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Hemp-Derived Nanovesicles Protect Leaky Gut and Liver Injury in Dextran Sodium Sulfate-Induced Colitis

Hemp (Cannabis sativa L.) is used for medicinal purposes owing to its anti-inflammatory and antioxidant activities. We evaluated the protective effect of nanovesicles isolated from hemp plant parts (root, seed, hemp sprout, and leaf) in dextran sulfate sodium (DSS)-induced colitis in mice. The parti...

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Autores principales: Eom, Jung-Young, Choi, Sang-Hun, Kim, Hyun-Jin, Kim, Dong-ha, Bae, Ju-Hyun, Kwon, Gi-Seok, Lee, Dong-hee, Hwang, Jin-Hyeon, Kim, Do-Kyun, Baek, Moon-Chang, Cho, Young-Eun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9456148/
https://www.ncbi.nlm.nih.gov/pubmed/36077356
http://dx.doi.org/10.3390/ijms23179955
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author Eom, Jung-Young
Choi, Sang-Hun
Kim, Hyun-Jin
Kim, Dong-ha
Bae, Ju-Hyun
Kwon, Gi-Seok
Lee, Dong-hee
Hwang, Jin-Hyeon
Kim, Do-Kyun
Baek, Moon-Chang
Cho, Young-Eun
author_facet Eom, Jung-Young
Choi, Sang-Hun
Kim, Hyun-Jin
Kim, Dong-ha
Bae, Ju-Hyun
Kwon, Gi-Seok
Lee, Dong-hee
Hwang, Jin-Hyeon
Kim, Do-Kyun
Baek, Moon-Chang
Cho, Young-Eun
author_sort Eom, Jung-Young
collection PubMed
description Hemp (Cannabis sativa L.) is used for medicinal purposes owing to its anti-inflammatory and antioxidant activities. We evaluated the protective effect of nanovesicles isolated from hemp plant parts (root, seed, hemp sprout, and leaf) in dextran sulfate sodium (DSS)-induced colitis in mice. The particle sizes of root-derived nanovesicles (RNVs), seed-derived nanovesicles (SNVs), hemp sprout-derived nanovesicles (HSNVs), and leaf-derived nanovesicles (LNVs) were within the range of 100–200 nm as measured by nanoparticle tracking analysis. Acute colitis was induced in C57BL/N mice by 5% DSS in water provided for 7 days. RNVs were administered orally once a day, leading to the recovery of both the small intestine and colon lengths. RNVs, SNVs, and HSNVs restored the tight (ZO-1, claudin-4, occludin) and adherent junctions (E-cadherin and α-tubulin) in DSS-induced small intestine and colon injury. Additionally, RNVs markedly reduced NF-κB activation and oxidative stress proteins in DSS-induced small intestine and colon injury. Tight junction protein expression and epithelial cell permeability were elevated in RNV-, SNV-, and HSNV-treated T84 colon cells exposed to 2% DSS. Interestedly, RNVs, SNVs, HSNVs, and LNVs reduced ALT activity and liver regeneration marker proteins in DSS-induced liver injury. These results showed for the first time that hemp-derived nanovesicles (HNVs) exhibited a protective effect on DSS-induced gut leaky and liver injury through the gut–liver axis by inhibiting oxidative stress marker proteins.
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spelling pubmed-94561482022-09-09 Hemp-Derived Nanovesicles Protect Leaky Gut and Liver Injury in Dextran Sodium Sulfate-Induced Colitis Eom, Jung-Young Choi, Sang-Hun Kim, Hyun-Jin Kim, Dong-ha Bae, Ju-Hyun Kwon, Gi-Seok Lee, Dong-hee Hwang, Jin-Hyeon Kim, Do-Kyun Baek, Moon-Chang Cho, Young-Eun Int J Mol Sci Article Hemp (Cannabis sativa L.) is used for medicinal purposes owing to its anti-inflammatory and antioxidant activities. We evaluated the protective effect of nanovesicles isolated from hemp plant parts (root, seed, hemp sprout, and leaf) in dextran sulfate sodium (DSS)-induced colitis in mice. The particle sizes of root-derived nanovesicles (RNVs), seed-derived nanovesicles (SNVs), hemp sprout-derived nanovesicles (HSNVs), and leaf-derived nanovesicles (LNVs) were within the range of 100–200 nm as measured by nanoparticle tracking analysis. Acute colitis was induced in C57BL/N mice by 5% DSS in water provided for 7 days. RNVs were administered orally once a day, leading to the recovery of both the small intestine and colon lengths. RNVs, SNVs, and HSNVs restored the tight (ZO-1, claudin-4, occludin) and adherent junctions (E-cadherin and α-tubulin) in DSS-induced small intestine and colon injury. Additionally, RNVs markedly reduced NF-κB activation and oxidative stress proteins in DSS-induced small intestine and colon injury. Tight junction protein expression and epithelial cell permeability were elevated in RNV-, SNV-, and HSNV-treated T84 colon cells exposed to 2% DSS. Interestedly, RNVs, SNVs, HSNVs, and LNVs reduced ALT activity and liver regeneration marker proteins in DSS-induced liver injury. These results showed for the first time that hemp-derived nanovesicles (HNVs) exhibited a protective effect on DSS-induced gut leaky and liver injury through the gut–liver axis by inhibiting oxidative stress marker proteins. MDPI 2022-09-01 /pmc/articles/PMC9456148/ /pubmed/36077356 http://dx.doi.org/10.3390/ijms23179955 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Eom, Jung-Young
Choi, Sang-Hun
Kim, Hyun-Jin
Kim, Dong-ha
Bae, Ju-Hyun
Kwon, Gi-Seok
Lee, Dong-hee
Hwang, Jin-Hyeon
Kim, Do-Kyun
Baek, Moon-Chang
Cho, Young-Eun
Hemp-Derived Nanovesicles Protect Leaky Gut and Liver Injury in Dextran Sodium Sulfate-Induced Colitis
title Hemp-Derived Nanovesicles Protect Leaky Gut and Liver Injury in Dextran Sodium Sulfate-Induced Colitis
title_full Hemp-Derived Nanovesicles Protect Leaky Gut and Liver Injury in Dextran Sodium Sulfate-Induced Colitis
title_fullStr Hemp-Derived Nanovesicles Protect Leaky Gut and Liver Injury in Dextran Sodium Sulfate-Induced Colitis
title_full_unstemmed Hemp-Derived Nanovesicles Protect Leaky Gut and Liver Injury in Dextran Sodium Sulfate-Induced Colitis
title_short Hemp-Derived Nanovesicles Protect Leaky Gut and Liver Injury in Dextran Sodium Sulfate-Induced Colitis
title_sort hemp-derived nanovesicles protect leaky gut and liver injury in dextran sodium sulfate-induced colitis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9456148/
https://www.ncbi.nlm.nih.gov/pubmed/36077356
http://dx.doi.org/10.3390/ijms23179955
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