Publications by authors named "D E Pellegrini-Giampietro"

Cannabis derivatives are among the most widely used psychoactive substances in the world, which leads to growing medical concerns regarding its chronic use and abuse especially among adolescents. Exposure to THC during formative years produces long-term behavioral alterations that share similarities with symptoms of psychiatric and neurodevelopmental disorders. In this study, we have analyzed the functional and molecular mechanisms that might underlie these alterations.

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Article Synopsis
  • Therapeutic hypothermia (TH) is now a standard treatment to reduce brain damage in newborns with hypoxic-ischaemic encephalopathy (HIE), but many still face high rates of death and disabilities.
  • CHF6467 is a modified form of nerve growth factor (NGF) that does not cause pain and has shown protective effects on neurons in rodent models when used with hypothermia.
  • This study suggests that combining intranasal administration of CHF6467 with TH significantly reduces brain damage and improves motor and memory function in neonatal HIE, making it a promising treatment option.
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Cannabis contains over 500 different compounds, including cannabinoids, terpenoids, and flavonoids. Cannabidiol (CBD) is a non-psychoactive constituent, whereas beta-caryophyllene (BCP) is one of most the well-known terpenoids of . In recent years, there has been an emerging idea that the beneficial activities of these compounds are greater when they are combined.

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Phenomics, the complexity of microglia phenotypes and their related functions compels the continuous study of microglia in disease animal models to find druggable targets for neurodegenerative disorders. Activation of microglia was long considered detrimental for neuron survival, but more recently it has become apparent that the real scenario of microglia morphofunctional diversity is far more complex. In this review, we discuss the recent literature on the alterations in microglia phenomics in the hippocampus of animal models of normal brain aging, acute neuroinflammation, ischemia, and neurodegenerative disorders, such as AD.

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In the central nervous system, some specific phosphodiesterase (PDE) isoforms modulate pathways involved in neuronal plasticity. Accumulating evidence suggests that PDE9 may be a promising therapeutic target for neurodegenerative diseases. In the current study, computational techniques were used to identify a nature-inspired PDE9 inhibitor bearing the scaffold of an isoflavone, starting from a database of synthetic small molecules using a ligand-based approach.

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