The Chemical Compound Makeup Difference Between Delta 9 and Synthetic Cannabinoids
Author: Gerald L. Whalen
Date: July 27, 2023
Abstract:
Within the cannabis plant, gummies tetrahydrocannabinol (THC) reigns supreme as the cannabinoid found in greatest abundance. It assumes responsibility for producing the psychoactive experiences associated with cannabis consumption. In an attempt to replicate THC's effects, scientists have created synthetic cannabinoids – synthetic compounds that aim to mimic THC’s prowess. However, it is crucial to note that these imitation versions have a greater potential for potency and are accompanied by more severe side effects.
This paper examines the disparities in chemical compositions between Delta 9 THC and synthetic cannabinoids. Additionally, it delves into research surrounding the safety and effectiveness of Delta 9 THC usage. Ultimately, this composition concludes by advocating for Delta 9 THC as a superior choice concerning safety and effectiveness when individuals seek to benefit from the therapeutic properties of THC.
Introduction:
The cannabis plant harbors an impressive array of more than 100 distinct cannabinoids. Among these cannabinoids, delta 9 tetrahydrocannabinol (THC) reigns as the most prevalent in cannabis. THC plays a crucial role in inducing the mind-altering effects associated with consuming cannabis. While synthetic cannabinoids aim to emulate the effects of THC, it is essential to note that these artificially created compounds can often be stronger and engender more severe adverse reactions when compared to natural THC.|
The chemical compound makeup of Delta 9 THC is as follows:
The chemical compound makeup of synthetic cannabinoids can vary, but they typically contain one or more of the following compounds:
HU-210
JWH-018
CP-47,497
AM-2201
Body:
The main difference between Delta 9 THC and synthetic cannabinoids is the location of the double bond in the molecule. Synthetic cannabinoids exhibit variations in the positioning of the double bond, which may occur either between carbon atoms 8 and 9 or between carbon atoms 7 and 8.
Such dissimilarities in terms of chemical composition between Delta 9 THC and synthetic cannabinoids carry several implications. Primarily, it implies that synthetic cannabinoids have received less extensive investigation compared to Delta 9 THC. Consequently, there exists limited or inconclusive research on the safety and effectiveness of synthetic cannabinoids.
Second, the different location of the double bond in synthetic cannabinoids can affect their potency. The potency of various synthetic cannabinoids varies, with some surpassing Delta 9 THC in strength and others lagging behind. This makes it challenging to anticipate the specific impact a synthetic cannabinoid will have on an individual.
Additionally, the placement of the double bond in synthetic cannabinoids can influence their adverse outcomes. Certain types of synthetic cannabinoids have been associated with severe side effects like seizures, psychosis, and even fatality.
Conclusion:
Delta 9 THC has been extensively researched and proven to be a reliable and efficient remedy for various medical ailments. Unlike synthetic cannabinoids, Delta 9 THC has undergone more comprehensive studies, rendering it more predictable in terms of its effects. Additionally, this compound presents itself as a sustainable alternative compared to artificial counterparts.
Henceforth, opting for Delta 9 edibles appears to be a wiser decision when selecting between natural and synthetic cannabinoids. This compound guarantees safety and effectiveness for individuals seeking medical relief through such remedies.References:
Izzo AA, Borrelli F, Capasso R, et al. Non-psychotropic plant cannabinoids: new therapeutic opportunities. Trends Pharmacol Sci. 2009;30(12):631-64.
Russo EB. Taming THC: potential synergy of cannabidiol with delta-9-tetrahydrocannabinol and other cannabinoids. Br J Pharmacol. 2011;163(7):1344-64.
Atakan Z. The neuropsychopharmacology of cannabis: a review of recent advances. Curr Pharm Des. 2009;15(22):2831-48.
National Academies of Sciences, Engineering, and Medicine. The Health Effects of Cannabis and Cannabinoids. Washington, DC: The National Academies Press; 2017.
Acknowledgments:
www.KavvaBrands.com would like to thank (author) and their team for their support in the preparation of this paper.
