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Carla Zoja1, Daniela Corna, Valeria Nava
1Mario Negri Institute for Pharmacological Research, Centro Anna Maria Astori, Science and Technology Park Kilometro Rosso, Bergamo, Italy.
Abstract:
Bardoxolone methyl is an antioxidant inflammation modulator acting through induction of Keap1-Nrf2 pathway. Results from a recent phase IIb clinical trial reported that bardoxolone methyl was associated with improvement in the estimated glomerular filtration rate in patients with advanced chronic kidney disease and Type 2 diabetes. However, increases in albuminuria, serum transaminase, and frequency of adverse events were noted. We studied the effect of 3-mo treatment with RTA 405, a synthetic triterpenoid analog of bardoxolone methyl in Zucker diabetic fatty rats with overt Type 2 diabetes. Rats were treated from 3 mo of age with vehicle, RTA 405, ramipril, or RTA 405 plus ramipril. RTA 405 caused severe changes in food intake and diuresis with decline in body weight, worsening of dyslipidemia, and increase in blood pressure. Early elevation in serum transaminase was followed by liver injury. RTA 405 worsened proteinuria, glomerulosclerosis, and tubular damage. Ramipril was renoprotective, but when given with RTA 405 it was not able to limit its worsening effects. These data could be due to degradation products in the drug substance used, as disclosed by the company once the study was concluded. To overcome such a drawback, the company offered to test dh404, a variant of RTA 405, in Zucker diabetic fatty rats. The dh404 did not display beneficial effects on proteinuria, glomerulosclerosis, and interstitial inflammation. Rather, kidneys from three rats receiving dh404 showed the presence of a granulomatous and inflammatory process reminiscent of a pseudotumor. Altogether these data raise serious concerns on the use of bardoxolone analogs in Type 2 diabetic nephropathy.
Insights
Bardoxolone methyl analogs, RTA 405 and dh404, showed adverse effects in diabetic rats, worsening kidney damage and causing liver injury. These findings raise concerns about their use in Type 2 diabetic nephropathy.
Area of Science:
- Nephrology
- Pharmacology
- Diabetology
Background:
- Bardoxolone methyl modulates inflammation via the Keap1-Nrf2 pathway.
- Phase IIb trials suggested potential benefits in chronic kidney disease (CKD) and Type 2 diabetes (T2D), but noted adverse events.
- Concerns exist regarding the safety and efficacy of bardoxolone analogs in T2D nephropathy.
Purpose of the Study:
- To evaluate the effects of RTA 405, a bardoxolone analog, on diabetic nephropathy in Zucker diabetic fatty rats.
- To assess the impact of dh404, a variant of RTA 405, on kidney parameters.
- To investigate potential renoprotective effects of ramipril alone and in combination with RTA 405.
Main Methods:
- Zucker diabetic fatty rats were treated with vehicle, RTA 405, ramipril, or RTA 405 plus ramipril for 3 months.
- Kidney function, proteinuria, liver enzymes, and histopathology were assessed.
- A separate cohort was treated with dh404 to evaluate its effects.
Main Results:
- RTA 405 treatment led to weight loss, dyslipidemia, hypertension, liver injury, and worsened proteinuria and kidney damage.
- Ramipril's renoprotective effects were negated when co-administered with RTA 405.
- Dh404 did not improve kidney parameters and induced granulomatous inflammation, resembling pseudotumors.
Conclusions:
- Bardoxolone analogs RTA 405 and dh404 demonstrate significant toxicity and exacerbate kidney damage in a preclinical model of T2D.
- The observed adverse effects, including liver injury and inflammatory responses, raise serious concerns for the therapeutic application of these compounds in diabetic nephropathy.
- Further investigation into the safety profile and potential degradation products of bardoxolone analogs is warranted.
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