Cargando…

Fructose-coated Angstrom silver inhibits osteosarcoma growth and metastasis via promoting ROS-dependent apoptosis through the alteration of glucose metabolism by inhibiting PDK

Osteosarcoma is a common malignant bone cancer easily to metastasize. Much safer and more efficient strategies are still needed to suppress osteosarcoma growth and lung metastasis. We recently presented a pure physical method to fabricate Ångstrom-scale silver particles (AgÅPs) and determined the an...

Descripción completa

Detalles Bibliográficos
Autores principales: Hu, Xiong-Ke, Rao, Shan-Shan, Tan, Yi-Juan, Yin, Hao, Luo, Ming-Jie, Wang, Zhen-Xing, Zhou, Jin-Hua, Hong, Chun-Gu, Luo, Zhong-Wei, Du, Wei, Wu, Ben, Yan, Zi-Qi, He, Ze-Hui, Liu, Zheng-Zhao, Cao, Jia, Wang, Yang, Situ, Wei-Yi, Liu, Hao-Ming, Huang, Jie, Wang, Yi-Yi, Xia, Kun, Qian, Yu-Xuan, Zhang, Yan, Yue, Tao, Liu, Yi-Wei, Zhang, Hong-Qi, Tang, Si-Yuan, Chen, Chun-Yuan, Xie, Hui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7359101/
https://www.ncbi.nlm.nih.gov/pubmed/32685015
http://dx.doi.org/10.7150/thno.45858
_version_ 1783558977492090880
author Hu, Xiong-Ke
Rao, Shan-Shan
Tan, Yi-Juan
Yin, Hao
Luo, Ming-Jie
Wang, Zhen-Xing
Zhou, Jin-Hua
Hong, Chun-Gu
Luo, Zhong-Wei
Du, Wei
Wu, Ben
Yan, Zi-Qi
He, Ze-Hui
Liu, Zheng-Zhao
Cao, Jia
Wang, Yang
Situ, Wei-Yi
Liu, Hao-Ming
Huang, Jie
Wang, Yi-Yi
Xia, Kun
Qian, Yu-Xuan
Zhang, Yan
Yue, Tao
Liu, Yi-Wei
Zhang, Hong-Qi
Tang, Si-Yuan
Chen, Chun-Yuan
Xie, Hui
author_facet Hu, Xiong-Ke
Rao, Shan-Shan
Tan, Yi-Juan
Yin, Hao
Luo, Ming-Jie
Wang, Zhen-Xing
Zhou, Jin-Hua
Hong, Chun-Gu
Luo, Zhong-Wei
Du, Wei
Wu, Ben
Yan, Zi-Qi
He, Ze-Hui
Liu, Zheng-Zhao
Cao, Jia
Wang, Yang
Situ, Wei-Yi
Liu, Hao-Ming
Huang, Jie
Wang, Yi-Yi
Xia, Kun
Qian, Yu-Xuan
Zhang, Yan
Yue, Tao
Liu, Yi-Wei
Zhang, Hong-Qi
Tang, Si-Yuan
Chen, Chun-Yuan
Xie, Hui
author_sort Hu, Xiong-Ke
collection PubMed
description Osteosarcoma is a common malignant bone cancer easily to metastasize. Much safer and more efficient strategies are still needed to suppress osteosarcoma growth and lung metastasis. We recently presented a pure physical method to fabricate Ångstrom-scale silver particles (AgÅPs) and determined the anti-tumor efficacy of fructose-coated AgÅPs (F-AgÅPs) against lung and pancreatic cancer. Our study utilized an optimized method to obtain smaller F-AgÅPs and aimed to assess whether F-AgÅPs can be used as an efficient and safe agent for osteosarcoma therapy. We also investigated whether the induction of apoptosis by altering glucose metabolic phenotype contributes to the F-AgÅPs-induced anti-osteosarcoma effects. Methods: A modified method was developed to prepare smaller F-AgÅPs. The anti-tumor, anti-metastatic and pro-survival efficacy of F-AgÅPs and their toxicities on healthy tissues were compared with that of cisplatin (a first-line chemotherapeutic drug for osteosarcoma therapy) in subcutaneous or orthotopic osteosarcoma-bearing nude mice. The pharmacokinetics, biodistribution and excretion of F-AgÅPs were evaluated by testing the levels of silver in serum, tissues, urine and feces of mice. A series of assays in vitro were conducted to assess whether the induction of apoptosis mediates the killing effects of F-AgÅPs on osteosarcoma cells and whether the alteration of glucose metabolic phenotype contributes to F-AgÅPs-induced apoptosis. Results: The newly obtained F-AgÅPs (9.38 ± 4.11 nm) had good stability in different biological media or aqueous solutions and were more effective than cisplatin in inhibiting tumor growth, improving survival, attenuating osteolysis and preventing lung metastasis in osteosarcoma-bearing nude mice after intravenous injection, but were well tolerated in normal tissues. One week after injection, about 68% of F-AgÅPs were excreted through feces. F-AgÅPs induced reactive oxygen species (ROS)-dependent apoptosis of osteosarcoma cells but not normal cells, owing to their ability to selectively shift glucose metabolism of osteosarcoma cells from glycolysis to mitochondrial oxidation by inhibiting pyruvate dehydrogenase kinase (PDK). Conclusion: Our study suggests the promising prospect of F-AgÅPs as a powerful selective anticancer agent for osteosarcoma therapy.
