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Pharmacological effects of cannabinoids on the Caco-2 cell culture model of intestinal permeability.

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Pharmacological effects of cannabinoids on the Caco-2 cell culture model of intestinal permeability. / Alhamoruni, A.; Lee, A. C.; Wright, K. L. et al.
In: Journal of Pharmacology and Experimental Therapeutics, Vol. 335, No. 1, 10.2010, p. 92-102.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Alhamoruni, A, Lee, AC, Wright, KL, Larvin, M & O'Sullivan, SE 2010, 'Pharmacological effects of cannabinoids on the Caco-2 cell culture model of intestinal permeability.', Journal of Pharmacology and Experimental Therapeutics, vol. 335, no. 1, pp. 92-102. https://doi.org/10.1124/jpet.110.168237

APA

Alhamoruni, A., Lee, A. C., Wright, K. L., Larvin, M., & O'Sullivan, S. E. (2010). Pharmacological effects of cannabinoids on the Caco-2 cell culture model of intestinal permeability. Journal of Pharmacology and Experimental Therapeutics, 335(1), 92-102. https://doi.org/10.1124/jpet.110.168237

Vancouver

Alhamoruni A, Lee AC, Wright KL, Larvin M, O'Sullivan SE. Pharmacological effects of cannabinoids on the Caco-2 cell culture model of intestinal permeability. Journal of Pharmacology and Experimental Therapeutics. 2010 Oct;335(1):92-102. doi: 10.1124/jpet.110.168237

Author

Alhamoruni, A. ; Lee, A. C. ; Wright, K. L. et al. / Pharmacological effects of cannabinoids on the Caco-2 cell culture model of intestinal permeability. In: Journal of Pharmacology and Experimental Therapeutics. 2010 ; Vol. 335, No. 1. pp. 92-102.

Bibtex

@article{e5ddac4502da4d21b1065f7b7d143712,
title = "Pharmacological effects of cannabinoids on the Caco-2 cell culture model of intestinal permeability.",
abstract = "Activation of cannabinoid receptors decreases emesis, inflammation, gastric acid secretion, and intestinal motility. However, the effects of cannabinoids on intestinal permeability have not yet been established. The aim of the present study is to examine the effects of cannabinoids on intestinal permeability in an in vitro model. Caco-2 cells were grown until fully confluent on inserts in 12-well plates. Transepithelial electrical resistance (TEER) measurements were made as a measure of permeability. EDTA (50 μM) was applied to reversibly increase permeability (reduce TEER). The effects of cannabinoids on permeability in combination with EDTA, or alone, were assessed. Potential target sites of action were investigated using antagonists of the cannabinoid (CB)1 receptor, CB2 receptor, transient receptor potential vanilloid subtype 1 (TRPV1), peroxisome proliferator-activated receptor (PPAR)γ, PPARα, and a proposed cannabinoid receptor. When applied to the apical or basolateral membrane of Caco-2 cells, Δ9-tetrahydrocannabinol (THC) and cannabidiol (CBD) enhanced the speed of recovery of EDTA-induced increased permeability. This effect was sensitive to cannabinoid CB1 receptor antagonism only. Apical application of endocannabinoids caused increased permeability, sensitive to cannabinoid CB1 receptor antagonism. By contrast, when endocannabinoids were applied basolaterally, they enhanced the recovery of EDTA-induced increased permeability, and this involved additional activation of TRPV1. All cannabinoids tested increased the mRNA of the tight junction protein zona occludens-1, but only endocannabinoids also decreased the mRNA of claudin-1. These findings suggest that endocannabinoids may play a role in modulating intestinal permeability and that plant-derived cannabinoids, such as THC and CBD, may have therapeutic potential in conditions associated with abnormally permeable intestinal epithelium.",
author = "A. Alhamoruni and Lee, {A. C.} and Wright, {K. L.} and M. Larvin and O'Sullivan, {S. E.}",
year = "2010",
month = oct,
doi = "10.1124/jpet.110.168237",
language = "English",
volume = "335",
pages = "92--102",
journal = "Journal of Pharmacology and Experimental Therapeutics",
issn = "0022-3565",
publisher = "American Society for Pharmacology and Experimental Therapeutics",
number = "1",

}

RIS

TY - JOUR

T1 - Pharmacological effects of cannabinoids on the Caco-2 cell culture model of intestinal permeability.

