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  3. Is Hypoxia a Factor Influencing PSMA-Directed Radioligand Therapy?-An In Silico Study on the Role of Chronic Hypoxia in Prostate Cancer.
 

Is Hypoxia a Factor Influencing PSMA-Directed Radioligand Therapy?-An In Silico Study on the Role of Chronic Hypoxia in Prostate Cancer.

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BORIS DOI
10.48350/161778
Publisher DOI
10.3390/cancers13143429
PubMed ID
34298642
Description
Radioligand therapy (RLT) targeting prostate specific-membrane antigen (PSMA) is an emerging treatment for metastatic castration-resistant prostate cancer (mCRPC). It administrates 225Ac- or 177Lu-labeled ligands for the targeted killing of tumor cells. Differently from X- or γ-ray, for the emitted α or β particles the ionization of the DNA molecule is less dependent on the tissue oxygenation status. Furthermore, the diffusion range of electrons in a tumor is much larger than the volume typically spanned by hypoxic regions. Therefore, hypoxia is less investigated as an influential factor for PSMA-directed RLT, in particular with β emitters. This study proposes an in silico approach to theoretically investigate the influence of tumor hypoxia on the PSMA-directed RLT. Based on mice histology images, the distribution of the radiopharmaceuticals was simulated with an in silico PBPK-based convection-reaction-diffusion model. Three anti-CD31 immunohistochemistry slices were used to simulate the tumor microenvironment. Ten regions of interest with varying hypoxia severity were analyzed. A kernel-based method was developed for dose calculation. The cell survival probability was calculated according to the linear-quadratic model. The statistical analysis performed on all the regions of interest (ROIs) shows more heterogeneous dose distributions obtained with 225Ac compared to 177Lu. The higher homogeneity of 177Lu-PSMA-ligand treatment is due to the larger range covered by the emitted β particles. The dose-to-tissue histogram (DTH) metric shows that in poorly vascularized ROIs only 10% of radiobiological hypoxic tissue receives the target dose using 177Lu-PSMA-ligand treatment. This percentage drops down to 5% using 225Ac. In highly vascularized ROIs, the percentage of hypoxic tissue receiving the target dose increases to more than 85% and 65% for the 177Lu and 225Ac-PSMA-ligands, respectively. The in silico study demonstrated that the reduced vascularization of the tumor strongly influences the dose delivered by PSMA-directed RLT, especially in hypoxic regions and consequently the treatment outcome.
Date of Publication
2021-07-08
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
Keyword(s)
convection–reaction–diffusion models dosimetry hypoxia radiobiology radioligand therapy tumor microenvironment
Language(s)
en
Contributor(s)
Birindelli, Gabriele
Universitätsklinik für Nuklearmedizin
Drobnjakovic, Milos
Morath, Volker
Steiger, Katja
D'Alessandria, Calogero
Gourni, Eleni
Universitätsklinik für Nuklearmedizin
Afshar Oromieh, Ali
Universitätsklinik für Nuklearmedizin
Weber, Wolfgang
Rominger, Axel Oliverorcid-logo
Universitätsklinik für Nuklearmedizin
Eiber, Matthias
Shi, Kuangyuorcid-logo
Universitätsklinik für Nuklearmedizin
Additional Credits
Universitätsklinik für Nuklearmedizin
Series
Cancers
Publisher
MDPI AG
ISSN
2072-6694
Access(Rights)
open.access
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