Long-Term Complications of Radioligand Therapy with Lutetium-177 and Yttrium-90 in Patients with Neuroendocrine Neoplasms

Nutrients. 2022 Dec 30;15(1):185. doi: 10.3390/nu15010185.

Abstract

Background: Neuroendocrine neoplasms are a group of tumors deriving from neural crest. They can be located in every tissue, but most commonly in gastrointestinal tract. Targeted therapy with use of radionuclides is an available and acceptable way of treatment, but its long-term safety is still to be determined, especially with sensitive methods.

Methods: Study was performed on a group of 42 patients. They underwent full cycle (4 courses; 8-12 weekly intervals) of radioligand therapy with [177Lu]Lu-DOTATATE alone or tandem therapy with [177Lu]Lu-DOTATATE+[90Y]Y-DOTATATE. Late and long-term marrow and renal complications were assessed. Analysis focused on comparing data before first, fourth, and one year after the last course of RLT.

Results: Study showed decreasing of all blood parameters in long-term observation, especially in lymphocytes line. Type of radioisotope, other diseases, primary tumor location, BMI, gender or age did not affect results. The only factor that had influence on hemoglobin and erythrocytes was decreased renal filtration. In long-term observation almost 10% decrease of renal filtration was observed. Type of isotope, gender, age, BMI did not affect these results. Moreover, reduction of urine IL-18, KIM-1, and albumin concentration has been observed.

Conclusions: Though low-grade complications of radioligand therapy are possible, it stay a safe method of NEN treatment where benefits outweigh the risk.

Keywords: 177-Lu; 90-Y; IL-18; KIM-1; PRRT; RLT; chronic complications; hematological; myelotoxicity; nephrotoxicity; renal.

MeSH terms

  • Humans
  • Neuroendocrine Tumors* / pathology
  • Neuroendocrine Tumors* / radiotherapy
  • Octreotide
  • Organometallic Compounds* / adverse effects
  • Yttrium Radioisotopes / adverse effects

Substances

  • Lutetium-177
  • Yttrium-90
  • Organometallic Compounds
  • Octreotide
  • Yttrium Radioisotopes