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Lentinan-functionalized Selenium Nanoparticles target Tumor Cell Mitochondria via TLR4/TRAF3/MFN1 pathway

Rationale: Malignant ascites caused by cancer cells results in poor prognosis and short average survival time. No effective treatment is currently available for malignant ascites. In this study, the effects of lentinan (LNT)-functionalized selenium nanoparticles (Selene) on malignant ascites were ev...

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Autores principales: Liu, Hui-Juan, Qin, Yuan, Zhao, Zi-Han, Zhang, Yang, Yang, Jia-Huan, Zhai, Deng-Hui, Cui, Fang, Luo, Ce, Lu, Man-Xi, Liu, Piao-Piao, Xu, Heng-Wei, Li, Kun, Sun, Bo, Chen, Shuang, Zhou, Hong-Gang, Yang, Cheng, Sun, Tao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7415812/
https://www.ncbi.nlm.nih.gov/pubmed/32802180
http://dx.doi.org/10.7150/thno.46467
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author Liu, Hui-Juan
Qin, Yuan
Zhao, Zi-Han
Zhang, Yang
Yang, Jia-Huan
Zhai, Deng-Hui
Cui, Fang
Luo, Ce
Lu, Man-Xi
Liu, Piao-Piao
Xu, Heng-Wei
Li, Kun
Sun, Bo
Chen, Shuang
Zhou, Hong-Gang
Yang, Cheng
Sun, Tao
author_facet Liu, Hui-Juan
Qin, Yuan
Zhao, Zi-Han
Zhang, Yang
Yang, Jia-Huan
Zhai, Deng-Hui
Cui, Fang
Luo, Ce
Lu, Man-Xi
Liu, Piao-Piao
Xu, Heng-Wei
Li, Kun
Sun, Bo
Chen, Shuang
Zhou, Hong-Gang
Yang, Cheng
Sun, Tao
author_sort Liu, Hui-Juan
collection PubMed
description Rationale: Malignant ascites caused by cancer cells results in poor prognosis and short average survival time. No effective treatment is currently available for malignant ascites. In this study, the effects of lentinan (LNT)-functionalized selenium nanoparticles (Selene) on malignant ascites were evaluated. Furthermore, the mechanism of Selene targeting mitochondria of tumor cells were also investigated. Methods: Selene were synthesized and characterized by TEM, AFM and particle size analysis. The OVCAR-3 and EAC cells induced ascites models were used to evaluate the effects of Selene on malignant ascites. Proteomic analysis, immunofluorescence, TEM and ICP-MS were used to determine the location of Selene in tumor cells. Mitochondrial membrane potential, ROS, ATP content, and caspase-1/3 activity were detected to evaluate the effect of Selene on mitochondrial function and cell apoptosis. Immunofluorescence, Co-IP, pull-down, duolink, Western blot, and FPLC were used to investigate the pathway of Selene targeting mitochondria. Results: Selene could effectively inhibit ascites induced by OVCAR-3 and EAC cells. Selene was mainly located in the mitochondria of tumor cells and induced apoptosis of tumor cells. The LNT in Selene was involved in caveolae-mediated endocytosis through the interaction between toll-like receptor-4 (TLR4) and caveolin 1 (CAV1). Furthermore, the Selene in the endocytic vesicles could enter the mitochondria via the mitochondrial membrane fusion pathway, which was mediated by TLR4/TNF receptor associated factor 3 (TRAF3)/mitofusin-1 (MFN1) protein complex. Conclusion: Selene is a candidate anticancer drug for the treatment of malignant ascites. And TLR4/TRAF3/MFN1 may be a specific nano-drug delivery pathway that could target the mitochondria.
