-resistant prostate cancer (mCRPC). With promising efficacy, it is not without numerous [...] Read more.
Background: Despite the therapeutic advances made in castration-sensitive prostate cancer, progression to castration-resistant disease is inevitable. Lutetium-177 vipivotide tetraxetan (177Lu-PSMA-617) is a novel radioligand approved for use in metastatic castration-resistant prostate cancer (mCRPC). With promising efficacy, it is not without numerous potential side effects, namely cytopenias, which are often a reason for early discontinuation of 177Lu-PSMA-617. We sought to describe the incidence of cytopenias associated with permanent discontinuation of 177Lu-PSMA-617 at our institution. Methods: We conducted a retrospective review of patients who received 177Lu-PSMA-617at the University of Virginia Comprehensive Cancer Center from 2018 to 2025. From this we assessed for the incidence of toxicities resulting in permanent discontinuation of 177Lu-PSMA-617, which we refer to as dose-limiting toxicities. Descriptive statistics were used to summarize characteristics of the study population. Median overall survival from time of initiation of 177Lu-PSMA-617 was estimated using a Kaplan–Meier curve. Results: Of the patients who received 177Lu-PSMA-617 (n = 64), grade 3 or greater anemia occurred in 36% (n = 23), thrombocytopenia in 3% (n = 2), leukopenia in 3% (n = 2), neutropenia in 0% (n = 0), and lymphopenia in 33% (n = 21). In our cohort, 10.9% (n = 7) developed toxicities necessitating permanent discontinuation. Of these, 9.3% (n = 6) were attributable to cytopenias. Those cytopenias consisted of anemias in 100% (n = 6) of cases, leukopenia in 83% (n = 5), thrombocytopenia in 67% (n = 4), lymphopenia in 100% (n = 6), and neutropenia in 33% (n = 2). Aside from cytopenias, the remaining 1.6% (n = 1) of dose-limiting toxicities were attributable to renal injury. In the VISION trial, the 177Lu-PSMA-617 treatment arm reported dose-limiting toxicities necessitating permanent discontinuation in 11.9% of participants, but did not report if these were attributable to cytopenia or other toxicities. Notably, 2 patients developed grade 5 pancytopenia and 1 patient developed grade 5 bone marrow failure in the VISION 177Lu-PSMA-617 treatment arm. Compared to the VISION 177Lu-PSMA-617 treatment arm, our cohort differed in the distribution of organ metastases, younger median age of patients, and a higher portion of those with ECOG 2 functional status. From the time of 177Lu-PSMA-617 initiation, median overall survival was estimated to be 18.5 months, compared to 15.3 months in the VISION 177Lu-PSMA-617 treatment arm. Conclusions: In our real-world analysis, 85% of dose-limiting toxicities necessitating 177Lu-PSMA-617 discontinuation were attributed to cytopenias. Though a direct comparison cannot be made with the VISION 177Lu-PSMA-617 treatment arm in terms of dose-limiting toxicity attributable specifically to cytopenias, they reported total dose-limiting toxicity to a similar degree, and cytopenias were the most common causes of grade 3 or greater toxicities. Therefore, it is important to recognize the ubiquity of these adverse events as well as the role that they play in therapy-limiting toxicity. Full article
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21 pages, 3297 KB  
Article
Lutetium-177 Radiolabeled Gold Nanoparticles for Prostate Cancer Theranostics
by Adamantia Apostolopoulou, Evangelia-Alexandra Salvanou, Christos Liolios, Stavros Xanthopoulos, Przemysław Koźmiński and Penelope Bouziotis
Nanomaterials 2026, 16(7), 441; https://doi.org/10.3390/nano16070441 - 4 Apr 2026
Cited by 1 | Viewed by 1146
Abstract
Gold nanoparticles (AuNPs) have been extensively studied in cancer treatment research since they have special physicochemical characteristics such as facile surface functionalization with various chemical groups, low toxicity, favorable biocompatibility, and the ability to passively accumulate in tumors through the enhanced permeability and [...] Read more.
