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Updated: Feb 8, 2026

Assessment of Kidney Function in Mouse Models of Glomerular Disease
Published on: June 30, 2018
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 .
Aims:
Peptide receptor radionuclide therapy (PRRT) is in clinical use today to treat metastatic neuroendocrine tumors. Infused, radiolabeled, somatostatin analog peptides target tumors that are killed by irradiation damage. The peptides, however, are also retained in kidneys due to glomerular filtration, and the administered doses must be limited to avoid kidney damage. The human radical scavenger and antioxidant, α1-microglobulin (A1M), has previously been shown to protect bystander tissue against irradiation damage and has pharmacokinetic and biodistribution properties similar to somatostatin analogs. In this study, we have investigated if A1M can be used as a renal protective agent in PRRT.
Results:
We describe nephroprotective effects of human recombinant A1M on the short- and long-term renal damage observed following lutetium 177 (177Lu)-DOTATATE (150 MBq) exposure in BALB/c mice. After 1, 4, and 8 days (short term), 177Lu-DOTATATE injections resulted in increased formation of DNA double-strand breaks in the renal cortex, upregulated expression of apoptosis and stress response-related genes, and proteinuria (albumin in urine), all of which were significantly suppressed by coadministration of A1M (7 mg/kg). After 6, 12, and 24 weeks (long term), 177Lu-DOTATATE injections resulted in increased animal death, kidney lesions, glomerular loss, upregulation of stress genes, proteinuria, and plasma markers of reduced kidney function, all of which were suppressed by coadministration of A1M. Innovation and Conclusion: This study demonstrates that A1M effectively inhibits radiation-induced renal damage. The findings suggest that A1M may be used as a radioprotector during clinical PRRT, potentially facilitating improved tumor control and enabling more patients to receive treatment.
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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