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spelling pubmed-74158122020-08-13 Lentinan-functionalized Selenium Nanoparticles target Tumor Cell Mitochondria via TLR4/TRAF3/MFN1 pathway Liu, Hui-Juan Qin, Yuan Zhao, Zi-Han Zhang, Yang Yang, Jia-Huan Zhai, Deng-Hui Cui, Fang Luo, Ce Lu, Man-Xi Liu, Piao-Piao Xu, Heng-Wei Li, Kun Sun, Bo Chen, Shuang Zhou, Hong-Gang Yang, Cheng Sun, Tao Theranostics Research Paper Rationale: Malignant ascites caused by cancer cells results in poor prognosis and short average survival time. No effective treatment is currently available for malignant ascites. In this study, the effects of lentinan (LNT)-functionalized selenium nanoparticles (Selene) on malignant ascites were evaluated. Furthermore, the mechanism of Selene targeting mitochondria of tumor cells were also investigated. Methods: Selene were synthesized and characterized by TEM, AFM and particle size analysis. The OVCAR-3 and EAC cells induced ascites models were used to evaluate the effects of Selene on malignant ascites. Proteomic analysis, immunofluorescence, TEM and ICP-MS were used to determine the location of Selene in tumor cells. Mitochondrial membrane potential, ROS, ATP content, and caspase-1/3 activity were detected to evaluate the effect of Selene on mitochondrial function and cell apoptosis. Immunofluorescence, Co-IP, pull-down, duolink, Western blot, and FPLC were used to investigate the pathway of Selene targeting mitochondria. Results: Selene could effectively inhibit ascites induced by OVCAR-3 and EAC cells. Selene was mainly located in the mitochondria of tumor cells and induced apoptosis of tumor cells. The LNT in Selene was involved in caveolae-mediated endocytosis through the interaction between toll-like receptor-4 (TLR4) and caveolin 1 (CAV1). Furthermore, the Selene in the endocytic vesicles could enter the mitochondria via the mitochondrial membrane fusion pathway, which was mediated by TLR4/TNF receptor associated factor 3 (TRAF3)/mitofusin-1 (MFN1) protein complex. Conclusion: Selene is a candidate anticancer drug for the treatment of malignant ascites. And TLR4/TRAF3/MFN1 may be a specific nano-drug delivery pathway that could target the mitochondria. Ivyspring International Publisher 2020-07-11 /pmc/articles/PMC7415812/ /pubmed/32802180 http://dx.doi.org/10.7150/thno.46467 Text en © The author(s) This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Liu, Hui-Juan
Qin, Yuan
Zhao, Zi-Han
Zhang, Yang
Yang, Jia-Huan
Zhai, Deng-Hui
Cui, Fang
Luo, Ce
Lu, Man-Xi
Liu, Piao-Piao
Xu, Heng-Wei
Li, Kun
Sun, Bo
Chen, Shuang
Zhou, Hong-Gang
Yang, Cheng
Sun, Tao
Lentinan-functionalized Selenium Nanoparticles target Tumor Cell Mitochondria via TLR4/TRAF3/MFN1 pathway
title Lentinan-functionalized Selenium Nanoparticles target Tumor Cell Mitochondria via TLR4/TRAF3/MFN1 pathway
title_full Lentinan-functionalized Selenium Nanoparticles target Tumor Cell Mitochondria via TLR4/TRAF3/MFN1 pathway
title_fullStr Lentinan-functionalized Selenium Nanoparticles target Tumor Cell Mitochondria via TLR4/TRAF3/MFN1 pathway
title_full_unstemmed Lentinan-functionalized Selenium Nanoparticles target Tumor Cell Mitochondria via TLR4/TRAF3/MFN1 pathway
title_short Lentinan-functionalized Selenium Nanoparticles target Tumor Cell Mitochondria via TLR4/TRAF3/MFN1 pathway
title_sort lentinan-functionalized selenium nanoparticles target tumor cell mitochondria via tlr4/traf3/mfn1 pathway
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7415812/
https://www.ncbi.nlm.nih.gov/pubmed/32802180
http://dx.doi.org/10.7150/thno.46467
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