Gold nanoparticles (AuNPs) have been extensively studied in cancer treatment research since they have special physicochemical characteristics such as facile surface functionalization with various chemical groups, low toxicity, favorable biocompatibility, and the ability to passively accumulate in tumors through the enhanced permeability and retention (EPR) effect. Prostate cancer cells exhibit an overexpression of the Prostate-Specific Membrane Antigen (PSMA), which therefore represents an ideal candidate for the development of nanoplatforms targeting PSMA overexpressed on these cells. Lutetium-177 (177Lu) is a β-particle emitter with a half-life of 6.7 days. This radionuclide is very promising for the development of theranostic platforms as it emits β particles, which are suitable for therapy, and γ-photons, capable of SPECT imaging. The combination of 177Lu with AuNPs functionalized with PSMA for targeted delivery offers a promising tool for both diagnosis and therapy of prostate cancer. In this study, we focused on the synthesis and in vitro evaluation of PSMA-targeted AuNPs radiolabeled with 177Lu. The AuNPs were functionalized with the TADOTAGA chelator, which enables effective radiolabeling with the radiometal, as well as with a PSMA molecule, which comprises the PSMA targeting moiety (vehicle) of the nanoconstruct. Radiolabeling of the functionalized AuNPs with 177Lu was fast and robust. Subsequent studies focused on the in vitro stability and cellular interaction with two prostate cancer cell lines with different PSMA expression levels, in both 2D and 3D cell cultures, to assess effective targeting. Results indicate that radiolabeled AuNPs exhibit selective interaction with PSMA-expressing cells and present a stronger in vitro cytotoxic effect when functionalized with the PSMA molecule, confirming their potential as theranostic agents and warranting further investigation in LNCaP tumor-bearing mice. Full article
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12 pages, 621 KB  
Article
Clinical Pharmacy in Radiopharmacy: A Cross-Sectional Survey of Practices Within the HUGOPharm Network
by Evan Terrier, Laura Foucault-Fruchard, Nicolas Arlicot, Yann Venel, Mickaël Bourgeois, Serge Maia and Anne-Claire Dupont
Pharmacy 2026, 14(2), 56; https://doi.org/10.3390/pharmacy14020056 - 1 Apr 2026
Viewed by 1122
Abstract
Radiopharmacy is a specialized area of hospital pharmacy dedicated to the preparation and appropriate use of radiopharmaceuticals for diagnostic imaging and targeted therapies. While clinical pharmacy activities are well established in many hospital settings, their integration into radiopharmacy remains poorly documented and lacks [...] Read more.
Radiopharmacy is a specialized area of hospital pharmacy dedicated to the preparation and appropriate use of radiopharmaceuticals for diagnostic imaging and targeted therapies. While clinical pharmacy activities are well established in many hospital settings, their integration into radiopharmacy remains poorly documented and lacks standardization, particularly in the context of the rapid development of theranostic applications. This descriptive, cross-sectional study aimed to assess current clinical pharmacy practices in radiopharmacy across the HUGOPharm network. Between July and September 2025, an anonymous online questionnaire was distributed to radiopharmacy teams, collecting information on prescription analysis, biological monitoring, interdisciplinary collaboration, and other clinical pharmacy activities. Descriptive statistics were used to analyze responses. All participating centers reported verifying patient identity and key prescription parameters; however, substantial variability in practices was observed. Pharmacotherapeutic analysis was more frequently performed for therapeutic procedures (71%) than for diagnostic procedures (57%). Pre-procedure biological testing was common in therapeutic contexts (86%) but infrequent for diagnostic applications (29%). No center reported conducting structured medication reviews or pharmaceutical consultations. The implementation of radioligand therapies, such as [177Lu]-PSMA, was associated with enhanced safety checks and increased interdisciplinary collaboration. Overall, clinical pharmacy in radiopharmacy is developing but remains inconsistently implemented. Structured clinical pharmacy activities appear particularly relevant for theranostic procedures and may represent priorities for future practice development to support patient safety and integrated care. Full article
(This article belongs to the Section Pharmacy Practice and Practice-Based Research)
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1 pages, 133 KB  
Correction
Correction: Jalloul et al. Targeted Alpha Therapy: Exploring the Clinical Insights into [225Ac]Ac-PSMA and Its Relevance Compared with [177Lu]Lu-PSMA in Advanced Prostate Cancer Management. Pharmaceuticals 2025, 18, 1215
by Wael Jalloul, Vlad Ghizdovat, Tamás Pócza, Alexandra Saviuc, Despina Jalloul, Irena Cristina Grierosu and Cipriana Stefanescu
Pharmaceuticals 2026, 19(3), 485; https://doi.org/10.3390/ph19030485 - 16 Mar 2026
Viewed by 545
Abstract
Addition of an Author [...] Full article
29 pages, 847 KB  
Review
Focusing on Prostate-Specific Membrane Antigen in Precision Diagnosis and Treatment of Prostate Cancer
by Xinyi Ren, Lingling Zhang, Ran An, Hongchen Song, Mingjun Shi and Zhenchang Wang
Biomedicines 2026, 14(2), 482; https://doi.org/10.3390/biomedicines14020482 - 22 Feb 2026
Cited by 1 | Viewed by 1861
Abstract
Prostate cancer (PCa) is the most common malignant tumor of the male genitourinary system, and its incidence and mortality have shown a marked global increase in recent years. Prostate-specific membrane antigen (PSMA), a type II transmembrane glycoprotein highly expressed in PCa cells, has [...] Read more.
