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  • ∆9-tetrahydrocannabinol (THC)
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Modulation of Recombinant Human T-Type Calcium Channels by Δ9-Tetrahydrocannabinolic Acid In Vitro

Please use this link to access publication Abstract Introduction: Low voltage-activated T-type calcium channels (T-type ICa), CaV3.1, CaV3.2, and CaV3.3, are opened by small depolarizations from the resting membrane potential in many cells and have been associated with neurological disorders, including absence epilepsy and pain. Δ9-tetrahydrocannabinol (THC) is the principal psychoactive compound in Cannabis and also directly modulates T-type ICa; however, there is no information about functional activity of most phytocannabinoids on T-type calcium channels, including Δ9-tetrahydrocannabinolic acid (THCA), the natural nonpsychoactive precursor of THC. The aim of this work was to characterize THCA effects on T-type calcium channels. Materials and Methods: We used HEK293 Flp-In-TREx cells stably expressing CaV3.1,...
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Receptor-targeted nanoparticles modulate cannabinoid anticancer activity through delayed cell internalization

Abstract Δ9-tetrahydrocannabinol (Δ9-THC) is known for its antitumor activity and palliative effects. However, its unfavorable physicochemical and biopharmaceutical properties, including low bioavailability, psychotropic side effects and resistance mechanisms associated to dosing make mandatory the development of successful drug delivery systems. In this work, transferring (Tf) surface-modified Δ9-THC-loaded poly(lactide-co-glycolic) nanoparticles (Tf-THC-PLGA NPs) were proposed and evaluated as novel THC-based anticancer therapy. Furthermore, in order to assess the interaction of both the nanocarrier and the loaded drug with cancer cells, a double-fluorescent strategy was applied, including the chemical conjugation of a dye to the nanoparticle polymer along with the encapsulation of either a lipophilic or a...
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EVIDENCE FOR DIFFERENTIAL EFFECTS OF Δ9-THC (Δ9-TETRAHYDROCANNABINOL) ON PRE- VERSUS POST-IMPLANTATION EMBRYONIC STEM CELLS

Abstract Objective Recreational marijuana use is becoming increasingly widespread. With potential implications for fertility and embryonic development, we set out to evaluate the impact of THC exposure on the pre- and post-implantation embryo through embryonic stem cell proliferation, mitochondrial function and metabolism. Materials and Methods Mouse embryonic stem cells (ESCs) can be differentiated into epiblast-like cells (EpiLCs) using known in vitro methods via growth factors and cytokines. ESCs recapitulate important features of pre-implantation stem cells; EpiLCs model post-implantation features. ESCs and EpiLCs were exposed to a range of Δ9-THC concentrations: 0-100μM over 48 hours. Cell proliferation and viability were assessed via Trypan blue and...
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The in vitro effect of delta-9-tetrahydrocannabinol and cannabidiol on whole blood viscosity, elasticity and membrane integrity

Abstract Background: The main biological activities of cannabis are due to the presence of several compounds known as cannabinoids. Delta-9-tetrahydrocannabinol (THC) and cannabidiol (CBD) are two of the main cannabinoids. Studies have shown that the efects of THC can be modulated by CBD. Objective: This study aims to look at the efect of diferent concentrations of THC and CBD separately and in combination, on blood viscosity, elasticity and membrane integrity. Methods: Blood samples were collected from twenty-four healthy adult non-smokers. Blood viscosity and elasticity were determined using the Vilastic Scientifc Bioprofler for diferent concentrations (0, 2.5, 25, 50 and 100ng/ml) of CBD and THC...
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Changes in Expression of DNA-Methyltransferase and Cannabinoid Receptor mRNAs in Blood Lymphocytes After Acute Cannabis Smoking

Background: Cannabis use is a component risk factor for the manifestation of schizophrenia. The biological effects of cannabis include effects on epigenetic systems, immunological parameters, in addition to changes in cannabinoid receptors 1 and 2, that may be associated with this risk. However, there has been limited study of the effects of smoked cannabis on these biological effects in human peripheral blood cells. We analyzed the effects of two concentrations of tetrahydrocannabinol (THC) vs. placebo in lymphocytes of a subset of participants who enrolled in a double-blind study of the effects of cannabis on driving performance (outcome not the focus of this study). Methods: Twenty four...
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Chronic adolescent exposure to cannabis in mice leads to sex-biased changes in gene expression networks across brain regions

