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Plant-derived hallucinogens: neuropharmacological properties and psychoactive mechanisms - a narrative review
Angelika Ziaja1, Ewa Niedzielska-Andres2, Krzysztof Ciszowski3
1Toxicological Student Research Group, Department of Toxicology, Faculty of Pharmacy, Jagiellonian University Medical College, Kraków, Poland.
Introduction:
Natural hallucinogens have been known since ancient times and were widely used in religious, shamanic, and folk rituals, as well as in traditional medicine. These compounds originate from plants, animals, and fungi and exhibit considerable diversity. Different groups of substances vary in their mechanisms of action, receptor responses, effects induced, and therapeutic applications. Hallucinogens are misused worldwide to achieve specific sensations and altered states of consciousness; therefore, their inves- tigation is necessary to assess safety and predict long-term consequences of abuse. Some of these substances demonstrate pharmacological potential and are currently being studied for their possible use in the treatment of various conditions, including anxiety disorders, depression, and pain. Recent studies also indicate their potential role in the treatment of neurodegenerative diseases. Due to their wide-ranging therapeutic applications, psychedelics have become the subject of increasing scientific interest.
Aim Of The Study:
The aim of this review was to summarize the current literature on natural hallucinogens of plant origin, with particular emphasis on their biological activity and neuropharmacological properties. It also highlighted their potential for possible therapeutic use.
Methodology:
The review was conducted using scientific databases such as PubMed and Google Scholar, as well as relevant textbooks. Keywords were searched in both English and Polish, including hallucinogens, plant-derived hallucinogens, substance abuse, toxicology. The literature reviewed covered the years 1998 to 2025.
Conclusions:
Natural plant-derived hallucinogens exhibit substantial diversity in terms of psychostimulant effects, safety profiles, addictive potential, and therapeutic applicability. Their activity across multiple neurotransmitter systems presents a promising avenue for the development of novel treatments for neuropsychiatric disorders. However, further in-depth research is required to fully elucidate their mechanisms of action, clinical efficacy, and potential adverse effects. Continued investigation into their therapeutic potential and clinical applications is essential.
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