Human Astrocyte Spheroids as Suitable In Vitro Screening Model to Evaluate Synthetic Cannabinoid MAM2201-Induced Effects on CNS

Int J Mol Sci. 2023 Jan 11;24(2):1421. doi: 10.3390/ijms24021421.

Abstract

There is growing concern about the consumption of synthetic cannabinoids (SCs), one of the largest groups of new psychoactive substances, its consequence on human health (general population and workers), and the continuous placing of new SCs on the market. Although drug-induced alterations in neuronal function remain an essential component for theories of drug addiction, accumulating evidence indicates the important role of activated astrocytes, whose essential and pleiotropic role in brain physiology and pathology is well recognized. The study aims to clarify the mechanisms of neurotoxicity induced by one of the most potent SCs, named MAM-2201 (a naphthoyl-indole derivative), by applying a novel three-dimensional (3D) cell culture model, mimicking the physiological and biochemical properties of brain tissues better than traditional two-dimensional in vitro systems. Specifically, human astrocyte spheroids, generated from the D384 astrocyte cell line, were treated with different MAM-2201 concentrations (1-30 µM) and exposure times (24-48 h). MAM-2201 affected, in a concentration- and time-dependent manner, the cell growth and viability, size and morphological structure, E-cadherin and extracellular matrix, CB1-receptors, glial fibrillary acidic protein, and caspase-3/7 activity. The findings demonstrate MAM-2201-induced cytotoxicity to astrocyte spheroids, and support the use of this human 3D cell-based model as species-specific in vitro tool suitable for the evaluation of neurotoxicity induced by other SCs.

Keywords: CNS toxicity; human astrocytes; in vitro 3D models; novel psychoactive substances; preclinical studies; public health.

MeSH terms

  • Astrocytes* / metabolism
  • Cannabinoids* / chemistry
  • Cannabinoids* / toxicity
  • Humans
  • Naphthalenes / metabolism
  • Naphthalenes / toxicity
  • Neurons / metabolism

Substances

  • 1-(5-fluoropentyl)-3-(4-methyl-1-naphthoyl)indole
  • Cannabinoids
  • Naphthalenes

Grants and funding

This research received no external funding.