Olivetol (CAS 500-66-3) is a naturally occurring phenolic compound found in olives and olive oil. Chemically, it is a pentyl-substituted resorcinol (1,3-dihydroxy-5-pentylbenzene) with antioxidant and anti-inflammatory properties.
Olivetol Derivative
Olivetol derivatives refer to compounds derived from olivetol (5-pentylresorcinol), a natural polyphenol with significant roles in cannabinoid biosynthesis and industrial applications.
CBD Derivative
CBD derivatives represent a frontier in cannabinoid therapeutics, offering enhanced efficacy and reduced side effects compared to native CBD. Strategic structural modifications—such as hydroxylation, glycosylation, and receptor-targeting—enable tailored applications in neurology, oncology, and metabolic disorders. Continued research into synthetic methodologies and pharmacokinetic optimization will be critical for their clinical success.
Benzoquinone Derivative
Benzoquinone derivatives are versatile compounds with critical roles in energy storage, drug development, and materials science. Their redox versatility and structural adaptability drive innovations in battery technology (TABQ) and precision medicine (anti-fibrotic agents). Ongoing research focuses on enhancing biocompatibility and scaling sustainable synthesis methods.
Olivetol (CAS 500-66-3) is a naturally occurring phenolic compound found in olives and olive oil. Chemically, it is a pentyl-substituted resorcinol (1,3-dihydroxy-5-pentylbenzene) with antioxidant and anti-inflammatory properties.
Olivetol (CAS No.500-66-3),also known as 5-pentylresorcinol or 3,5-dihydroxyamylbenzene, is a naturally occurring organic compound with the chemical formula C₁₁H₁₆O₂.Olivetol is an off-white crystals or olive to light purple waxy solid. Forms monohydrate (melting point: 102-106°F). Olivetol is a member of the class of resorcinols that is resorcinol in which the hydrogen at position 5 is replaced by a pentyl group. It has a role as a lichen metabolite.Olivetol was used as a template molecule in the synthesis of molecularly imprinted polymer (MIP). It was also used as an inhibitor of (S)-mephenytoin 4'-hydroxylase activity of recombinant CYP2C19.Olivetol is a precursor in various syntheses of tetrahydrocannabinol.
Olivetolic Acid (CAS No.491-72-5) is a polyketide compound with significant biological and industrial applications. Below is a detailed overview of its properties and uses.
Olivetol Dimethyl Ether (CAS No.22976-40-5) is a key intermediate in organic synthesis, particularly in cannabinoid chemistry. Below is a detailed overview of its properties, applications, and related information.
5-Heptylresorcinol (CAS No.500-67-4) is a multifunctional compound with applications in pharmaceuticals, cosmetics, and biotechnology. Its antioxidant, cannabinoid-like, and mitochondrial-protective properties position it as a promising candidate for developing novel therapeutics and nutraceuticals.
Olivetol derivatives refer to compounds derived from olivetol (5-pentylresorcinol), a natural polyphenol with significant roles in cannabinoid biosynthesis and industrial applications.
Cannabichromene (CBC) (CAS 20675-51-8) is a non-psychoactive cannabinoid recognized for its potential synergistic role in the "entourage effect" and its distinct pharmacological profile. Unlike THC, it does not bind strongly to CB1 receptors but interacts with other targets such as TRPV and serotonin receptors, contributing to its studied anti-inflammatory, antimicrobial, and neurogenesis-promoting properties. Though typically found in low concentrations in cannabis cultivars, its emerging therapeutic potential makes it a compound of growing interest in neurological and inflammatory disorder research.
Cannabigerol (CBG) (CAS 25654-31-3) is a non-psychoactive cannabinoid often referred to as the "mother cannabinoid" or "stem cell cannabinoid" because it serves as the direct biosynthetic precursor to other major cannabinoids like THC, CBD, and CBC in the cannabis plant. Though typically present in low concentrations in most cultivars, it exhibits a broad pharmacological profile, interacting with CB1, CB2, and other receptors, and is researched for its potential anti-inflammatory, antimicrobial, and neuroprotective properties. Its critical role in cannabinoid biosynthesis and its emerging therapeutic promise make it a high-value compound for both agricultural and pharmaceutical development.
Cannabinol (CAS 521-35-7) is a mildly psychoactive cannabinoid formed primarily through the oxidative degradation of tetrahydrocannabinol (THC), often accumulating in aged cannabis material. It exhibits a unique pharmacological profile characterized by a higher affinity for CB2 receptors than CB1, contributing to its potential therapeutic applications in sleep regulation, pain relief, and as an anti-inflammatory agent. While its psychoactive effects are significantly weaker than THC, its role as a marker for cannabis aging and its emerging bioactivity make it a compound of growing interest in medicinal and analytical research.
