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A Model In Vitro Study Using Hypericin: Tumor-Versus Necrosis-Targeting Property and Possible Mechanisms

Hypericin (Hyp) had been explored as a tumor-seeking agent for years; however, more recent studies showed its necrosis-avidity rather than cancer-seeking property. To further look into this discrepancy, we conducted an in vitro study on Hyp retention in vital and dead cancerous HepG2 and normal LO2...

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Autores principales: Li, Yue, Wang, Shuncong, Zhao, Yuanyu, Saiyin, Hexige, He, Xiaoyan, Zhao, Juanzhi, Li, Ling, Talebi, Ali, Huang, Gang, Ni, Yicheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7168897/
https://www.ncbi.nlm.nih.gov/pubmed/31936002
http://dx.doi.org/10.3390/biology9010013
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author Li, Yue
Wang, Shuncong
Zhao, Yuanyu
Saiyin, Hexige
He, Xiaoyan
Zhao, Juanzhi
Li, Ling
Talebi, Ali
Huang, Gang
Ni, Yicheng
author_facet Li, Yue
Wang, Shuncong
Zhao, Yuanyu
Saiyin, Hexige
He, Xiaoyan
Zhao, Juanzhi
Li, Ling
Talebi, Ali
Huang, Gang
Ni, Yicheng
author_sort Li, Yue
collection PubMed
description Hypericin (Hyp) had been explored as a tumor-seeking agent for years; however, more recent studies showed its necrosis-avidity rather than cancer-seeking property. To further look into this discrepancy, we conducted an in vitro study on Hyp retention in vital and dead cancerous HepG2 and normal LO2 cell lines by measuring the fluorescence intensity and concentration of Hyp in cells. To question the DNA binding theory for its necrosis-avidity, the subcellular distribution of Hyp was also investigated to explore the possible mechanisms of the necrosis avidity. The fluorescence intensity and concentration are significantly higher in dead cells than those in vital cells, and this difference did not differ between HepG2 and LO2 cell lines. Hyp was taken up in vital cells in the early phase and excreted within hours, whereas it was retained in dead cells for more than two days. Confocal microscopy showed that Hyp selectively accumulated in lysosomes rather than cell membrane or nuclei. Hyp showed a necrosis-avid property rather than cancer-targetability. The long-lasting retention of Hyp in dead cells may be associated with halted energy metabolism and/or binding with certain degraded cellular substrates. Necrosis-avidity of Hyp was confirmed, which may be associated with halted energy metabolism in dead LO2 or HepG2 cells.
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spelling pubmed-71688972020-04-20 A Model In Vitro Study Using Hypericin: Tumor-Versus Necrosis-Targeting Property and Possible Mechanisms Li, Yue Wang, Shuncong Zhao, Yuanyu Saiyin, Hexige He, Xiaoyan Zhao, Juanzhi Li, Ling Talebi, Ali Huang, Gang Ni, Yicheng Biology (Basel) Article Hypericin (Hyp) had been explored as a tumor-seeking agent for years; however, more recent studies showed its necrosis-avidity rather than cancer-seeking property. To further look into this discrepancy, we conducted an in vitro study on Hyp retention in vital and dead cancerous HepG2 and normal LO2 cell lines by measuring the fluorescence intensity and concentration of Hyp in cells. To question the DNA binding theory for its necrosis-avidity, the subcellular distribution of Hyp was also investigated to explore the possible mechanisms of the necrosis avidity. The fluorescence intensity and concentration are significantly higher in dead cells than those in vital cells, and this difference did not differ between HepG2 and LO2 cell lines. Hyp was taken up in vital cells in the early phase and excreted within hours, whereas it was retained in dead cells for more than two days. Confocal microscopy showed that Hyp selectively accumulated in lysosomes rather than cell membrane or nuclei. Hyp showed a necrosis-avid property rather than cancer-targetability. The long-lasting retention of Hyp in dead cells may be associated with halted energy metabolism and/or binding with certain degraded cellular substrates. Necrosis-avidity of Hyp was confirmed, which may be associated with halted energy metabolism in dead LO2 or HepG2 cells. MDPI 2020-01-07 /pmc/articles/PMC7168897/ /pubmed/31936002 http://dx.doi.org/10.3390/biology9010013 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Li, Yue
Wang, Shuncong
Zhao, Yuanyu
Saiyin, Hexige
He, Xiaoyan
Zhao, Juanzhi
Li, Ling
Talebi, Ali
Huang, Gang
Ni, Yicheng
A Model In Vitro Study Using Hypericin: Tumor-Versus Necrosis-Targeting Property and Possible Mechanisms
title A Model In Vitro Study Using Hypericin: Tumor-Versus Necrosis-Targeting Property and Possible Mechanisms
title_full A Model In Vitro Study Using Hypericin: Tumor-Versus Necrosis-Targeting Property and Possible Mechanisms
title_fullStr A Model In Vitro Study Using Hypericin: Tumor-Versus Necrosis-Targeting Property and Possible Mechanisms
title_full_unstemmed A Model In Vitro Study Using Hypericin: Tumor-Versus Necrosis-Targeting Property and Possible Mechanisms
title_short A Model In Vitro Study Using Hypericin: Tumor-Versus Necrosis-Targeting Property and Possible Mechanisms
title_sort model in vitro study using hypericin: tumor-versus necrosis-targeting property and possible mechanisms
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7168897/
https://www.ncbi.nlm.nih.gov/pubmed/31936002
http://dx.doi.org/10.3390/biology9010013
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