format Online
Article
Text
id pubmed-7359101
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Ivyspring International Publisher
record_format MEDLINE/PubMed
spelling pubmed-73591012020-07-17 Fructose-coated Angstrom silver inhibits osteosarcoma growth and metastasis via promoting ROS-dependent apoptosis through the alteration of glucose metabolism by inhibiting PDK Hu, Xiong-Ke Rao, Shan-Shan Tan, Yi-Juan Yin, Hao Luo, Ming-Jie Wang, Zhen-Xing Zhou, Jin-Hua Hong, Chun-Gu Luo, Zhong-Wei Du, Wei Wu, Ben Yan, Zi-Qi He, Ze-Hui Liu, Zheng-Zhao Cao, Jia Wang, Yang Situ, Wei-Yi Liu, Hao-Ming Huang, Jie Wang, Yi-Yi Xia, Kun Qian, Yu-Xuan Zhang, Yan Yue, Tao Liu, Yi-Wei Zhang, Hong-Qi Tang, Si-Yuan Chen, Chun-Yuan Xie, Hui Theranostics Research Paper Osteosarcoma is a common malignant bone cancer easily to metastasize. Much safer and more efficient strategies are still needed to suppress osteosarcoma growth and lung metastasis. We recently presented a pure physical method to fabricate Ångstrom-scale silver particles (AgÅPs) and determined the anti-tumor efficacy of fructose-coated AgÅPs (F-AgÅPs) against lung and pancreatic cancer. Our study utilized an optimized method to obtain smaller F-AgÅPs and aimed to assess whether F-AgÅPs can be used as an efficient and safe agent for osteosarcoma therapy. We also investigated whether the induction of apoptosis by altering glucose metabolic phenotype contributes to the F-AgÅPs-induced anti-osteosarcoma effects. Methods: A modified method was developed to prepare smaller F-AgÅPs. The anti-tumor, anti-metastatic and pro-survival efficacy of F-AgÅPs and their toxicities on healthy tissues were compared with that of cisplatin (a first-line chemotherapeutic drug for osteosarcoma therapy) in subcutaneous or orthotopic osteosarcoma-bearing nude mice. The pharmacokinetics, biodistribution and excretion of F-AgÅPs were evaluated by testing the levels of silver in serum, tissues, urine and feces of mice. A series of assays in vitro were conducted to assess whether the induction of apoptosis mediates the killing effects of F-AgÅPs on osteosarcoma cells and whether the alteration of glucose metabolic phenotype contributes to F-AgÅPs-induced apoptosis. Results: The newly obtained F-AgÅPs (9.38 ± 4.11 nm) had good stability in different biological media or aqueous solutions and were more effective than cisplatin in inhibiting tumor growth, improving survival, attenuating osteolysis and preventing lung metastasis in osteosarcoma-bearing nude mice after intravenous injection, but were well tolerated in normal tissues. One week after injection, about 68% of F-AgÅPs were excreted through feces. F-AgÅPs induced reactive oxygen species (ROS)-dependent apoptosis of osteosarcoma cells but not normal cells, owing to their ability to selectively shift glucose metabolism of osteosarcoma cells from glycolysis to mitochondrial oxidation by inhibiting pyruvate dehydrogenase kinase (PDK). Conclusion: Our study suggests the promising prospect of F-AgÅPs as a powerful selective anticancer agent for osteosarcoma therapy. Ivyspring International Publisher 2020-06-19 /pmc/articles/PMC7359101/ /pubmed/32685015 http://dx.doi.org/10.7150/thno.45858 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
Hu, Xiong-Ke
Rao, Shan-Shan
Tan, Yi-Juan
Yin, Hao
Luo, Ming-Jie
