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Amanda Feilding

Beckley Foundation

64 papers in the library · 11,543 citations · publishing 2010-2025

Papers

Delta-9-Tetrahydrocannabinol Disruption of Time Perception and of Self-Timed Actions

Pharmacopsychiatry July 22, 2010 James Stone, Paul Morrison, Judith Nottage et al. 13 citations

THC impairs subjective time perception and reduces the rate of button pressing in healthy volunteers, but the change in button pressing rate is more closely related to impaired concentration and intoxication than to time perception. The disruption of self-timed actions from THC may arise from a different mechanism than alterations in time perception.

The serotonin 2A receptor agonist 25CN-NBOH increases murine heart rate and neck-arterial blood flow in a temperature-dependent manner

Journal of Psychopharmacology February 12, 2020 Tobias Buchborn, Taylor Lyons, Chenchen Song et al. 11 citations

Activating serotonin 2A receptors with a highly selective agonist (N-(2-hydroxybenzyl)-2,5-dimethoxy-4-cyanophenylethylamine) increases heart rate and slightly elevates neck-arterial blood flow in anesthetized mice. Raising the heat-pad temperature from 37°C to 41°C enhanced the drug's effect on blood flow while counteracting the rapid heart rate. The drug also slowed breathing, which reversed at the higher temperature, and selectively increased core body temperature only under elevated pad conditions. Arterial oxygen saturation remained unchanged. These results suggest that selective serotonin 2A receptor activation links cardiovascular changes with thermoregulation, potentially influencing brain hemodynamics relevant to the psychedelic state.

d-Lysergic acid diethylamide has major potential as a cognitive enhancer

bioRxiv (Cold Spring Harbor Laboratory) December 6, 2019 Felipe Augusto Cini da Silva, Isis M. Ornelas, Encarni Marcos et al. 9 citations preprint

A single dose of d-LSD, a potent serotonergic agonist, increased preference for novel objects in young and adult rats several days after treatment, but did not increase preference in old animals unless followed by a 6-day exposure to enriched environment, which rescued novelty preference to young levels. Mass spectrometry-based proteomics in human brain organoids treated with d-LSD showed upregulation of proteins from the presynaptic active zone. A computational model of synaptic connectivity in the hippocampus and prefrontal cortex suggests that d-LSD enhances novelty preference by combining local synaptic changes in mnemonic and executive regions with alterations of long-range synapses, and that better pattern separation within enriched environment explains its synergy with d-LSD in rescuing novelty preference in old animals. These results advance the use of d-LSD in cognitive enhancement.

Correction to: The hidden therapist: evidence for a central role of music in psychedelic therapy.

Psychopharmacology May 1, 2018 Mendel Kaelen, Bruna Giribaldi, Jordan Raine et al. 9 citations correction

Music plays a central role in psychedelic therapy by helping to guide and support the therapeutic process. The article synthesizes evidence that music can influence emotional states, facilitate psychological insights, and enhance the overall therapeutic outcome when combined with psychedelic substances. The authors argue that music acts as a "hidden therapist" by directing the trajectory of the psychedelic experience, promoting emotional release, and supporting the integration of the experience afterward. This suggests that careful selection and use of music is crucial for optimizing the therapeutic benefits of psychedelic therapy.

Cortical Correlates of Psychedelic-Induced Shaking Behavior Revealed by Voltage Imaging

International Journal of Molecular Sciences May 30, 2023 Tobias Buchborn, Taylor Lyons, Chenchen Song et al. 6 citations

Shaking behavior—head twitches in mice and wet dog shakes in rats—is a reliable indicator of psychedelic drug action, thought to involve serotonin 2A receptors on cortical pyramidal cells, though direct evidence in living animals has been limited. Using cell type-specific voltage imaging in awake mice, researchers expressed a voltage indicator in layer 2/3 pyramidal neurons and captured cortical activity while mice displayed psychedelic shaking behavior. Shaking was preceded by high-frequency oscillations and overlapped with low-frequency oscillations in the motor cortex, spectrally mirroring the rhythm of the shakes. These findings reveal a cortical fingerprint of serotonin-2A-receptor-mediated shaking behavior, linking a cross-mammalian psychedelic effect to cell-type specific brain dynamics.

LSD and language: Decreased structural connectivity, increased semantic similarity, changed vocabulary in healthy individuals.

European neuropsychopharmacology : the journal of the European College of Neuropsychopharmacology March 1, 2023 Isabel Wießner, Marcelo Falchi, Dimitri Daldegan-Bueno et al. 6 citations

Low to moderate doses of LSD alter language structure, semantics, and vocabulary over time. In a double-blind, placebo-controlled crossover study, 24 healthy volunteers (age 35±11, 33% women) received 50 μg LSD or placebo. LSD reduced verbosity, lexicon, and connectivity in speech networks from 1.5 to 4 hours, decreased semantic distances between words from 2 to 24 hours, and shifted vocabulary related to grammar, persons, time, space, and biological processes from 1.5 to 24 hours. Simpler, disconnected structure and increased semantic similarity may reflect cognitive impairments, while vocabulary changes may indicate subjective perceptual shifts. Automated language analysis could offer unconstrained insights into psychedelic cognition.

Psilocybin induces acute and persisting alterations in immune status and the stress response in healthy volunteers

medRxiv November 1, 2022 Natasha L. Mason, Attila Szabo, Kim P. C. Kuypers et al. 6 citations preprint

Psilocybin immediately reduced concentrations of the pro-inflammatory cytokine tumor necrosis factor-α (TNF-α), while other inflammatory markers (interleukin-1α, IL-1β, IL-6, and C-reactive protein) remained unchanged. Seven days later, TNF-α returned to baseline, but IL-6 and CRP were persistently reduced in the psilocybin group. Changes in immune profile were linked to acute neurometabolic activity: reductions in TNF-α were associated with lower hippocampal glutamate concentrations. Greater reductions in IL-6 and CRP at seven days correlated with persisting positive mood and social effects. Psilocybin also blunted the cortisol response to a psychosocial stressor compared to placebo.

