Amygdalin influences bladder cancer cell adhesion and invasion in vitro.

The cyanogenic diglucoside amygdalin, derived from Rosaceae kernels, is employed by many patients as an alternative anti-cancer treatment. However, whether amygdalin indeed acts as an anti-tumor agent is not clear. Metastasis blocking properties of amygdalin on bladder cancer cell lines was, therefo...

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Main Authors: Jasmina Makarević, Jochen Rutz, Eva Juengel, Silke Kaulfuss, Igor Tsaur, Karen Nelson, Jesco Pfitzenmaier, Axel Haferkamp, Roman A Blaheta
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4198254?pdf=render
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spelling doaj-4e7b1e1d6d834da0a331c8ebd3a0f7a02020-11-25T01:05:08ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-01910e11024410.1371/journal.pone.0110244Amygdalin influences bladder cancer cell adhesion and invasion in vitro.Jasmina MakarevićJochen RutzEva JuengelSilke KaulfussIgor TsaurKaren NelsonJesco PfitzenmaierAxel HaferkampRoman A BlahetaThe cyanogenic diglucoside amygdalin, derived from Rosaceae kernels, is employed by many patients as an alternative anti-cancer treatment. However, whether amygdalin indeed acts as an anti-tumor agent is not clear. Metastasis blocking properties of amygdalin on bladder cancer cell lines was, therefore, investigated. Amygdalin (10 mg/ml) was applied to UMUC-3, TCCSUP or RT112 bladder cancer cells for 24 h or for 2 weeks. Tumor cell adhesion to vascular endothelium or to immobilized collagen as well as tumor cell migration was examined. Effects of drug treatment on integrin α and β subtypes, on integrin-linked kinase (ILK) and total and activated focal adhesion kinase (FAK) were also determined. Integrin knock-down was carried out to evaluate integrin influence on migration and adhesion. A 24 h or 2 week amygdalin application distinctly reduced tumor cell adhesion and migration of UMUC-3 and RT112 cells. TCCSUP adhesion was also reduced, but migration was elevated under amygdalin. Integrin subtype expression was significantly and specifically altered by amygdalin depending on the cell line. ILK was moderately, and activated FAK strongly, lost in all tumor cell lines in the presence of amygdalin. Knock down of β1 integrin caused a significant decrease in both adhesion and migration of UMUC-3 cells, but a significant increase in TCCSUP adhesion. Knock down of β4 integrin caused a significant decrease in migration of RT112 cells. Since the different actions of amygdalin on the different cell lines was mirrored by β1 or β4 knock down, it is postulated that amygdalin influences adhesion and migratory properties of bladder cancer cells by modulating β1 or β4 integrin expression. The amygdalin induced increase in TCCSUP migratory behavior indicates that any anti-tumor benefits from amygdalin (seen with the other two cell lines) may depend upon the cancer cell type.http://europepmc.org/articles/PMC4198254?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Jasmina Makarević
Jochen Rutz
Eva Juengel
Silke Kaulfuss
Igor Tsaur
Karen Nelson
Jesco Pfitzenmaier
Axel Haferkamp
Roman A Blaheta
spellingShingle Jasmina Makarević
Jochen Rutz
Eva Juengel
Silke Kaulfuss
Igor Tsaur
Karen Nelson
Jesco Pfitzenmaier
Axel Haferkamp
Roman A Blaheta
Amygdalin influences bladder cancer cell adhesion and invasion in vitro.
PLoS ONE
author_facet Jasmina Makarević
Jochen Rutz
Eva Juengel
Silke Kaulfuss
Igor Tsaur
Karen Nelson
Jesco Pfitzenmaier
Axel Haferkamp
Roman A Blaheta
author_sort Jasmina Makarević
title Amygdalin influences bladder cancer cell adhesion and invasion in vitro.
title_short Amygdalin influences bladder cancer cell adhesion and invasion in vitro.
title_full Amygdalin influences bladder cancer cell adhesion and invasion in vitro.
title_fullStr Amygdalin influences bladder cancer cell adhesion and invasion in vitro.
title_full_unstemmed Amygdalin influences bladder cancer cell adhesion and invasion in vitro.
title_sort amygdalin influences bladder cancer cell adhesion and invasion in vitro.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description The cyanogenic diglucoside amygdalin, derived from Rosaceae kernels, is employed by many patients as an alternative anti-cancer treatment. However, whether amygdalin indeed acts as an anti-tumor agent is not clear. Metastasis blocking properties of amygdalin on bladder cancer cell lines was, therefore, investigated. Amygdalin (10 mg/ml) was applied to UMUC-3, TCCSUP or RT112 bladder cancer cells for 24 h or for 2 weeks. Tumor cell adhesion to vascular endothelium or to immobilized collagen as well as tumor cell migration was examined. Effects of drug treatment on integrin α and β subtypes, on integrin-linked kinase (ILK) and total and activated focal adhesion kinase (FAK) were also determined. Integrin knock-down was carried out to evaluate integrin influence on migration and adhesion. A 24 h or 2 week amygdalin application distinctly reduced tumor cell adhesion and migration of UMUC-3 and RT112 cells. TCCSUP adhesion was also reduced, but migration was elevated under amygdalin. Integrin subtype expression was significantly and specifically altered by amygdalin depending on the cell line. ILK was moderately, and activated FAK strongly, lost in all tumor cell lines in the presence of amygdalin. Knock down of β1 integrin caused a significant decrease in both adhesion and migration of UMUC-3 cells, but a significant increase in TCCSUP adhesion. Knock down of β4 integrin caused a significant decrease in migration of RT112 cells. Since the different actions of amygdalin on the different cell lines was mirrored by β1 or β4 knock down, it is postulated that amygdalin influences adhesion and migratory properties of bladder cancer cells by modulating β1 or β4 integrin expression. The amygdalin induced increase in TCCSUP migratory behavior indicates that any anti-tumor benefits from amygdalin (seen with the other two cell lines) may depend upon the cancer cell type.
url http://europepmc.org/articles/PMC4198254?pdf=render
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