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Yttrium therapy is a nuclear medicine treatment that uses radioactive Yttrium-90 to precisely target and destroy tumor cells while sparing surrounding healthy tissue.
Yttrium therapy is a nuclear medicine treatment that uses radioactive Yttrium-90 to precisely target and destroy tumor cells while sparing surrounding healthy tissue.
Yttrium therapy is a nuclear medicine treatment that uses the radioactive isotope Yttrium-90 (Y-90) to selectively irradiate and destroy cancer cells. Yttrium-90 is a beta emitter, meaning its radiation has a limited range within tissue, which helps to spare surrounding healthy structures. The therapy is primarily used in certain cancers when other treatment options are insufficient or unavailable.
Yttrium-90 emits beta radiation during radioactive decay. This ionizing radiation damages the DNA of tumor cells, preventing them from dividing and ultimately causing cell death. Because the range of beta radiation in tissue is only a few millimeters, damage to surrounding healthy tissue is minimized.
For therapeutic use, Yttrium-90 is attached to carrier substances such as microspheres (tiny beads) or specific antibodies and peptides that deliver the radioactive material directly to the tumor site.
The most common application of yttrium therapy is Selective Internal Radiation Therapy (SIRT), also known as radioembolization. In this procedure, Yttrium-90-loaded microspheres are delivered via a catheter into the hepatic artery. The microspheres preferentially lodge in the blood vessels supplying the tumor and irradiate it from within. SIRT is mainly used for:
In radioimmunotherapy, Yttrium-90 is conjugated to monoclonal antibodies that specifically bind to tumor cells. A well-known example is Ibritumomab tiuxetan (Zevalin), which is used for certain types of non-Hodgkin lymphoma.
For neuroendocrine tumors, Yttrium-90 can also be coupled to peptides (e.g., octreotide analogues) that bind to specific receptors on tumor cells. This approach is known as Peptide Receptor Radionuclide Therapy (PRRT).
Yttrium therapy is performed in specialized nuclear medicine centers or radiation oncology departments. Before treatment, comprehensive pre-assessments are conducted to evaluate patient suitability and to calculate the precise radiation dose. Administration varies by method:
As with any radiation-based treatment, yttrium therapy may cause side effects depending on the specific method and radiation dose. Possible side effects include:
Careful patient selection and precise dosimetry are essential to minimize the risk of serious adverse events.
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