Cannabidivarol (CAS 24274-48-4) is a non-psychoactive propyl analogue of cannabidiol (CBD), distinguished by its shorter three-carbon side chain instead of CBD’s pentyl chain. This structural variation influences its pharmacological profile, enhancing its research relevance as a potential therapeutic agent, particularly for its noted anticonvulsant properties and emerging applications in treating neurological disorders such as epilepsy. As a minor cannabinoid, it also serves as a critical tool for studying structure-activity relationships within the endocannabinoid system.
CBD derivatives represent a frontier in cannabinoid therapeutics, offering enhanced efficacy and reduced side effects compared to native CBD. Strategic structural modifications—such as hydroxylation, glycosylation, and receptor-targeting—enable tailored applications in neurology, oncology, and metabolic disorders. Continued research into synthetic methodologies and pharmacokinetic optimization will be critical for their clinical success.
CBDB(CAS 60113-11-3)is an analytical reference standard categorized as a phytocannabinoid. CBDB has been found in strains of Cannabis and hemp. CBDB is considered an impurity in commercial extractions of cannabidiol (CBD) from hemp. This product is intended for research and forensic applications.
Cannabidihexol (CAS 2552798-21-5) is a novel phytocannabinoid derivative with promising analgesic and neuroprotective properties. While its pharmacological profile is promising, further research is needed to validate its therapeutic potential and optimize its pharmacokinetics.
Cannabidiphorol (CAS 55824-13-0) is a novel phytocannabinoid derivative with promising analgesic and neuroprotective properties. Its high lipophilicity and structural complexity present challenges in drug development but also offer opportunities for targeted therapeutic applications.
CBGB (CAS 2468125-69-9) represents a novel organic compound with potential applications in pharmaceuticals or materials science. Its structural complexity and lack of explicit data highlight the need for further experimental characterization and regulatory review.
Benzoquinone derivatives are versatile compounds with critical roles in energy storage, drug development, and materials science. Their redox versatility and structural adaptability drive innovations in battery technology (TABQ) and precision medicine (anti-fibrotic agents). Ongoing research focuses on enhancing biocompatibility and scaling sustainable synthesis methods.
Dibutylbenzoquinone (CAS 3383-21-9) is a stable, sterically hindered ortho-quinone. This compound serves as a key redox-active building block in catalysis, polymer stabilization, and metal coordination chemistry due to its reversible electron transfer capability.
2,6-Di-tert-butylbenzoquinone (CAS 719-22-2) is a sterically hindered quinone derivative, where the bulky tert-butyl groups ortho to the carbonyl functions enhance stability against dimerization and unwanted side reactions.It serves as a versatile oxidizing agent and key intermediate in organic synthesis, particularly in catalytic systems and the preparation of functionalized quinones or ligands.
2,6-Dimethoxybenzoquinone (CAS 530-55-2) is a naturally occurring, methoxy-functionalized quinone derivative commonly found in various plants and fungal species. This compound serves as a versatile building block in organic synthesis, particularly for constructing complex heterocyclic systems and functionalized aromatic structures, leveraging its electron-deficient quinone core as a reactive handle. Its significance extends into biological contexts, where it demonstrates notable bioactive properties, including antimicrobial, antioxidant, and potential antitumor activities, making it a compound of interest in medicinal chemistry and phytochemical research.
2-Chloro-1,4-benzoquinone (CAS 695-99-8) is a highly reactive chlorinated quinone widely used as a key synthetic intermediate in organic chemistry and pharmaceutical research. It serves as a versatile electrophile for nucleophilic substitution reactions and is notably employed in the synthesis of specialized agrochemicals and dyes. This compound requires careful handling due to its toxicity and sensitivity to light and moisture.
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General Description
Olivetol, a naturally occurring compound derived from plants in tropical regions, offers various health benefits due to its antioxidant, anti-inflammatory, and antimicrobial properties. Biotransformation by Syncephalastrum racemosum yields three metabolites, providing insights in...
Empirical studies have confirmed that cannabidiol (CBD) potently inhibits the enzymatic activity of human cytochrome P450 2C19 (CYP2C19).1
Figure 1. CBD
Cannabidiol (CBD) has been demonstrated in multiple studies to inhibit cytochrome P450 2C19 (CYP2C19) through competitive or non-competi...
How MJBiz Conference Began
Founded in 2011 by pioneers in the cannabis industry, MJBiz was established to address the growing demand for credible business in the burgeoning legal cannabis market. As the industry evolved, it became the trusted source for reliable news and insights, empowering entrepr...
Commercial Products Utilizing CBC (Cannabichromene) in 2025
CBC (Cannabichromene) is increasingly appearing in commercial products due to its anti-inflammatory, analgesic, and neuroprotective properties. Below are standout examples of CBC-containing products currently available:
1. Wellness Gumm...