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antibacterial/cannabis

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Marijuana, tetrahydrocannabinol, and pulmonary antibacterial defenses.

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Although marijuana is now consumed extensively, little is known of its biologic effects on the lung. To study this problem, the intrapulmonary inactivation of an aerosolized challenge of Staphylococcus aureus was quantified in rats exposed to graded amounts of fresh marijuana smoke. Controls
BACKGROUND The science of metabolomics offers the possibility to measure full secondary plant metabolomes with limited experimental effort to allow identification of metabolome differences using principal component analysis (PCA) and partial least squares discriminant analysis (PLS-DA) of liquid
Plant phytochemicals have potential decontaminating properties, however, their role in the amelioration of hydrophobic water filtration membranes have not been elucidated yet. In this work, phytochemicals (i.e., cannabinoids (C) and terpenes (T) from C. sativa) were revealed for their
Volatile terpenes represent the largest group of Cannabis sativa L. components and they are responsible for its aromatic properties. Even if many studies on C. sativa have been focused on cannabinoids, which are terpenophenolics, little research has been carried out on its volatile

Antibacterial cannabinoids from Cannabis sativa: a structure-activity study.

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Marijuana (Cannabis sativa) has long been known to contain antibacterial cannabinoids, whose potential to address antibiotic resistance has not yet been investigated. All five major cannabinoids (cannabidiol (1b), cannabichromene (2), cannabigerol (3b), Delta (9)-tetrahydrocannabinol (4b), and

[Cannabinoids and the immune system. Of men, mice and cells].

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The medical use of cannabis or cannabinoid compounds is controversial. Cannabinoids like the Delta(9)-THC (tetrahydrocannabinol) or the synthetic derivative Nabilone are available against cancer- and HIV-associated cachexia, nausea and vomiting. Over the last 20 years, the cannabinoid receptors

Marijuana and tobacco smoke gas-phase cytotoxins.

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To evaluate the in vivo versus in vitro paradoxical effects of marijuana and tobacco smoke on pulmonary defenses, the responses to smoke constituents were assessed with an alveolar macrophage tissue culture bioassay. A dose-response impairment of macrophage bactericidal activity was associated with
Lung macrophages provide a first line of host defense against inhaled pathogens and their function is impaired in the lungs of inhaled substance abusers. In order to investigate the mechanism for this impairment, alveolar macrophages (AM) were recovered from nonsmokers (NS), regular tobacco smokers
Human alveolar macrophages (AMs) were recovered from the lungs of healthy nonsmokers (NS) or smokers of tobacco (TS), marijuana (MS), or crack cocaine (CS) and challenged in vitro with Staphylococcus aureus. AMs from NS and TS exhibited potent antibacterial activity that correlated with the

[Cannabis use and impairment of respiratory function].

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Cannabis is the most commonly smoked illicit substance in many countries including France. It can be smoked alone in plant form (marijuana) but in our country it is mainly smoked in the form of cannabis resin mixed with tobacco. The technique of inhaling cannabis differs from that of tobacco,
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