Active Mental Health Brain & Nervous System

Validating novel, selective CaV2.3 inhibitors as oral, small molecule therapies for posttraumatic stress disorder

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AI plain-English summary

A genetic variant that makes people more likely to develop PTSD also cranks up activity of a calcium channel in brain regions controlling fear and memory—and a biotech company now has drug candidates that can block it. This matters because existing PTSD drugs work poorly for many patients and come with serious side effects. Over 5% of trauma-exposed adults worldwide develop PTSD, yet the only approved treatments—paroxetine and sertraline—were originally developed for depression. The discovery that a specific calcium channel gene, CACNA1E, is linked to PTSD risk in a meta-analysis of over 1 million people points to a more targeted approach. Lario Therapeutics has developed first-in-class, oral small molecules that potently and selectively inhibit the CaV2.3 channel and reach the brain. This project will test whether these compounds can reverse stress-induced anxiety, fear conditioning, and rigid fear behaviours in mouse models of PTSD. If successful, this could lead to the first drug designed specifically for the biology of PTSD, rather than repurposed antidepressants. The work is still preclinical—success means a validated drug target and candidate molecules ready for human trials.

View original technical description
Post-traumatic stress disorder is a prevalent mental health condition with significant unmet medical need. Over 5% of trauma-exposed adults worldwide develop PTSD during their lifetimes, with those exposed to certain types of trauma such as combat and assault carrying a particularly high burden. The few approved drug treatments (e.g. paroxetine and sertraline) have limited efficacy and significant side effects. A recently published multi-ancestry meta-analysis of genetic data from >1 million individuals exposed to trauma reported significant risk of PTSD associated with the CACNA1E gene which encodes a voltage-gated calcium channel (CaV2.3) with high expression in brain areas (hippocampus, amygdala, anterior cingulate and prefrontal cortex) involved in memory, emotional regulation, and stress response. Genome-wide analyses of transcription indicated that the highest risk alleles are linked to significantly higher expression of CACNA1E, suggesting that inhibition of CaV2.3 function has potential therapeutic benefit. Lario Therapeutics has developed first-in-class, small molecule inhibitors of CaV2.3 which are potent, selective, and brain-penetrant. This collaborative proposal aims to validate CaV2.3 as a target for PTSD and to test potential CaV2.3-targeted therapeutics in mouse models of PTSD including stress-induced alterations in anxiety, fear conditioning and in paradigms showing learned flexibility of instinctual fear behaviours.

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Researchers

Sumantra Chattarji (EPMC Awardee)

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Original classification

Advancing target validation for novel mental health drug discovery

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