Autonomic Nervous System activity correlates with peak experiences induced by DMT and predicts increases in wellbeing

bioRxiv March 20, 2024 Valerie Bonnelle, Amanda Feilding, Fernando E. Rosas et al. 5 citations preprint

Intense positive emotional experiences induced by psychedelics, known as 'peak experiences', are strong predictors of positive outcomes in psychedelic-assisted therapy. This study investigated how the autonomic nervous system (ANS) relates to such experiences. Analyzing electrocardiogram data from 17 participants who received DMT or placebo, researchers found that coactivation of the sympathetic and parasympathetic branches of the ANS during the DMT experience was strongly correlated with ratings of 'Spiritual Experience' and 'Insightfulness', and also linked to improved wellbeing two weeks later. Additionally, the balance between these branches before DMT injection predicted 'Insightfulness' scores. These findings demonstrate the ANS's involvement in psychedelic-induced peak experiences and suggest potential for biofeedback tools to enhance therapy.

LSD alters eyes-closed functional connectivity within the early visual cortex in a retinotopic fashion

Journal of Vision September 1, 2016 Leor Roseman, Martin I. Sereno, Robert Leech et al. 4 citations

Under LSD, the visual cortex's resting-state functional connectivity (RSFC) becomes more dependent on its intrinsic retinotopic organization, as if the brain were processing actual visual input despite closed eyes. In 10 healthy subjects, RSFC between non-adjacent patches of V1 and V3 that represent congruent parts of the visual field (both horizontal or both vertical meridians) was significantly stronger than connectivity between incongruent patches (horizontal-vertical), compared to placebo. The difference between congruent and incongruent connectivity was greater under LSD (Cohen's d=1.6), suggesting that psychedelic imagery involves transient local retinotopic activation similar to that from visual stimulation.

LSD Modulates Proteins Involved in Cell Proteostasis, Energy Metabolism and Neuroplasticity in Human Cerebral Organoids.

ACS omega August 27, 2024 Marcelo N Costa, Livia Goto-Silva, Juliana M Nascimento et al. 3 citations

Exposure to LSD alters the abundance of hundreds of proteins in lab-grown human brain tissue, affecting pathways related to protein quality control, energy metabolism, and the brain's ability to rewire itself. Mass spectrometry revealed changes in protein synthesis, folding, and degradation, as well as in glycolysis and oxidative phosphorylation. Follow-up experiments showed that LSD also promotes the growth of neuronal extensions, supporting its influence on neuroplasticity. These molecular changes may help explain how psychedelics could produce therapeutic effects in neuropsychiatric disorders.

LSD Modulates Proteins Involved in Cell Proteostasis, Energy Metabolism and Neuroplasticity in Human Cerebral Organoids

bioRxiv Preprint Server January 30, 2024 Marcelo N. Costa, Livia Goto-Silva, Juliana M. Nascimento et al. 1 citation preprint

Proteomic analysis of human cerebral organoids reveals that lysergic acid diethylamide (LSD) alters proteins involved in proteostasis, energy metabolism, and neuroplasticity-related pathways. LSD exposure changed protein synthesis, folding, autophagy, and proteasomal degradation, suggesting complex regulation of neural cell function. It also modulated glycolysis and oxidative phosphorylation, which are crucial for cellular energy management and synaptic function. Complementary experiments showed LSD enhanced neurite outgrowth in vitro, confirming its impact on neuroplasticity. These findings provide insight into molecular mechanisms through which LSD may affect neuroplasticity and potentially contribute to therapeutic effects for neuropsychiatric disorders.

Author response: Self-blinding citizen science to explore psychedelic microdosing

December 11, 2020 Balázs Szigeti, Laura Kärtner, Allan Blemings et al. 1 citation

A self-blinding citizen science study tested whether psychedelic microdosing improves well-being and cognition beyond placebo. 191 participants who already planned to microdose were randomly assigned to receive four weeks of microdoses, placebos, or a mix. All psychological outcomes—including well-being, mindfulness, and life satisfaction—improved from baseline in the microdose group, but the placebo group also improved, and no significant differences emerged between groups. Small acute differences in mood, energy, and creativity were observed, but these could be explained by participants correctly guessing whether they took a microdose. The findings suggest that the anecdotal benefits of microdosing are likely due to the placebo effect.

Neural correlates of the LSD experience revealed by multimodal neuroimaging

UNC Libraries April 22, 2020 Peter J. Hellyer, Luke T. Williams, Ben Sessa et al. 1 citation

Lysergic acid diethylamide (LSD) in microgram doses produces profound, sometimes life-changing experiences and is a uniquely powerful psychoactive substance. In the first modern neuroimaging study of LSD, marked changes in brain blood flow, electrical activity, and network communication patterns were observed. These changes correlated strongly with the drug's hallucinatory and consciousness-altering properties. The findings have implications for understanding the neurobiology of consciousness and for potential applications of LSD in psychological research.

A randomised placebo-controlled study of the effects of lysergic acid diethylamide microdosing (15 μg) on pain perception in healthy volunteers.

Br J Pain September 4, 2025 Mauro Cavarra, Nadia R. P. W. Hutten, Jan Schepers et al.

A single 15 μg dose of lysergic acid diethylamide (LSD) did not significantly alter pain perception in healthy volunteers compared to placebo in a randomized controlled trial. The study used a double-blind design to test whether a microdose of LSD would produce analgesic effects, but found no meaningful difference between the LSD and placebo conditions on measures of pain tolerance or threshold.