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Inhibition of H
by
Su, Jingyao
, Zhu, Bing
, Qu, Yanxia
, Chen, Danyang
, Jiang, Fan
, Li, Miaomiao
, Zheng, Zilin
, Luo, Jieyi
, Zuo, Liandong
, Zheng, Ruilin
, Li, Yinghua
, Gu, Xiaoqiong
, Hanran Mai
, Ke, Junyi
in
Antioxidants
/ Apoptosis
/ Biological activity
/ Cell proliferation
/ Cell viability
/ Cytotoxicity
/ DNA damage
/ Hydrogen peroxide
/ Intracellular
/ Lentinan
/ Membrane potential
/ Nanoparticles
/ Oxidative stress
/ p53 Protein
/ Reactive oxygen species
/ Reproductive system
/ Selenium
2023
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Inhibition of H
by
Su, Jingyao
, Zhu, Bing
, Qu, Yanxia
, Chen, Danyang
, Jiang, Fan
, Li, Miaomiao
, Zheng, Zilin
, Luo, Jieyi
, Zuo, Liandong
, Zheng, Ruilin
, Li, Yinghua
, Gu, Xiaoqiong
, Hanran Mai
, Ke, Junyi
in
Antioxidants
/ Apoptosis
/ Biological activity
/ Cell proliferation
/ Cell viability
/ Cytotoxicity
/ DNA damage
/ Hydrogen peroxide
/ Intracellular
/ Lentinan
/ Membrane potential
/ Nanoparticles
/ Oxidative stress
/ p53 Protein
/ Reactive oxygen species
/ Reproductive system
/ Selenium
2023
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Inhibition of H
by
Su, Jingyao
, Zhu, Bing
, Qu, Yanxia
, Chen, Danyang
, Jiang, Fan
, Li, Miaomiao
, Zheng, Zilin
, Luo, Jieyi
, Zuo, Liandong
, Zheng, Ruilin
, Li, Yinghua
, Gu, Xiaoqiong
, Hanran Mai
, Ke, Junyi
in
Antioxidants
/ Apoptosis
/ Biological activity
/ Cell proliferation
/ Cell viability
/ Cytotoxicity
/ DNA damage
/ Hydrogen peroxide
/ Intracellular
/ Lentinan
/ Membrane potential
/ Nanoparticles
/ Oxidative stress
/ p53 Protein
/ Reactive oxygen species
/ Reproductive system
/ Selenium
2023
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Journal Article
Inhibition of H
2023
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Overview
A H2O2-induced oxidative stress injury cell model was established to investigate the antioxidant effect of nano-selenium on mouse spermatocyte lines and the regulation mechanism of the expression level and activity of selenium-containing antioxidant enzymes induced by oxidative stress. A safe and effective nano-drug system of functionalized selenium-containing nanoparticles (SeNPs) was developed with lentinan (LNT) (SeNPs@LNT). Mice spermatocyte line GC2-spg cells were treated with SeNPs@LNT (1, 2, 4, 8, 16, 32 μM) for 24–72 h to evaluate the cytotoxicity of selenium. GC2-spg cells were randomly divided into the following groups: control, hydrogen peroxide (H2O2), SeNPs@LNT, and H2O2+SeNPs@LNT groups. H2O2+SeNPs@LNT group was pretreated with SeNPs@LNT 4 μM for 12 h, followed by H2O2 600 μM for 8 h. The cell viability decreased in the H2O2 group and increased significantly in the SeNPs@LNT group. Compared with the H2O2 group, the SeNPs@LNT+H2O2 group exhibited obvious red fluorescence, indicating a higher level of mitochondrial membrane potential. The content of intracellular reactive oxygen species (ROS) in the SeNPs@LNT group reduced significantly, and the intensity of green fluorescence in the SeNPs@LNT+H2O2 group decreased significantly compared with the H2O2 group, indicating the inhibitory effect of SeNPs@LNT on the generation of ROS-induced oxidative stress. The activity of GPx and SOD increased significantly in the SeNPs@LNT group. The expression of p53 decreased significantly under the intervention of nano-selenium, and GPx1 expression increased. In the oxidative stress group, the expressions of DNA damage-related proteins and apoptosis-related proteins were higher than those in other groups. Thus, SeNPs@LNT can promote GC2-spg cell proliferation, improve GPx and SOD activities, remove intracellular ROS, and reduce mitochondrial damage and functional abnormalities caused by oxidative stress by regulating the ERK and p53 protein levels. SeNPs@LNT has good biological activity and antioxidant effect, which can be used to protect the male reproductive system from oxidative stress.
Publisher
Tech Science Press
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