Dissociative

Ketamine

Dissociative anesthetic used medically and recreationally. Known for inducing the 'K-hole' at higher doses. FDA-approved for treatment-resistant depression.

Important information

This information is for educational purposes only. Always research thoroughly, test your substances, understand legal implications, and consult healthcare professionals. Never use substances alone or in unsafe environments.

Dosage information

Ketamine · Insufflated · non-clinical reference ranges

Tier labels reproduce reported amount and intensity terminology; they do not indicate safety or a recommendation.

Reference dose ranges for Ketamine by Insufflated, in milligrams
TierAmountNote
Threshold 10 milligrams
Light 15 to 30 milligrams
Common 30 to 75 milligrams
Strong 75 to 150 milligrams
K-hole Reported lower bound: 150 milligrams; no upper bound is established.

Dosage ranges are reference values from published literature, not recommendations. Potency varies by source, body weight, and individual sensitivity — harm-reduction practice starts well below the ranges listed.

Limitations: Figures are transcribed from a reference compilation, not measured in a controlled study; the potency of any given material is unknown until tested.

Evidence: Review or reference work

  1. Erowid Erowid Ketamine Vault

Duration

1-2 hours | Onset: 5-15 minutes (insufflated)

Effect timeline · Insufflated
Onset 5m–15m Comeup 5m–10m Peak 30m–60m Offset 30m–60m Afterglow 30m–2h

Insufflated: 1-2 hours. Most common recreational route.

Effect timeline · Intramuscular
Onset 2m–5m Comeup 5m–10m Peak 30m–60m Offset 30m–45m Afterglow 30m–2h

IM: Medical/clinical setting. Rapid onset, reliable absorption.

Known interactions

Dangerous Ketamine + Fentanyl

Despite some medical co-administration, unsupervised combination of ketamine and opioids creates severe respiratory depression risk.

Risks: Respiratory depression · Loss of consciousness · Inability to detect overdose symptoms · Death

Mechanism: Ketamine's dissociative sedation masks opioid overdose signs. Combined respiratory depression can be fatal.

What reduces the risk

  • Never combine without medical supervision
  • Have naloxone available
  • Never use alone

Sources: TripSit Interaction Chart · PsychonautWiki: Ketamine Interactions

Dangerous Ketamine + Heroin (Diacetylmorphine)

Combining dissociatives with opioids is extremely dangerous. Ketamine masks overdose signs while both suppress breathing.

Risks: Fatal respiratory depression · Unable to recognize overdose · Aspiration · Death

Mechanism: Ketamine-induced dissociation prevents awareness of opioid overdose. Additive respiratory depression.

What reduces the risk

  • NEVER combine
  • Have naloxone available
  • Never use alone

Sources: TripSit Interaction Chart · PsychonautWiki: Ketamine Interactions

Unsafe Ketamine + Alcohol (Ethanol)

Both are CNS depressants. Combining significantly increases risk of vomiting, aspiration, and loss of consciousness.

Risks: Aspiration (vomiting while unconscious) · Respiratory depression · Severe disorientation · Loss of consciousness · Memory blackout

Mechanism: Alcohol's GABA-mediated CNS depression adds to ketamine's NMDA antagonism. Both impair motor function and consciousness.

What reduces the risk

  • Avoid combining ketamine with alcohol
  • If both are used, reduce doses significantly
  • Never lie on your back — recovery position
  • Have a sitter present

Sources: TripSit Interaction Chart · PsychonautWiki: Ketamine Interactions · DanceSafe: Ketamine Safety

Caution Ketamine + Psilocybin

Both produce altered states through different mechanisms. The combination can be intensely disorienting but is not typically physiologically dangerous.

Risks: Extreme disorientation · Loss of motor control · Nausea · Overwhelming psychological effects

Mechanism: Psilocybin's 5-HT2A agonism + ketamine's NMDA antagonism = dual dissociative-psychedelic state.

What reduces the risk

  • Only for very experienced users
  • Reduce doses of both significantly
  • Sitter essential
  • Safe physical environment mandatory

Sources: TripSit Interaction Chart · PsychonautWiki: Ketamine Combinations

Absence of a listed interaction never implies safety. Check any combination in the app's 23×23 interaction matrix.

Harm reduction

  • Sitting/lying position essential
  • Safe environment
  • Sitter recommended
  • Avoid alcohol and opioids
  • Don't redose quickly
  • Limit frequency of use
  • Stay hydrated

Risks & side effects

  • Bladder damage with chronic use
  • Addiction potential
  • Impaired motor function
  • Confusion
  • Nausea
  • Respiratory depression at high doses

Effects

  • Dissociation
  • Analgesia
  • Dream-like state
  • Out-of-body experiences
  • Reduced sensory perception
  • Philosophical insights

Schedule III (USA). Prescription medication. Illegal for recreational use.

Pharmacology

NMDA receptor antagonist. Also affects opioid and dopamine systems.

