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Cannabidiol target sites (multiple targets) (CBD targets)

Target
CBD targets
Molecular classification
G protein-coupled receptors (GPCRs), Ligand-gated ion channels, Voltage-gated ion channels, Transient receptor potential channels, Enzymes, Nuclear receptors, Cannabinoid receptors
01

Overview

Cannabidiol (CBD) is a phytocannabinoid derived from *Cannabis sativa* that interacts with a remarkably diverse array of molecular targets, including over 60 known binding sites spanning G protein-coupled receptors, ion channels, enzymes, and nuclear receptors. Unlike THC, CBD exhibits very low affinity for the classical cannabinoid receptors CB1 and CB2 but instead acts as a multimodal pharmacological agent, functioning as a negative allosteric modulator of CB1/CB2, a partial agonist at GPR18, an antagonist of GPR55, and a direct agonist at serotonin receptors (5-HT1A, 5-HT2A) and glycine receptors.[1][5] CBD also inhibits the endocannabinoid-metabolizing enzyme FAAH, binds to the vanilloid receptor VR1/TRPV1, modulates voltage-gated and transient receptor potential ion channels, and activates the nuclear receptor PPARγ.[3][5] This polypharmacological profile underlies CBD's potential therapeutic applications in diverse conditions including epilepsy, neuropathic pain, inflammation, cancer, and psychiatric disorders, though clinical translation of preclinical target interactions remains limited. Significant drug-drug interaction potential exists due to CBD's inhibition of multiple cytochrome P450 isoforms, which may complicate its use in polypharmacy scenarios.[5] The structural similarity of CBD to other minor cannabinoids determines binding pattern clustering, with recent molecular docking studies identifying GTPase KRas and hematopoietic cell kinase (HCK) as novel high-affinity targets with potential in cancer and inflammatory diseases.[1]

Other names
CBDCannabidiol molecular targetsCBD target profileEndocannabinoid system modulators (functional classification)
02

Mechanism of action

CBD's mechanisms of action vary by target: Negative allosteric modulation of CB1 and CB2 receptors; Partial agonism/antagonism at GPCR targets (GPR18, GPR55); Direct agonism at serotonin receptors and glycine receptors; Enzyme inhibition (FAAH, COX1, select CYP450 isoforms, aldose reductase); Ion channel modulation (activation of TRPA1, inhibition of T-type calcium channels and NMDA receptors); Nuclear receptor activation (PPARγ translocation and transcriptional activity). Notably, CBD's partial agonism at GPR18 maintains stable conformations, whereas THC's full agonism generates "metastable" conformations with mechanical constraints in the receptor's active pocket.

03

Biological functions

Signal transduction (via GPCR and ion channel pathways)Neurotransmission (serotonergic, GABAergic, glycinergic, endocannabinoid)Cell proliferation and apoptosis (via PPARγ activation)Pain perception and inflammation (via glycine receptors and TRPV1)Immune response (via CB2 and GPR55 pathways)Cellular metabolism and energy production (via mitochondrial complex modulation)
04

Disease associations

Neurological disorders: Epilepsy, anxiety, neurodegenerative diseasesCancer: Multiple targets with anti-proliferative and pro-apoptotic potentialInflammation and pain: Neuropathic pain, rheumatic diseasesImmune-related conditions: Via immune cell-expressed receptorsCardiovascular disease: Via PPARγ and endothelial functionPsychiatric conditions: Anxiety and psychosis-related symptoms (via 5-HT receptors)
05

Safety considerations

Drug-drug interactions: CBD inhibits multiple cytochrome P450 enzymes (CYP2C19, CYP2D6, CYP3A4, CYP3A5, CYP3A7, CYP2C9, CYP1A1, CYP1A2, CYP1B1), potentially elevating concentrations of drugs metabolized by these pathwaysLack of psychoactive effects despite multiple GPCR interactions: CBD shows very low affinity for CB1 and CB2 receptors (unlike THC), reducing psychotropic riskOff-target effects: CBD's broad target profile may result in unintended biological effects, though this also suggests diverse therapeutic potentialVariable efficacy in clinical translation: Many preclinical target interactions have not translated to robust clinical efficacy
06

Interacting drugs

THC (higher affinity for GPR18 and CB1/CB2)

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