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Combining In Vivo and Organotypic In Vitro Approaches to Assess the Human Relevance of Basimglurant (RG7090), a
Ramona Nudischer1, Kasper Renggli2, Cristina Bertinetti-Lapatki1
1Roche Pharma Research and Early Development, Roche Innovation Center Basel, F. Hoffmann-La Roche Ltd, 4070 Basel, Switzerland.
Abstract:
Basimglurant (RG7090), a small molecule under development to treat certain forms of depression, demonstrated foci of altered hepatocytes in a long-term rodent-toxicity study. Additional evidence pointed toward the activation of the constitutive androstane receptor (CAR), an established promoter of nongenotoxic and rodent-specific hepatic tumors. This mode of action and the potential human relevance was explored in vivo using rodent and cynomolgus monkey models and in vitro using murine and human liver spheroids. Wild type (WT) and CAR/pregnane X receptor (PXR) knockout mice (CAR/PXR KO) were exposed to RG7090 for 8 consecutive days. Analysis of liver lysates revealed induction of Cyp2b mRNA and enzyme activity, a known activation marker of CAR, in WT but not in CAR/PXR KO animals. A series of proliferative genes were upregulated in WT mice only, and immunohistochemistry data showed increased cell proliferation exclusively in WT mice. In addition, primary mouse liver spheroids were challenged with RG7090 in the presence or absence of modified antisense oligonucleotides inhibiting CAR and/or PXR mRNA, showing a concentration-dependent Cyp2b mRNA induction only if CAR was not repressed. On the contrary, neither human liver spheroids nor cynomolgus monkeys exposed to RG7090 triggered CYP2B mRNA upregulation. Our data suggested RG7090 to be a rodent-specific CAR activator, and that CAR activation and its downstream processes were involved in the foci of altered hepatocytes formation detected in vivo. Furthermore, we demonstrated the potential of a new in vitro approach using liver spheroids and antisense oligonucleotides for CAR knockdown experiments, which could eventually replace in vivo investigations using CAR/PXR KO mice.
Insights
Basimglurant (RG7090) activates the constitutive androstane receptor (CAR) specifically in rodents, causing liver changes. This study confirms RG7090 is a rodent-specific CAR activator, not affecting humans.
Area of Science:
- Hepatology
- Toxicology
- Pharmacology
Background:
- Basimglurant (RG7090) is a depression therapeutic candidate.
- Rodent toxicity studies revealed altered hepatocytes potentially linked to constitutive androstane receptor (CAR) activation.
- CAR activation is known to promote rodent-specific hepatic tumors.
Purpose of the Study:
- To investigate the mechanism of RG7090-induced hepatotoxicity.
- To determine the role of CAR and pregnane X receptor (PXR) in RG7090's effects.
- To assess the human relevance of RG7090's mode of action.
Main Methods:
- In vivo studies using wild-type and CAR/PXR knockout mice, and cynomolgus monkeys.
- In vitro studies using murine and human liver spheroids.
- Antisense oligonucleotides were used to inhibit CAR and PXR in mouse liver spheroids.
Main Results:
- RG7090 induced Cyp2b mRNA and proliferation markers in wild-type mice but not in CAR/PXR knockout mice.
- CAR activation was confirmed in wild-type mice, but not in knockout models.
- RG7090 did not induce CYP2B mRNA upregulation in human liver spheroids or cynomolgus monkeys.
- Inhibition of CAR in mouse liver spheroids blocked RG7090-induced Cyp2b mRNA induction.
Conclusions:
- RG7090 acts as a rodent-specific CAR activator.
- CAR activation and downstream effects are implicated in the observed foci of altered hepatocytes in rodents.
- An in vitro spheroid model with antisense oligonucleotides offers a potential alternative to in vivo CAR/PXR knockout mouse studies.

