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Tetrandrine protects mouse retinal ganglion cells from ischemic injury

This study aimed to determine the protective effects of tetrandrine (Tet) on murine ischemia-injured retinal ganglion cells (RGCs). For this, we used serum deprivation cell model, glutamate and hydrogen peroxide (H(2)O(2))-induced RGC-5 cell death models, and staurosporine-differentiated neuron-like...

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Autores principales: Li, Weiyi, Yang, Chen, Lu, Jing, Huang, Ping, Barnstable, Colin J, Zhang, Chun, Zhang, Samuel S
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3968085/
https://www.ncbi.nlm.nih.gov/pubmed/24711693
http://dx.doi.org/10.2147/DDDT.S55407
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author Li, Weiyi
Yang, Chen
Lu, Jing
Huang, Ping
Barnstable, Colin J
Zhang, Chun
Zhang, Samuel S
author_facet Li, Weiyi
Yang, Chen
Lu, Jing
Huang, Ping
Barnstable, Colin J
Zhang, Chun
Zhang, Samuel S
author_sort Li, Weiyi
collection PubMed
description This study aimed to determine the protective effects of tetrandrine (Tet) on murine ischemia-injured retinal ganglion cells (RGCs). For this, we used serum deprivation cell model, glutamate and hydrogen peroxide (H(2)O(2))-induced RGC-5 cell death models, and staurosporine-differentiated neuron-like RGC-5 in vitro. We also investigated cell survival of purified primary-cultured RGCs treated with Tet. An in vivo retinal ischemia/reperfusion model was used to examine RGC survival after Tet administration 1 day before ischemia. We found that Tet affected RGC-5 survival in a dose- and time-dependent manner. Compared to dimethyl sulfoxide treatment, Tet increased the numbers of RGC-5 cells by 30% at 72 hours. After 48 hours, Tet protected staurosporine-induced RGC-5 cells from serum deprivation-induced cell death and significantly increased the relative number of cells cultured with 1 mM H(2)O(2) (P<0.01). Several concentrations of Tet significantly prevented 25-mM-glutamate-induced cell death in a dose-dependent manner. Tet also increased primary RGC survival after 72 and 96 hours. Tet administration (10 μM, 2 μL) 1 day before retinal ischemia showed RGC layer loss (greater survival), which was less than those in groups with phosphate-buffered saline intravitreal injection plus ischemia in the central (P=0.005, n=6), middle (P=0.018, n=6), and peripheral (P=0.017, n=6) parts of the retina. Thus, Tet conferred protective effects on serum deprivation models of staurosporine-differentiated neuron-like RGC-5 cells and primary cultured murine RGCs. Furthermore, Tet showed greater in vivo protective effects on RGCs 1 day after ischemia. Tet and ciliary neurotrophic factor maintained the mitochondrial transmembrane potential (ΔΨm) of primary cultured RGCs and inhibited the expression of activated caspase-3 and bcl-2 in ischemia/reperfusion-insult retinas.
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spelling pubmed-39680852014-04-07 Tetrandrine protects mouse retinal ganglion cells from ischemic injury Li, Weiyi Yang, Chen Lu, Jing Huang, Ping Barnstable, Colin J Zhang, Chun Zhang, Samuel S Drug Des Devel Ther Original Research This study aimed to determine the protective effects of tetrandrine (Tet) on murine ischemia-injured retinal ganglion cells (RGCs). For this, we used serum deprivation cell model, glutamate and hydrogen peroxide (H(2)O(2))-induced RGC-5 cell death models, and staurosporine-differentiated neuron-like RGC-5 in vitro. We also investigated cell survival of purified primary-cultured RGCs treated with Tet. An in vivo retinal ischemia/reperfusion model was used to examine RGC survival after Tet administration 1 day before ischemia. We found that Tet affected RGC-5 survival in a dose- and time-dependent manner. Compared to dimethyl sulfoxide treatment, Tet increased the numbers of RGC-5 cells by 30% at 72 hours. After 48 hours, Tet protected staurosporine-induced RGC-5 cells from serum deprivation-induced cell death and significantly increased the relative number of cells cultured with 1 mM H(2)O(2) (P<0.01). Several concentrations of Tet significantly prevented 25-mM-glutamate-induced cell death in a dose-dependent manner. Tet also increased primary RGC survival after 72 and 96 hours. Tet administration (10 μM, 2 μL) 1 day before retinal ischemia showed RGC layer loss (greater survival), which was less than those in groups with phosphate-buffered saline intravitreal injection plus ischemia in the central (P=0.005, n=6), middle (P=0.018, n=6), and peripheral (P=0.017, n=6) parts of the retina. Thus, Tet conferred protective effects on serum deprivation models of staurosporine-differentiated neuron-like RGC-5 cells and primary cultured murine RGCs. Furthermore, Tet showed greater in vivo protective effects on RGCs 1 day after ischemia. Tet and ciliary neurotrophic factor maintained the mitochondrial transmembrane potential (ΔΨm) of primary cultured RGCs and inhibited the expression of activated caspase-3 and bcl-2 in ischemia/reperfusion-insult retinas. Dove Medical Press 2014-03-21 /pmc/articles/PMC3968085/ /pubmed/24711693 http://dx.doi.org/10.2147/DDDT.S55407 Text en © 2014 Li et al. This work is published by Dove Medical Press Limited, and licensed under Creative Commons Attribution – Non Commercial (unported, v3.0) License The full terms of the License are available at http://creativecommons.org/licenses/by-nc/3.0/. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed.
spellingShingle Original Research
Li, Weiyi
Yang, Chen
Lu, Jing
Huang, Ping
Barnstable, Colin J
Zhang, Chun
Zhang, Samuel S
Tetrandrine protects mouse retinal ganglion cells from ischemic injury
title Tetrandrine protects mouse retinal ganglion cells from ischemic injury
title_full Tetrandrine protects mouse retinal ganglion cells from ischemic injury
title_fullStr Tetrandrine protects mouse retinal ganglion cells from ischemic injury
title_full_unstemmed Tetrandrine protects mouse retinal ganglion cells from ischemic injury
title_short Tetrandrine protects mouse retinal ganglion cells from ischemic injury
title_sort tetrandrine protects mouse retinal ganglion cells from ischemic injury
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3968085/
https://www.ncbi.nlm.nih.gov/pubmed/24711693
http://dx.doi.org/10.2147/DDDT.S55407
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