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Cannabis sativa: The Plant of the Thousand and One Molecules

TLDR
Prospects on the benefits linked to the use of the -omics technologies, such as metabolomics and transcriptomics to speed up the identification and the large-scale production of lead agents from bioengineered Cannabis cell culture, are presented.
Abstract
Cannabis sativa L. is an important herbaceous species originating from Central Asia, which has been used in folk medicine and as a source of textile fiber since the dawn of times. This fast-growing plant has recently seen a resurgence of interest because of its multi-purpose applications: it is indeed a treasure trove of phytochemicals and a rich source of both cellulosic and woody fibers. Equally highly interested in this plant are the pharmaceutical and construction sectors, since its metabolites show potent bioactivities on human health and its outer and inner stem tissues can be used to make bioplastics and concrete-like material, respectively. In this review, the rich spectrum of hemp phytochemicals is discussed by putting a special emphasis on molecules of industrial interest, including cannabinoids, terpenes and phenolic compounds, and their biosynthetic routes. Cannabinoids represent the most studied group of compounds, mainly due to their wide range of pharmaceutical effects in humans, including psychotropic activities. The therapeutic and commercial interests of some terpenes and phenolic compounds, and in particular stilbenoids and lignans, are also highlighted in view of the most recent literature data. Biotechnological avenues to enhance the production and bioactivity of hemp secondary metabolites are proposed by discussing the power of plant genetic engineering and tissue culture. In particular two systems are reviewed, i.e., cell suspension and hairy root cultures. Additionally, an entire section is devoted to hemp trichomes, in the light of their importance as phytochemical factories. Ultimately, prospects on the benefits linked to the use of the -omics technologies, such as metabolomics and transcriptomics to speed up the identification and the large-scale production of lead agents from bioengineered Cannabis cell culture, are presented.

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Cannabidiol: State of the art and new challenges for therapeutic applications

TL;DR: This review highlights the pharmacological activities of CBD, its cannabinoid receptor-dependent and -independent action, its biological effects focusing on immunomodulation, angiogenetic properties, and modulation of neuronal and cardiovascular function, and the therapeutic potential of cannabidiol.
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Silicon and Plants: Current Knowledge and Technological Perspectives.

TL;DR: The study provides perspectives on the use of Si to increase the yield of fiber crops and to improve the thermal stability and tensile strength of natural fibers and to modify/improve the physical parameters of plant fibers.
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Cannabis sativa: A comprehensive ethnopharmacological review of a medicinal plant with a long history.

TL;DR: A deeper involvement of phytocannabinoids (the key compounds in C. sativa) in several others central and peripheral pathophysiological mechanisms such as food intake, inflammation, pain, colitis, sleep disorders, neurological and psychiatric illness is suggested.
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Reactive oxygen species and heavy metal stress in plants: Impact on the cell wall and secondary metabolism

TL;DR: In this paper, the effects of heavy metal-induced reactive oxygen species (ROS) on plant cell wall-related processes and the stimulatory/inhibitory effects of ROS on plant secondary metabolism were investigated.
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Cannabidiol in Anxiety and Sleep: A Large Case Series

TL;DR: A large retrospective case series involving clinical application of CBD for anxiety and sleep complaints as an adjunct to usual treatment found CBD was well tolerated in all but 3 patients.
References
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Journal ArticleDOI

Chemical constituents of marijuana: The complex mixture of natural cannabinoids

TL;DR: The chemical constituents of the plant are discussed with particular emphasis on the cannabinoids as the class of compounds responsible for the drug's psychological properties.
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Effects of cannabinoids and cannabinoid-enriched Cannabis extracts on TRP channels and endocannabinoid metabolic enzymes

TL;DR: CBD and Δ9‐tetrahydrocannabinol interact with transient receptor potential (TRP) channels and enzymes of the endocannabinoid system to explore its role in Cannabidiol-like properties.
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Beta-caryophyllene is a dietary cannabinoid

TL;DR: Peroral (E)-BCP at 5 mg/kg strongly reduces the carrageenan-induced inflammatory response in wild-type mice but not in mice lacking CB2 receptors, providing evidence that this natural product exerts cannabimimetic effects in vivo.
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Health promotion by flavonoids, tocopherols, tocotrienols, and other phenols: direct or indirect effects? Antioxidant or not?

TL;DR: It is argued that tocopherols and tocotrienols may also exert direct beneficial effects in the gastrointestinal tract and that their return to theintestinal tract by the liver through the bile may be physiologically advantageous.
Journal ArticleDOI

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

TL;DR: Observations suggest that the prenyl moiety of cannabinoids serves mainly as a modulator of lipid affinity for the olivetol core, a per se poorly active antibacterial pharmacophore, while their high potency definitely suggests a specific, but yet elusive, mechanism of activity.
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