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Exosome-coated polydatin nanoparticles in the treatment of radiation-induced intestinal damage

This study aimed to develop an exosome-coated polydatin (PD) nanoparticles (exo-PD) for improving the water solubility and bioavailability of polydatin and explore its salutary effects on intestinal radiation injury. Exosomes (exo) were extracted from the medium of human amniotic fluid stem cells (h...

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Autores principales: Chen, Qiu, Yao, Lei, Liu, Quanbin, Hou, Jun, Qiu, Xinyu, Chen, Mengyuan, Wu, Zhuojun, Hu, Duanmin, Cui, Fengmei, Yan, Tao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10415572/
https://www.ncbi.nlm.nih.gov/pubmed/37466428
http://dx.doi.org/10.18632/aging.204882
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author Chen, Qiu
Yao, Lei
Liu, Quanbin
Hou, Jun
Qiu, Xinyu
Chen, Mengyuan
Wu, Zhuojun
Hu, Duanmin
Cui, Fengmei
Yan, Tao
author_facet Chen, Qiu
Yao, Lei
Liu, Quanbin
Hou, Jun
Qiu, Xinyu
Chen, Mengyuan
Wu, Zhuojun
Hu, Duanmin
Cui, Fengmei
Yan, Tao
author_sort Chen, Qiu
collection PubMed
description This study aimed to develop an exosome-coated polydatin (PD) nanoparticles (exo-PD) for improving the water solubility and bioavailability of polydatin and explore its salutary effects on intestinal radiation injury. Exosomes (exo) were extracted from the medium of human amniotic fluid stem cells (hAFSc). Mice were divided into control group, irradiation (IR) group, irradiation+PD (IR+PD) group, irradiation+exo (IR+exo) group and irradiation+exo-PD (IR+exo-PD) group. The results of characterization of protein markers, particle size, morphology and cellular uptake ability confirmed that exosomes were effectively isolated using ultracentrifugation. Compared with the IR group, exo-PD improved cell viability, prolonged survival of mice, improved leukocyte count and reduced diarrhea rate. Histological results showed that the exo-PD group had significant improvements in small intestinal villus length and crypt number and less crypt cell damage. exo-PD could reduce IL-1α and IL-6 levels, reduced γ-H2AX expression, increased mitochondrial membrane potential, enhanced oxidative phosphorylation, and delayed cellular senescence. exo-PD could alleviate intestinal injury by improving mitochondrial function through PI3K-AKT pathway. The exo-PD was able to reduce radiation damage to intestinal cells and could be a potential candidate for salvage of intestinal radiation damage.
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spelling pubmed-104155722023-08-12 Exosome-coated polydatin nanoparticles in the treatment of radiation-induced intestinal damage Chen, Qiu Yao, Lei Liu, Quanbin Hou, Jun Qiu, Xinyu Chen, Mengyuan Wu, Zhuojun Hu, Duanmin Cui, Fengmei Yan, Tao Aging (Albany NY) Research Paper This study aimed to develop an exosome-coated polydatin (PD) nanoparticles (exo-PD) for improving the water solubility and bioavailability of polydatin and explore its salutary effects on intestinal radiation injury. Exosomes (exo) were extracted from the medium of human amniotic fluid stem cells (hAFSc). Mice were divided into control group, irradiation (IR) group, irradiation+PD (IR+PD) group, irradiation+exo (IR+exo) group and irradiation+exo-PD (IR+exo-PD) group. The results of characterization of protein markers, particle size, morphology and cellular uptake ability confirmed that exosomes were effectively isolated using ultracentrifugation. Compared with the IR group, exo-PD improved cell viability, prolonged survival of mice, improved leukocyte count and reduced diarrhea rate. Histological results showed that the exo-PD group had significant improvements in small intestinal villus length and crypt number and less crypt cell damage. exo-PD could reduce IL-1α and IL-6 levels, reduced γ-H2AX expression, increased mitochondrial membrane potential, enhanced oxidative phosphorylation, and delayed cellular senescence. exo-PD could alleviate intestinal injury by improving mitochondrial function through PI3K-AKT pathway. The exo-PD was able to reduce radiation damage to intestinal cells and could be a potential candidate for salvage of intestinal radiation damage. Impact Journals 2023-07-18 /pmc/articles/PMC10415572/ /pubmed/37466428 http://dx.doi.org/10.18632/aging.204882 Text en Copyright: © 2023 Chen et al. https://creativecommons.org/licenses/by/3.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/3.0/) (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Chen, Qiu
Yao, Lei
Liu, Quanbin
Hou, Jun
Qiu, Xinyu
Chen, Mengyuan
Wu, Zhuojun
Hu, Duanmin
Cui, Fengmei
Yan, Tao
Exosome-coated polydatin nanoparticles in the treatment of radiation-induced intestinal damage
title Exosome-coated polydatin nanoparticles in the treatment of radiation-induced intestinal damage
title_full Exosome-coated polydatin nanoparticles in the treatment of radiation-induced intestinal damage
title_fullStr Exosome-coated polydatin nanoparticles in the treatment of radiation-induced intestinal damage
title_full_unstemmed Exosome-coated polydatin nanoparticles in the treatment of radiation-induced intestinal damage
title_short Exosome-coated polydatin nanoparticles in the treatment of radiation-induced intestinal damage
title_sort exosome-coated polydatin nanoparticles in the treatment of radiation-induced intestinal damage
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10415572/
https://www.ncbi.nlm.nih.gov/pubmed/37466428
http://dx.doi.org/10.18632/aging.204882
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