Protection of Kidney Function with Human Antioxidation Protein α1-Microglobulin in a Mouse 177Lu-DOTATATE Radiation

Amanda Kristiansson1, Jonas Ahlstedt1, Bo Holmqvist2

  • 11 Division of Infection Medicine, Department of Clinical Sciences in Lund, Lund University , Lund, Sweden .

Abstract

Insights

Alpha1-microglobulin (A1M) protects kidneys from radiation damage during peptide receptor radionuclide therapy (PRRT). This antioxidant may enable higher therapeutic doses for neuroendocrine tumors, improving treatment outcomes.

Area of Science:

  • Oncology
  • Radiochemistry
  • Nephrology

Background:

  • Peptide receptor radionuclide therapy (PRRT) treats metastatic neuroendocrine tumors using radiolabeled somatostatin analogs.
  • Kidney retention of these analogs limits therapeutic doses due to nephrotoxicity.
  • Alpha1-microglobulin (A1M), an antioxidant, shares pharmacokinetic properties with somatostatin analogs.

Purpose of the Study:

  • To investigate the potential of A1M as a renal protective agent in PRRT.
  • To evaluate A1M's efficacy in mitigating short- and long-term kidney damage induced by 177Lu-DOTATATE.

Main Methods:

  • BALB/c mice were exposed to 177Lu-DOTATATE with or without coadministered A1M.
  • Short-term assessments (1, 4, 8 days) included DNA damage, gene expression, and proteinuria.
  • Long-term assessments (6, 12, 24 weeks) evaluated survival, kidney histology, and renal function markers.

Main Results:

  • A1M significantly suppressed short-term radiation-induced DNA damage, apoptosis, stress gene expression, and proteinuria.
  • Coadministration of A1M mitigated long-term effects, including reduced animal death, kidney lesions, glomerular damage, and improved renal function markers.
  • A1M demonstrated significant nephroprotective effects against 177Lu-DOTATATE-induced renal toxicity.

Conclusions:

  • A1M effectively inhibits radiation-induced renal damage in a preclinical PRRT model.
  • A1M shows promise as a radioprotector in clinical PRRT.
  • A1M may allow for increased therapeutic doses, potentially enhancing tumor control and patient eligibility for PRRT.

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