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Exploring Psychedelics: A New Frontier in Mental Health Research Research suggests their potential in treating mental health conditions like depression, anxiety, and PTSD.
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In recent years, there has been a resurgence of interest in the therapeutic potential of psychedelics, unlocking new possibilities in the treatment of mental health conditions. Here's an overview of psychedelics, their importance in drug development, and how o2h discovery can contribute to this evolving field.

Understanding Psychedelics and their Connection to Mental Health
Psychedelics, such as psilocybin and LSD, are substances known for their mind-altering effects. Research suggests their potential in treating mental health conditions like depression, anxiety, and PTSD. These compounds act on serotonin receptors in the brain, influencing mood and perception.

Today, the globe is experiencing an escalating mental health crisis. The NIMH (National Institute of Mental Health) in the United States estimates that the entire expenditures associated with serious mental illness, which affects around 6% of the adult population, exceed $300 billion each year.
The Role of Psychedelics in Drug Development
Hallucinogens such psilocybin and LSD, induce profound alterations of human emotion, and cognition. The discovery of the hallucinogenic effects of LSD and the observations that LSD and the endogenous ligand serotonin share pharmacological profiles led to the suggestion that serotonin was involved in the psychosis of mental disorders. Although they bind other G protein-coupled receptor (GPCR) subtypes, studies indicate that several effects of hallucinogens involve agonist activity at the serotonin 5-HT2A receptor. 

Prototypical psychedelics activate heterotrimeric Gq stimulating intracellular release of Ca2+ and the receptor also interacts with β-arrestin proteins controlling the efficacy and duration of its signalling. The coupling mechanisms can vary from one brain region to another, differentially activating particular brain regions that may be associated with specific neurochemical, physiological, and behavioural responses. Understanding the biased mechanisms and outcome in the context of drug discovery for the 5HT receptor subtypes, provides a strategy to achieve superior therapeutic outcomes in treating neurological disorders.
How o2h discovery Supports Psychedelics Research?
At o2h, we have developed and screened a series of 5-HT2A-small molecules with varying potencies towards Gq and β-arrestin-biased signaling thererby shedding light on the dynamics associated with the 5-HT2A receptor. These serve as invaluable tools in elucidating the specific intracellular responses providing comprehensive understanding for drug discovery and pharmacological research.
o2h assay setup and cell lines:
  • Our scientists can support in identifying compounds with differential signaling activities, downstream of the 5-HT receptor, stimulated via Gαq and beta-arrestin pathways
  • Stable cell lines overexpressing the receptor of interest e.g. 5HT2A/2B/2C and for different species – human, rat and mouse can be developed in appropriate cellular background for screening. These cells can measure IP1 and Ca2+ as a stable downstream signal utilising FLIPR to address activation of the Gαq pathway
  • PathHunter cell lines from Eurofins/Discoverx can be utilised for the screening of 5HT2A agonists, antagonists and partial agonists in bespoke assays with a transferable licence agreement with DiscoverX 
  • These cells overexpress human 5-HT2A receptors and the β-arrestin2. These proteins are engineered to reconstitute β-galactosidase activity upon recruitment of β-arrestin2 to 5-HT2A receptor
  • We have explored the PathHunter cell line for IP one measurements as well using HTRF-based IP1 kit from CisBio. A significant and reliable fold window is achieved for both IP1 and beta Arrestin with the PathHunter cell line, making it convenient to study biased signalling
  • o2h can also support in exploratory studies using BRET-based protein-protein interactions and complementation assays (an area that is currently gaining interest). The study will involve cloning into appropriate vector systems (e.g. LgBiT-SmBiT), based on your biology of interest and customise them to your needs
Fig A: Chemiluminescent detection of β-Arrestin recruitment in U2OS cells in response to 5-HT (serotonin). Increase in serotonin leads to an increase in luminescence, indicating a dose-dependent β-arrestin recruitment to 5-HT2A receptor. Analysis performed using non-linear regression agonist vs response variable slope (four parameters).
Fig (B, C): Cells stimulated with an Increasing concentration of 5-HT, serotonin measuring intracellular Ca2+ with FLIPR and IP1 levels  detected by HTRF.
Fig (D): Cells treated with increasing concentration of the antagonist ketanserin exhibiting reduced IP1 generation upon stimulation with EC80 concentration of 5-HT (serotonin).
Our commitment to advancing psychedelics research reflects our dedication to innovation in drug discovery services and leaving a positive impact on human health. For more information or collaboration opportunities, please reach out to us at discovery@o2h.com.
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