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In vivo toxicological effects of rel A antisense phosphorothioates in CD-1 mice
U M Sarmiento1, J R Perez, J M Becker
1Department of Investigative Toxicology, Hoffmann-La Roche, Inc., Nutley, New Jersey 07110.
Abstract:
To characterize the in vivo toxicity of phosphorothioate antisense oligonucleotides against rel A (p65 subunit of NF-kappa B transcription factor), forty-eight 6-week-old CD-1 mice were split into 4 groups (6/sex/group) receiving vehicle (phosphate-buffered saline) or doses of 50, 100, and 150 mg/kg of rel A antisense oligonucleotides intraperitoneally 3 times weekly for 2 weeks. Clinical signs of toxicity included weakness, and decreased motor activity and food consumption with body weight loss. Mortality occurred in 7 of 12 mice in the 150-mg/kg group and in 2 of 12 mice in the 100-mg/kg group, most of which died within the first 2 to 4 days of treatment. The remaining mice were necropsied on day 15. The major hematological finding was severe dose-dependent thrombocytopenia. The liver enzyme levels were mildly elevated in the serum of mid- and high-dose animals. At necropsy, increased spleen and liver weights were observed in treated mice, some of which also had mild pleural and/or peritoneal effusions. Histopathological examination revealed the likely cause of death to be acute renal failure due to renal cortical or tubular necrosis. Treatment-related changes were also found in the liver, spleen, bone marrow, and several other organs. In summary, the kidney, liver, and bone marrow (megakaryocytic lineage) were identified as the major target organs for toxicity with rel A antisense therapy.
Insights
Phosphorothioate antisense oligonucleotides targeting rel A caused significant toxicity in mice, including organ damage and mortality. The kidney, liver, and bone marrow were identified as primary targets of this therapy.
Area of Science:
- Pharmacology
- Toxicology
- Molecular Biology
Background:
- Antisense oligonucleotides (ASOs) are therapeutic agents targeting gene expression.
- Rel A (p65 subunit of NF-kappa B) is a key transcription factor in inflammatory pathways.
Purpose of the Study:
- To evaluate the in vivo toxicity of phosphorothioate ASOs targeting rel A.
- To identify target organs and dose-limiting toxicities.
Main Methods:
- CD-1 mice received intraperitoneal injections of rel A ASOs (50, 100, 150 mg/kg) or vehicle 3 times weekly for 2 weeks.
- Clinical signs, mortality, hematology, serum chemistry, organ weights, and histopathology were assessed.
Main Results:
- Toxicity included weakness, decreased activity and food consumption, body weight loss, and mortality at higher doses.
- Severe dose-dependent thrombocytopenia and mild elevations in liver enzymes were observed.
- Histopathology revealed acute renal failure (tubular necrosis) as a primary cause of death, with additional effects in the liver, spleen, and bone marrow.
Conclusions:
- The kidney, liver, and bone marrow (megakaryocytic lineage) are major target organs for rel A ASO toxicity.
- Acute renal failure is a critical dose-limiting toxicity.
- These findings are crucial for the safe development of rel A-targeted antisense therapies.