Therapeutic research

  • FDA-approved: Esketamine (Spravato) nasal spray for treatment-resistant depression (2019)
  • Rapid-acting antidepressant: Effects within hours vs. weeks for traditional antidepressants (Berman et al., 2000; Zarate et al., 2006)
  • Ketamine-assisted psychotherapy (KAP) offered at hundreds of clinics in the US
  • Research for PTSD, suicidal ideation, OCD, and chronic pain
  • WHO Essential Medicine for anesthesia — one of the safest general anesthetics known
  • Studies on ketamine's neuroplasticity-promoting effects via BDNF and mTOR pathways

Clinical studies 27

Dose-related effects of ketamine for antidepressant-resistant symptoms of PTSD in veterans

Landmark multi-center RCT (Abdallah et al., 2022) showing dose-related ketamine effects for treatment-resistant PTSD symptoms in veterans and active duty military. Published in Neuropsychopharmacology.

Personalized Use of Ketamine for Treatment-Resistant Depression

Nature Translational Psychiatry study on personalized ketamine dosing strategies for treatment-resistant depression.

Ketamine-assisted psychotherapy for trauma-exposed patients

Clinical chart review study examining ketamine-assisted psychotherapy outcomes in trauma-exposed patients.

The potential of ketamine for posttraumatic stress disorder: a review of clinical evidence

Liriano, Hatten & Schwartz 2023 review in Therapeutic Advances in Psychopharmacology synthesizing clinical evidence for ketamine in PTSD, including effects on symptom severity and the limits of current trial data.

The Role of Ketamine in Managing Depression and PTSD

Journal of Affective Disorders review of ketamine's role in depression and PTSD management.

Clinical Efficacy of Ketamine for Treatment-resistant Depression

Bratsos, Saleh 2019 Cureus. Systematic review examining ketamine efficacy in treatment-resistant major depressive disorder.

Adjunctive Intranasal Esketamine in Treatment-Resistant Depression

Daly et al. 2018 JAMA Psychiatry. Phase 2 RCT demonstrating intranasal esketamine efficacy for treatment-resistant depression, leading to FDA approval.

The psychotomimetic ketamine disrupts the transfer of late sensory information in the corticothalamic network

Qin et al. 2023 Eur J Neuroscience. Ketamine increases 'background noise' in thalamo-cortical system, potentially explaining psychosis-like symptoms.

Pharmacological and behavioral divergence of ketamine enantiomers: implications for abuse liability

Bonaventura et al. 2021 study showing S-ketamine (not R-ketamine) is responsible for abuse potential. Key for understanding esketamine vs racemic ketamine. Published in Molecular Psychiatry.

Comparison of antidepressant and side effects in mice after intranasal administration of (R,S)-ketamine, (R)-ketamine, and (S)-ketamine

Chang, Hashimoto et al. 2019 Pharmacol Biochem Behav. Preclinical comparison showing R-ketamine had greater antidepressant effect with fewer side effects than S-ketamine via intranasal route. Informs enantiomer selection.

Ketamine for suicidal ideation: A systematic review and meta-analysis

Witt et al. 2020 meta-analysis of 15 trials (572 participants) showing single ketamine infusion reduces suicidal thoughts for up to 72 hours. Published in ANZ J Psychiatry.

Ketamine for Rapid Reduction of Suicidal Thoughts in Major Depression

Grunebaum et al. 2018 American Journal of Psychiatry. Midazolam-controlled RCT showing ketamine rapidly reduced suicidal ideation within 24 hours in major depression. Key evidence for ketamine's anti-suicidal effects.

Intravenous Esketamine in Adult Treatment-Resistant Depression: A Double-Blind, Placebo-Controlled Study

Singh et al. 2016 Biological Psychiatry RCT establishing esketamine efficacy for treatment-resistant depression. Led to FDA approval of Spravato nasal spray.

Mechanisms of ketamine action as an antidepressant

Zanos & Gould 2018 Molecular Psychiatry comprehensive review of ketamine's antidepressant mechanisms including NMDA antagonism, AMPA potentiation, and neuroplasticity.

A Randomized Trial of an N-methyl-D-aspartate Antagonist in Treatment-Resistant Major Depression

Zarate et al. 2006 landmark NIH study that launched ketamine depression research. First RCT showing single IV ketamine infusion produced rapid antidepressant effects within hours. Published in Arch Gen Psychiatry.

Ketamine Mechanism of Action: Separating the Wheat from the Chaff

Gould, Zanos, Zarate 2016 Neuropsychopharmacology. Comprehensive review dissecting ketamine's antidepressant mechanisms—NMDA antagonism, AMPA enhancement, mTOR signaling, and metabolite roles. Key mechanistic overview.

Rapid effectiveness of intravenous ketamine for ultraresistant depression in a clinical setting

Thomas et al. 2018 J Psychopharmacology. Real-world clinical evidence of IV ketamine effectiveness in ultraresistant depression. Identified anhedonia and bipolarity as clinical predictors.