Prostate cancer (PCa) is the most common malignant tumor of the male genitourinary system, and its incidence and mortality have shown a marked global increase in recent years. Prostate-specific membrane antigen (PSMA), a type II transmembrane glycoprotein highly expressed in PCa cells, has emerged as a vital molecular target in the field of PCa precision diagnosis and therapy. In recent years, significant advances have been achieved in PSMA-based molecular imaging, radioligand therapy, and the development of novel targeted drugs. This review aims to summarize and critically discuss recent advances in PSMA-targeted molecular imaging, radioligand therapy, and emerging therapeutic strategies, highlighting their roles in precision diagnosis and personalized treatment of PCa. PSMA positron emission tomography/computed tomography (PET/CT) imaging using radionuclides such as 68Ga and 18F has markedly improved the accuracy of primary tumor staging, localization of recurrent lesions, and therapeutic response assessment. Radioligand therapies, such as 177Lu-PSMA-617 and 225Ac-PSMA-617, have prolonged survival and demonstrated symptomatic benefits in multiple clinical trials, and are now applied in early disease stages, including chemotherapy-naïve and hormone-sensitive settings. Meanwhile, PSMA-targeted antibodies and antibody–drug conjugates (PSMA-ADCs), as well as bispecific T-cell engagers (BiTEs) and chimeric antigen receptor T-cell (CAR-T) therapies, are constantly being optimized and show promising clinical potential. Furthermore, PSMA-targeted nanoplatforms enable precise delivery of chemotherapeutic agents, photosensitizers, or imaging probes, achieving integrated diagnosis and therapy with multimodal imaging guidance, and offering new strategies for individualized treatment. Taken together, the evidence summarized in this review highlights PSMA as a pivotal molecular target supporting precision diagnosis and personalized treatment across the continuum of prostate cancer management. Full article
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17 pages, 651 KB  
Review
Intra-Arterial Radioligand Therapy in Brain Cancer: Bridging Nuclear Medicine and Interventional Neuroradiology
by Federico Sabuzi, Luca Filippi, Mariafrancesca Trulli, Fabio Domenici, Francesco Garaci and Valerio Da Ros
Diagnostics 2026, 16(2), 341; https://doi.org/10.3390/diagnostics16020341 - 21 Jan 2026
Cited by 2 | Viewed by 1482
Abstract
Recurrent brain tumors—including high-grade gliomas, brain metastases, and aggressive meningiomas—continue to carry a poor prognosis, with high mortality despite therapeutic advances. The aim of this narrative review is to summarize and critically discuss the current evidence on the role of intra-arterial radioligand therapy [...] Read more.