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The Chemical Compound Makeup Difference Between Delta 9 and Synthetic Cannabinoids
Author: Gerald L. Whalen
Date: July 27, 2023
Abstract:
Within the cannabis plant, gummies tetrahydrocannabinol (THC) reigns supreme as the cannabinoid found in greatest abundance. It assumes responsibility for producing the psychoactive experiences associated with cannabis consumption. In an attempt to replicate THC's effects, scientists have created synthetic cannabinoids – synthetic compounds that aim to mimic THC’s prowess. However, it is crucial to note that these imitation versions have a greater potential for potency and are accompanied by more severe side effects.
This paper examines the disparities in chemical compositions between Delta 9 THC and synthetic cannabinoids. Additionally, it delves into research surrounding the safety and effectiveness of Delta 9 THC usage. Ultimately, this composition concludes by advocating for Delta 9 THC as a superior choice concerning safety and effectiveness when individuals seek to benefit from the therapeutic properties of THC.
Introduction:
The cannabis plant harbors an impressive array of more than 100 distinct cannabinoids. Among these cannabinoids, delta 9 tetrahydrocannabinol (THC) reigns as the most prevalent in cannabis. THC plays a crucial role in inducing the mind-altering effects associated with consuming cannabis. While synthetic cannabinoids aim to emulate the effects of THC, it is essential to note that these artificially created compounds can often be stronger and engender more severe adverse reactions when compared to natural THC.|
The chemical compound makeup of Delta 9 THC is as follows:
Molecular formula: C21H30O2
Molecular weight: 314.46 g/mol
Structure:
pubchem.ncbi.nlm.nih.gov
Chemical structure of Delta 9 THC
The chemical compound makeup of synthetic cannabinoids can vary, but they typically contain one or more of the following compounds:
HU-210
JWH-018
CP-47,497
AM-2201
Body:
The main difference between Delta 9 THC and synthetic cannabinoids is the location of the double bond in the molecule. Synthetic cannabinoids exhibit variations in the positioning of the double bond, which may occur either between carbon atoms 8 and 9 or between carbon atoms 7 and 8.
Such dissimilarities in terms of chemical composition between Delta 9 THC and synthetic cannabinoids carry several implications. Primarily, it implies that synthetic cannabinoids have received less extensive investigation compared to Delta 9 THC. Consequently, there exists limited or inconclusive research on the safety and effectiveness of synthetic cannabinoids.
Second, the different location of the double bond in synthetic cannabinoids can affect their potency. The potency of various synthetic cannabinoids varies, with some surpassing Delta 9 THC in strength and others lagging behind. This makes it challenging to anticipate the specific impact a synthetic cannabinoid will have on an individual.
Additionally, the placement of the double bond in synthetic cannabinoids can influence their adverse outcomes. Certain types of synthetic cannabinoids have been associated with severe side effects like seizures, psychosis, and even fatality.
Conclusion:
Delta 9 THC has been extensively researched and proven to be a reliable and efficient remedy for various medical ailments. Unlike synthetic cannabinoids, Delta 9 THC has undergone more comprehensive studies, rendering it more predictable in terms of its effects. Additionally, this compound presents itself as a sustainable alternative compared to artificial counterparts.
Henceforth, opting for Delta 9 edibles appears to be a wiser decision when selecting between natural and synthetic cannabinoids. This compound guarantees safety and effectiveness for individuals seeking medical relief through such remedies.References:
Izzo AA, Borrelli F, Capasso R, et al. Non-psychotropic plant cannabinoids: new therapeutic opportunities. Trends Pharmacol Sci. 2009;30(12):631-64.
Russo EB. Taming THC: potential synergy of cannabidiol with delta-9-tetrahydrocannabinol and other cannabinoids. Br J Pharmacol. 2011;163(7):1344-64.
Atakan Z. The neuropsychopharmacology of cannabis: a review of recent advances. Curr Pharm Des. 2009;15(22):2831-48.
National Academies of Sciences, Engineering, and Medicine. The Health Effects of Cannabis and Cannabinoids. Washington, DC: The National Academies Press; 2017.
Acknowledgments:
www.KavvaBrands.com would like to thank (author) and their team for their support in the preparation of this paper.