Effects of Ketamine in Treatment-Refractory Obsessive-Compulsive Disorder

Bloch et al. 2012 Biological Psychiatry. First study of ketamine for treatment-refractory OCD showing rapid but transient anti-obsessional effects.

The Effect of a Single Dose of Intravenous Ketamine on Suicidal Ideation: A Systematic Review and Individual Participant Data Meta-Analysis

Wilkinson, Zarate et al. 2018 Am J Psychiatry. Meta-analysis showing single IV ketamine rapidly reduces suicidal ideation within hours, with effects lasting up to one week.

The rapid anti-suicidal ideation effect of ketamine: A systematic review

Hochschild, Grunebaum, Mann 2021 Preventive Medicine. Systematic review synthesizing evidence for ketamine's rapid anti-suicidal effects, examining onset, duration, and clinical implications.

A meta-analysis of the effects of ketamine on suicidal ideation in depression patients

Shen, Gao, Lv et al. 2024 Translational Psychiatry. Comprehensive meta-analysis examining ketamine's anti-suicidal effects across multiple trials in depressed patients.

Ketamine–NMDA receptor binding structure

Rogers 2021 Nature Reviews Neuroscience. Structural analysis of ketamine's binding to NMDA receptors revealed through cryo-EM imaging.

Glutamate and Glycine Binding to the NMDA Receptor

Yu & Bhatt 2018 Structure. Structural study of glutamate and glycine co-agonist binding to NMDA receptor, foundational for understanding ketamine's mechanism.

One-Year Outcomes Following Intravenous Ketamine Plus Digital Training Among Patients with Treatment-Resistant Depression

Price et al. 2023 JAMA Network Open. One-year follow-up of RCT showing sustained benefits of IV ketamine combined with digital cognitive training for TRD.

Insights for the Use of Ketamine From Randomized Controlled Trials That Compared Ketamine With Electroconvulsive Therapy in Severe Depression

Andrade 2022 J Clinical Psychiatry. Analysis of RCTs comparing ketamine to ECT for severe depression, providing clinical guidance.

High-dose Versus Low-dose Oral Ketamine on Control and Relapse of Treatment-resistant Depression: A Randomized, Double-blinded Clinical Trial

KheirAbadi & Golkar 2023 Iranian J Psychiatry and Behavioral Sciences. RCT comparing high vs low dose oral ketamine for TRD control and relapse prevention.

Efficacy of esketamine nasal spray for treatment-resistant depression: A meta-analysis of randomized controlled studies

Ouyang & Li 2025 Medicine. Meta-analysis of RCTs evaluating esketamine nasal spray efficacy for treatment-resistant depression.

Sources 2

  1. Zanos, P., & Gould, T. D. Rapid-acting antidepressant ketamine: A review. Pharmacology Biochemistry and Behavior, 164, pp. 32-44 (2018) doi:10.1016/j.pbb.2017.08.005
  2. Erowid Erowid Ketamine Vault

History & culture

Ketamine was first synthesized by Calvin Stevens at Parke-Davis in 1962 as a safer alternative to phencyclidine (PCP). It was first used on humans in 1964 and approved by the FDA in 1970. It saw extensive use as a battlefield anesthetic during the Vietnam War due to its wide safety margin. Recreational use emerged in the 1970s–80s, particularly in club and rave scenes. John Lilly's sensory deprivation tank experiments with ketamine in the 1970s explored its dissociative and visionary properties. The discovery of ketamine's rapid antidepressant effects by Berman et al. in 2000 launched a revolution in psychiatry.

Natural origins

Ketamine is entirely synthetic — no natural source exists. It belongs to the arylcyclohexylamine chemical class, related to PCP. Its structure features a cyclohexanone ring bonded to a chlorophenyl group. Ketamine exists as two enantiomers: S-ketamine (esketamine, more potent, FDA-approved as Spravato) and R-ketamine (arketamine, under investigation, may have fewer side effects). The drug's mechanism is unique among anesthetics — it blocks NMDA glutamate receptors rather than enhancing GABA.

Molecular family: Arylcyclohexylamines

Arylcyclohexylamines are dissociatives featuring an aryl group (like phenyl) attached to a cyclohexylamine core. This scaffold includes ketamine and related compounds. Unlike psychedelics, these substances work primarily on NMDA receptors and produce dissociation and anesthesia. The structural modification from simple aryl substitution produces dramatic shifts in consciousness. Key characteristics: - Aryl group (benzene or substituted benzene) connected to cyclohexylamine - NMDA receptor antagonists - Produce dissociation rather than visual/perceptual effects - Include both medical anesthetics and research compounds - Shorter duration than tryptamine psychedelics Dissociatives represent a distinct pharmacological category. While psychedelics primarily enhance perception and connectivity, dissociatives disconnect consciousness from body awareness—a fundamentally different altered state produced by targeting different receptors.

Structurally related to None identified

External resources