Wang, Zhen-Xing
Zhou, Jin-Hua
Hong, Chun-Gu
Luo, Zhong-Wei
Du, Wei
Wu, Ben
Yan, Zi-Qi
He, Ze-Hui
Liu, Zheng-Zhao
Cao, Jia
Wang, Yang
Situ, Wei-Yi
Liu, Hao-Ming
Huang, Jie
Wang, Yi-Yi
Xia, Kun
Qian, Yu-Xuan
Zhang, Yan
Yue, Tao
Liu, Yi-Wei
Zhang, Hong-Qi
Tang, Si-Yuan
Chen, Chun-Yuan
Xie, Hui
Fructose-coated Angstrom silver inhibits osteosarcoma growth and metastasis via promoting ROS-dependent apoptosis through the alteration of glucose metabolism by inhibiting PDK
title Fructose-coated Angstrom silver inhibits osteosarcoma growth and metastasis via promoting ROS-dependent apoptosis through the alteration of glucose metabolism by inhibiting PDK
title_full Fructose-coated Angstrom silver inhibits osteosarcoma growth and metastasis via promoting ROS-dependent apoptosis through the alteration of glucose metabolism by inhibiting PDK
title_fullStr Fructose-coated Angstrom silver inhibits osteosarcoma growth and metastasis via promoting ROS-dependent apoptosis through the alteration of glucose metabolism by inhibiting PDK
title_full_unstemmed Fructose-coated Angstrom silver inhibits osteosarcoma growth and metastasis via promoting ROS-dependent apoptosis through the alteration of glucose metabolism by inhibiting PDK
title_short Fructose-coated Angstrom silver inhibits osteosarcoma growth and metastasis via promoting ROS-dependent apoptosis through the alteration of glucose metabolism by inhibiting PDK
title_sort fructose-coated angstrom silver inhibits osteosarcoma growth and metastasis via promoting ros-dependent apoptosis through the alteration of glucose metabolism by inhibiting pdk
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7359101/
https://www.ncbi.nlm.nih.gov/pubmed/32685015
http://dx.doi.org/10.7150/thno.45858
work_keys_str_mv AT huxiongke fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT raoshanshan fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT tanyijuan fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT yinhao fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT luomingjie fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT wangzhenxing fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT zhoujinhua fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT hongchungu fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT luozhongwei fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT duwei fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT wuben fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT yanziqi fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT hezehui fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT liuzhengzhao fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT caojia fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT wangyang fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT situweiyi fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT liuhaoming fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT huangjie fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT wangyiyi fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT xiakun fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT qianyuxuan fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT zhangyan fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT yuetao fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT liuyiwei fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT zhanghongqi fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT tangsiyuan fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT chenchunyuan fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk
AT xiehui fructosecoatedangstromsilverinhibitsosteosarcomagrowthandmetastasisviapromotingrosdependentapoptosisthroughthealterationofglucosemetabolismbyinhibitingpdk