AU - Alhamoruni, A.

AU - Lee, A. C.

AU - Wright, K. L.

AU - Larvin, M.

AU - O'Sullivan, S. E.

PY - 2010/10

Y1 - 2010/10

N2 - Activation of cannabinoid receptors decreases emesis, inflammation, gastric acid secretion, and intestinal motility. However, the effects of cannabinoids on intestinal permeability have not yet been established. The aim of the present study is to examine the effects of cannabinoids on intestinal permeability in an in vitro model. Caco-2 cells were grown until fully confluent on inserts in 12-well plates. Transepithelial electrical resistance (TEER) measurements were made as a measure of permeability. EDTA (50 μM) was applied to reversibly increase permeability (reduce TEER). The effects of cannabinoids on permeability in combination with EDTA, or alone, were assessed. Potential target sites of action were investigated using antagonists of the cannabinoid (CB)1 receptor, CB2 receptor, transient receptor potential vanilloid subtype 1 (TRPV1), peroxisome proliferator-activated receptor (PPAR)γ, PPARα, and a proposed cannabinoid receptor. When applied to the apical or basolateral membrane of Caco-2 cells, Δ9-tetrahydrocannabinol (THC) and cannabidiol (CBD) enhanced the speed of recovery of EDTA-induced increased permeability. This effect was sensitive to cannabinoid CB1 receptor antagonism only. Apical application of endocannabinoids caused increased permeability, sensitive to cannabinoid CB1 receptor antagonism. By contrast, when endocannabinoids were applied basolaterally, they enhanced the recovery of EDTA-induced increased permeability, and this involved additional activation of TRPV1. All cannabinoids tested increased the mRNA of the tight junction protein zona occludens-1, but only endocannabinoids also decreased the mRNA of claudin-1. These findings suggest that endocannabinoids may play a role in modulating intestinal permeability and that plant-derived cannabinoids, such as THC and CBD, may have therapeutic potential in conditions associated with abnormally permeable intestinal epithelium.

AB - Activation of cannabinoid receptors decreases emesis, inflammation, gastric acid secretion, and intestinal motility. However, the effects of cannabinoids on intestinal permeability have not yet been established. The aim of the present study is to examine the effects of cannabinoids on intestinal permeability in an in vitro model. Caco-2 cells were grown until fully confluent on inserts in 12-well plates. Transepithelial electrical resistance (TEER) measurements were made as a measure of permeability. EDTA (50 μM) was applied to reversibly increase permeability (reduce TEER). The effects of cannabinoids on permeability in combination with EDTA, or alone, were assessed. Potential target sites of action were investigated using antagonists of the cannabinoid (CB)1 receptor, CB2 receptor, transient receptor potential vanilloid subtype 1 (TRPV1), peroxisome proliferator-activated receptor (PPAR)γ, PPARα, and a proposed cannabinoid receptor. When applied to the apical or basolateral membrane of Caco-2 cells, Δ9-tetrahydrocannabinol (THC) and cannabidiol (CBD) enhanced the speed of recovery of EDTA-induced increased permeability. This effect was sensitive to cannabinoid CB1 receptor antagonism only. Apical application of endocannabinoids caused increased permeability, sensitive to cannabinoid CB1 receptor antagonism. By contrast, when endocannabinoids were applied basolaterally, they enhanced the recovery of EDTA-induced increased permeability, and this involved additional activation of TRPV1. All cannabinoids tested increased the mRNA of the tight junction protein zona occludens-1, but only endocannabinoids also decreased the mRNA of claudin-1. These findings suggest that endocannabinoids may play a role in modulating intestinal permeability and that plant-derived cannabinoids, such as THC and CBD, may have therapeutic potential in conditions associated with abnormally permeable intestinal epithelium.

UR - http://www.scopus.com/inward/record.url?scp=77957230984&partnerID=8YFLogxK

U2 - 10.1124/jpet.110.168237

DO - 10.1124/jpet.110.168237

M3 - Journal article

VL - 335

SP - 92

EP - 102

JO - Journal of Pharmacology and Experimental Therapeutics

JF - Journal of Pharmacology and Experimental Therapeutics

SN - 0022-3565

IS - 1

ER -