Recurrent brain tumors—including high-grade gliomas, brain metastases, and aggressive meningiomas—continue to carry a poor prognosis, with high mortality despite therapeutic advances. The aim of this narrative review is to summarize and critically discuss the current evidence on the role of intra-arterial radioligand therapy (RLT) in the treatment of recurrent brain tumors. RLT, a targeted form of radionuclide therapy, has gained increasing attention for its potential theranostic applications in neuro-oncology. A literature search was conducted using PubMed and Scopus, including clinical studies evaluating intra-arterial radioligand delivery in central nervous system tumors. Recent research has explored intra-arterial administration of radioligands targeting somatostatin receptors and prostate-specific membrane antigen (PSMA). Somatostatin receptors are overexpressed in meningiomas, while PSMA is highly expressed in the neovasculature of glioblastomas and brain metastases; both targets can be addressed using lutetium-177 (177Lu)- or actinium-225 (225Ac)-labeled radiopharmaceuticals, traditionally delivered intravenously. Available evidence indicates that the intra-arterial route achieves markedly higher radionuclide uptake on 68Ga-PSMA-11 and 68Ga-DOTATOC PET, as well as increased absorbed doses in dosimetric models. Dosimetric analyses consistently show greater tracer accumulation compared with intravenous administration, without evidence of significant peri-procedural toxicity. Uptake in healthy brain tissue is minimal, and no relevant differences have been reported in liver or salivary gland accumulation between intra-arterial and intravenous RLT. Although based on heterogeneous and limited data, intra-arterial RLT appears to be a promising therapeutic strategy for recurrent brain tumors. Future research should focus on improving radioligand delivery beyond the blood–brain barrier and enhancing effective tumor targeting. Full article
(This article belongs to the Special Issue PET/CT Imaging in Oncology: Clinical Advances and Perspectives)
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37 pages, 2629 KB  
Review
Emerging Therapeutic Strategies in Prostate Cancer: Targeted Approaches Using PARP Inhibition, PSMA-Directed Therapy, and Androgen Receptor Blockade with Olaparib, Lutetium (177Lu)Vipivotide Tetraxetan, and Abiraterone
by Piotr Kawczak and Tomasz Bączek
J. Clin. Med. 2026, 15(2), 685; https://doi.org/10.3390/jcm15020685 - 14 Jan 2026
Cited by 1 | Viewed by 2393
Abstract
Prostate cancer is one of the most common malignancies in men, and advanced or metastatic disease remains associated with substantial morbidity and mortality. Therapeutic progress in recent years has been driven by the introduction of targeted treatment strategies, notably poly (ADP-ribose) polymerase (PARP) [...] Read more.
Prostate cancer is one of the most common malignancies in men, and advanced or metastatic disease remains associated with substantial morbidity and mortality. Therapeutic progress in recent years has been driven by the introduction of targeted treatment strategies, notably poly (ADP-ribose) polymerase (PARP) inhibitors, prostate-specific membrane antigen (PSMA)–directed radioligand therapy (RLT), and androgen receptor pathway inhibitors (ARPIs). This review summarizes evidence from phase II and III clinical trials, meta-analyses, and real-world studies evaluating the efficacy, safety, and clinical integration of olaparib, lutetium (177Lu) vipivotide tetraxetan, and abiraterone in advanced prostate cancer. Emphasis is placed on the practical clinical application of these agents, including patient selection, treatment sequencing, and combination strategies. PARP inhibition with olaparib has demonstrated clear benefits in metastatic castration-resistant prostate cancer (mCRPC) with homologous recombination repair (HRR) mutations, particularly BRCA1/2 alterations. PSMA-directed RLT offers a survival advantage in PSMA-positive mCRPC following AR pathway inhibition, with distinct toxicity considerations that influence patient selection. Abiraterone remains a cornerstone therapy across disease stages and plays an important role both as monotherapy and as a combination partner. Emerging data suggest a potential synergy between PARP inhibitors and AR-targeted agents, while also highlighting the limitations of biomarker-unselected approaches. We conclude that the optimal use of PARP inhibitors, PSMA-targeted RLT, and ARPIs requires a personalized strategy guided by molecular profiling, functional imaging, prior treatment exposure, and safety considerations. This clinically focused overview aims to support evidence-based decision-making in an increasingly complex treatment landscape. Full article
(This article belongs to the Special Issue Treatment Strategies for Prostate Cancer: An Update)
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25 pages, 2813 KB  
Review
PSMA-Based Radiopharmaceuticals in Prostate Cancer Theranostics: Imaging, Clinical Advances, and Future Directions
by Ali Cahid Civelek
Cancers 2026, 18(2), 234; https://doi.org/10.3390/cancers18020234 - 12 Jan 2026
Cited by 6 | Viewed by 3497
Abstract
Prostate cancer remains one of the most common malignancies in men worldwide, with incidence and mortality steadily increasing across diverse populations. While early detection and radical prostatectomy can achieve durable control in a subset of patients, approximately 40% of men will ultimately experience [...] Read more.