Abstract During adolescence, frequent and heavy cannabis use can lead to serious adverse health effects and cannabis use disorder (CUD). Rodent models of adolescent exposure to the main psychoactive component of cannabis, delta-9-tetrahydrocannabinol (THC), mimic the behavioral alterations observed in adolescent users. However, the underlying molecular mechanisms remain largely unknown. Here, we treated female and male C57BL6/N mice with high doses of THC during early adolescence and assessed their memory and social behaviors in late adolescence. We then profiled the transcriptome of five brain regions involved in cognitive and addiction-related processes. We applied gene coexpression network analysis and identified gene coexpression modules, termed cognitive...
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Cannabis-Based Products for Chronic Pain

Please use this link to access publication Abstract Background: Contemporary data are needed about the utility of cannabinoids in chronic pain. Purpose: To evaluate the benefits and harms of cannabinoids for chronic pain. Data Sources: Ovid MEDLINE, PsycINFO, EMBASE, the Cochrane Library, and Scopus to January 2022. Study Selection: English-language, randomized, placebo-controlled trials and cohort studies (≥1 month duration) of cannabinoids for chronic pain. Data Extraction: Data abstraction, risk of bias, and strength of evidence assessments were dually reviewed. Cannabinoids were categorized by THC-to-CBD ratio (high, comparable, or low) and source (synthetic, extract or purified, or whole plant). Data Synthesis: Eighteen randomized, placebo-controlled trials...
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Anti-inflammatory potential of delta-9-tetrahydrocannabinol in hyperinsulinemia: an experimental study

Please use this link to access publication Abstract Background Hyperinsulinemia (HI) means that the amount of insulin in the blood is higher than normal and is often associated with type 2 diabetes. It is known that delta-9-tetrahydrocannabinol (THC) obtained from a medicinal plant, Cannabis sativa, has therapeutic effects on many diseases. Objective This study aimed to investigate the effects of THC on inflammatory and oxidant status in rat pancreas with HI. Methods Rats were divided into groups; Control, HI, THC and HI + THC. Each group consists of 8 animals. HI and HI + THC groups were given 10% fructose in the drinking water for 12 weeks. In the last four...
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Driving Performance and Cannabis Users’ Perception of Safety A Randomized Clinical Trial

Please use this link to access publication Abstract Importance  Expanding cannabis medicalization and legalization increases the urgency to understand the factors associated with acute driving impairment. Objective  To determine, in a large sample of regular cannabis users, the magnitude and time course of driving impairment produced by smoked cannabis of different Δ9-tetrahydrocannabinol (THC) content, the effects of use history, and concordance between perceived impairment and observed performance. Design, Setting, and Participants  This double-blind, placebo-controlled parallel randomized clinical trial took place from February 2017 to June 2019 at the Center for Medicinal Cannabis Research, University of California San Diego. Cannabis users were recruited for this study, and analysis...
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Metabolites of Cannabis Induce Cardiac Toxicity and Morphological Alterations in Cardiac Myocytes

Abstract: Cannabis is one of the most commonly used recreational drugs worldwide. Rrecent epidemiology studies have linked increased cardiac complications to cannabis use. However, this literature is predominantly based on case incidents and post-mortem investigations. This study elucidates the molecular mechanism of ∆9-tetrahydrocannabinol (THC), and its primary metabolites 11-Hydroxy- ∆9-THC (THC-OH) and 11-nor-9-carboxy-∆ 9 -tetrahydrocannabinol (THC-COOH). Treatment of cardiac myocytes with THC-OH and THC-COOH increased cell migration and proliferation (p < 0.05), with no effect on cell adhesion, with higher doses (250–100 ng/mL) resulting in increased cell death and significant deterioration in cellular architecture. Conversely, no changes in cell morphology or viability were observed...
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