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Culture of Bladder Cancer Organoids as Precision Medicine Tools
Published on: December 28, 2021
Future of Theranostics: An Outlook on Precision Oncology in Nuclear Medicine
Thomas Langbein1, Wolfgang A Weber2, Matthias Eiber1
1Department of Nuclear Medicine, School of Medicine, Klinikum rechts der Isar, Technical University of Munich, Munich, Germany.
Abstract:
Molecular alterations in malignant disease result in the expression or upregulations of various targets that can be used for imaging and treatment with radiopharmaceuticals. This theranostic principle has acquired greater importance in personalized medicine in recent years, particularly in oncology, where advanced tumors can be treated effectively with low side effects. Since the pioneering use of 131I in differentiated thyroid cancer in the 1940s, remarkable achievements in nuclear medicine endoradiotherapy have been demonstrated, mainly in the treatment of neuroendocrine neoplasms by using 177Lu-labeled somatostatin analogs or in the treatment of advanced prostate cancer using prostate-specific membrane antigen-directed radionuclide therapy. Besides that, this review focuses on promising novel radiopharmaceuticals and describes their preclinical and clinical status. Radiolabeled antibodies, such as 131I-omburtamab directed against the B7-H3 protein on the surface of neuroblastoma cells; HuMab-5B1, a 89Zr/177Lu-labeled antibody for the treatment of CA19-9-expressing malignancies; and 177Lu-lilotomab, a CD37 antibody for the treatment of B-cell lymphomas, are being highlighted. The neurotensin receptor ligand 111In/177Lu-3B-227 has demonstrated high potential in imaging and therapy for several malignancies (e.g., pancreatic adenocarcinomas). Targeting of the fibroblast activation protein is currently being explored for different tumor entities using PET imaging with the fibroblast activation protein inhibitor (FAPI) 68Ga-FAPI-04, and the first therapeutic applications of 90Y-FAPI-04 have been applied. After 2 decades of rapid development in theranostics, a variety of new targets are available for further clinical investigation.
Insights
Theranostics, combining imaging and treatment with radiopharmaceuticals, offers personalized cancer therapy with reduced side effects. Novel radiopharmaceuticals targeting specific cancer markers show promise for various advanced malignancies.
Area of Science:
- Nuclear medicine
- Oncology
- Radiopharmaceutical therapy
Background:
- Molecular alterations in cancer enable targeted imaging and treatment using radiopharmaceuticals, a principle known as theranostics.
- Theranostics has gained prominence in personalized medicine, particularly for advanced cancers, offering effective treatment with minimal side effects.
- Historical success includes 131I for thyroid cancer, 177Lu-somatostatin analogs for neuroendocrine neoplasms, and PSMA-directed therapy for prostate cancer.
Purpose of the Study:
- To review promising novel radiopharmaceuticals and their current preclinical and clinical status.
- To highlight advancements in theranostic applications for various malignancies.
Main Methods:
- Review of preclinical and clinical data for novel radiopharmaceuticals.
- Focus on radiolabeled antibodies, receptor ligands, and enzyme inhibitors.
- Examples include 131I-omburtamab, 89Zr/177Lu-HuMab-5B1, 177Lu-lilotomab, 111In/177Lu-3B-227, and 68Ga-FAPI-04/90Y-FAPI-04.
Main Results:
- Radiolabeled antibodies targeting B7-H3, CA19-9, and CD37 show potential for neuroblastoma, CA19-9+ malignancies, and B-cell lymphomas, respectively.
- Neurotensin receptor ligand 111In/177Lu-3B-227 demonstrates efficacy in imaging and therapy for pancreatic adenocarcinomas and other cancers.
- Fibroblast activation protein targeting with 68Ga-FAPI-04 (PET imaging) and 90Y-FAPI-04 (therapy) is under investigation for diverse tumor types.
Conclusions:
- Theranostics has rapidly advanced over two decades, providing a growing arsenal of novel targets for clinical investigation.
- Emerging radiopharmaceuticals offer new avenues for targeted cancer imaging and therapy, advancing personalized oncology.
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