Prostate cancer remains one of the most common malignancies in men worldwide, with incidence and mortality steadily increasing across diverse populations. While early detection and radical prostatectomy can achieve durable control in a subset of patients, approximately 40% of men will ultimately experience biochemical recurrence often in the absence of clinically detectable disease. Conventional imaging approaches—CT, MRI, and bone scintigraphy—have limited sensitivity for early relapses, frequently leading to delayed diagnosis and suboptimal treatment planning. The discovery of prostate-specific membrane antigen (PSMA) in 1987 and its subsequent clinical translation into positron emission tomography (PET) imaging with [68Ga]Ga-PSMA-11 in 2012, followed by U.S. FDA approval in 2020, has transformed the landscape of prostate cancer imaging. PSMA PET has demonstrated superior accuracy over conventional imaging, as highlighted in the landmark proPSMA trial and now serves as the foundation for theranostic approaches that integrate diagnostic imaging with targeted radioligand therapy. The clinical approval of [177Lu]Lu-PSMA-617 (Pluvicto®: (lutetium Lu 177 vipivotide tetraxetan, Advanced Accelerator Applications USA, Inc., a Novartis company) has established targeted radioligand therapy as a viable option for men with metastatic castration-resistant prostate cancer, extending survival in patients with limited alternatives. Emerging strategies, including next-generation ligands with improved tumor uptake and altered clearance pathways, as well as the integration of artificial intelligence for imaging quantification, are poised to further refine patient selection, dosimetry, and treatment outcomes. This review highlights the evolution of PSMA-based imaging and therapy, discusses current clinical applications and limitations, and outlines future directions for optimizing theranostic strategies in prostate cancer care. Full article
(This article belongs to the Section Cancer Therapy)
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16 pages, 445 KB  
Review
Neoadjuvant Therapies for Prostate Cancer–Current Paradigms and Future Directions
by Kieran Sandhu, Abdullah Al-Khanaty, David Hennes, David Chen, Eoin Dinneen, Carlos Delgado, Nathan Lawrentschuk, Renu S. Eapen, Declan G. Murphy and Marlon Perera
Cancers 2026, 18(1), 65; https://doi.org/10.3390/cancers18010065 - 24 Dec 2025
Cited by 1 | Viewed by 2257
Abstract
High-risk and locally advanced prostate cancer represents 20–25% of new diagnoses of prostate cancer and is associated with high rates of recurrence, morbidity, and mortality. The neoadjuvant window provides a unique opportunity for systemic control prior to definitive therapy with radical prostatectomy or [...] Read more.
High-risk and locally advanced prostate cancer represents 20–25% of new diagnoses of prostate cancer and is associated with high rates of recurrence, morbidity, and mortality. The neoadjuvant window provides a unique opportunity for systemic control prior to definitive therapy with radical prostatectomy or radiotherapy (RT). Early trials with first-generation androgen deprivation therapy (ADT) achieved pathological downstaging but no survival benefit. In the 2000s, the advent of chemohormonal regimes using docetaxel provided excitement but mixed results tempered expectations and is now not recommended prior to surgery. Second-generation androgen receptor pathway inhibitors (ARPIs) combined with ADT have demonstrated significant survival benefit in metastatic prostate cancer and are currently being evaluated in large phase III trials in the neoadjuvant setting. RT remains an alternative curative modality, and recent data highlights similar issues to surgery in eradicating micrometastatic disease despite excellent local control. This has driven parallel efforts to evaluate intensified systemic therapy in the pre-RT/neoadjuvant settings. In addition to the excitement surrounding ARPIs, radioligand therapy, such as [177Lu]Lu-PSMA-617 has shown promise in the neoadjuvant setting and continues to be investigated. Future research aims to incorporate genomic and molecular factors to enable personalised neoadjuvant therapies by identifying damage immunologically responsive subtypes that may derive greater benefit from immune-directed therapies in the peri-operative setting. This narrative review synthesises current evidence for neoadjuvant therapies in high-risk prostate cancer and future directions. Full article
(This article belongs to the Special Issue Neoadjuvant Therapy for Urologic Cancer)
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