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Multi targets of cannabidiol (CBD) on skeletal mammalian and avian neuromuscular preparations. | LitMetric

AI Article Synopsis

  • - Cannabidiol (CBD) has potential effects on both central and peripheral nervous systems, particularly in muscle-related synapses, and is tested using both mammalian and avian models with specific pharmacological methods.
  • - In laboratory assessments, various pharmacological agents were used alongside CBD to analyze its impact on acetylcholine (ACh) release and neuromuscular responses, highlighting the different effects observed in mice and birds.
  • - The study concludes that CBD can modulate neuromuscular activity by influencing channels related to ACh release and selectively inhibiting certain receptors, resulting in paralysis without causing harm to muscle cells.

Article Abstract

Cannabidiol (CBD) has been used in diseases that affect the central nervous system. Its effects on the peripheral synapses are of great interest, since endocannabinoid receptors are expressed in muscles. CBD (0.3 mM) was analysed using mammalian and avian neuromuscular preparations, through myographic techniques in complementary protocols. Mammalian cells were examined by light microscopy while exogenous acetylcholine (40 µM) and potassium chloride (100 mM) were added into avian preparations, before and at the end of experiments. Pharmacological tools such as atropine (2 µM), polyethylene glycol (PEG 400, 20 µM), Ca (1.8 mM), F55-6 (20 µg/mL), and nifedipine (1.3 mM) were assessed with CBD. In mice, CBD causes a facilitatory effect and paralysis, whereas in avian, paralysis. Concluding, CBD is responsible for activated or inhibited channels, for ACh release muscarinic receptor modulation, and by the inhibition of nicotinic receptors leading to neuromuscular blockade, with no damage to striated muscle cells.

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Source
http://dx.doi.org/10.1080/14786419.2023.2290675DOI Listing

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