Cargando…

Lipid droplet binding thalidomide analogs activate endoplasmic reticulum stress and suppress hepatocellular carcinoma in a chemically induced transgenic mouse model

BACKGROUND: Hepatocellular carcinoma (HCC) is the most frequent and aggressive primary tumor of the liver and it has limited treatment options. RESULTS: In this study, we report the in vitro and in vivo effects of two novel amino-trifluoro-phtalimide analogs, Ac-915 and Ac-2010. Both compounds bind...

Descripción completa

Detalles Bibliográficos
Autores principales: Nagy, Lajos I, Molnár, Eszter, Kanizsai, Iván, Madácsi, Ramóna, Ózsvári, Béla, Fehér, Liliána Z, Fábián, Gabriella, Marton, Annamária, Vizler, Csaba, Ayaydin, Ferhan, Kitajka, Klára, Hackler, László, Mátés, Lajos, Deák, Ferenc, Kiss, Ibolya, Puskás, László G
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4222488/
https://www.ncbi.nlm.nih.gov/pubmed/24268070
http://dx.doi.org/10.1186/1476-511X-12-175
_version_ 1782343046194528256
author Nagy, Lajos I
Molnár, Eszter
Kanizsai, Iván
Madácsi, Ramóna
Ózsvári, Béla
Fehér, Liliána Z
Fábián, Gabriella
Marton, Annamária
Vizler, Csaba
Ayaydin, Ferhan
Kitajka, Klára
Hackler, László
Mátés, Lajos
Deák, Ferenc
Kiss, Ibolya
Puskás, László G
author_facet Nagy, Lajos I
Molnár, Eszter
Kanizsai, Iván
Madácsi, Ramóna
Ózsvári, Béla
Fehér, Liliána Z
Fábián, Gabriella
Marton, Annamária
Vizler, Csaba
Ayaydin, Ferhan
Kitajka, Klára
Hackler, László
Mátés, Lajos
Deák, Ferenc
Kiss, Ibolya
Puskás, László G
author_sort Nagy, Lajos I
collection PubMed
description BACKGROUND: Hepatocellular carcinoma (HCC) is the most frequent and aggressive primary tumor of the liver and it has limited treatment options. RESULTS: In this study, we report the in vitro and in vivo effects of two novel amino-trifluoro-phtalimide analogs, Ac-915 and Ac-2010. Both compounds bind lipid droplets and endoplasmic reticulum membrane, and interact with several proteins with chaperone functions (HSP60, HSP70, HSP90, and protein disulfide isomerase) as determined by affinity chromatography and resonant waveguide optical biosensor technology. Both compounds inhibited protein disulfide isomerase activity and induced cell death of different HCC cells at sub or low micromolar ranges detected by classical biochemical end-point assay as well as with real-time label-free measurements. Besides cell proliferation inhibiton, analogs also inhibited cell migration even at 250 nM. Relative biodistribution of the analogs was analysed in native tissue sections of different organs after administration of drugs, and by using fluorescent confocal microscopy based on the inherent blue fluorescence of the compounds. The analogs mainly accumulated in the liver. The effects of Ac-915 and Ac-2010 were also demonstrated on the advanced stages of hepatocarcinogenesis in a transgenic mouse model of N-nitrosodiethylamine (DEN)-induced HCC. Significantly less tumor development was found in the livers of the Ac-915- or Ac-2010-treated groups compared with control mice, characterized by less liver tumor incidence, fewer tumors and smaller tumor size. CONCLUSION: These results imply that these amino-trifluoro-phthalimide analogs could serve potent clinical candidates against HCC alone or in combination with dietary polyunsaturated fatty acids.
format Online
Article
Text
id pubmed-4222488
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-42224882014-11-07 Lipid droplet binding thalidomide analogs activate endoplasmic reticulum stress and suppress hepatocellular carcinoma in a chemically induced transgenic mouse model Nagy, Lajos I Molnár, Eszter Kanizsai, Iván Madácsi, Ramóna Ózsvári, Béla Fehér, Liliána Z Fábián, Gabriella Marton, Annamária Vizler, Csaba Ayaydin, Ferhan Kitajka, Klára Hackler, László Mátés, Lajos Deák, Ferenc Kiss, Ibolya Puskás, László G Lipids Health Dis Research BACKGROUND: Hepatocellular carcinoma (HCC) is the most frequent and aggressive primary tumor of the liver and it has limited treatment options. RESULTS: In this study, we report the in vitro and in vivo effects of two novel amino-trifluoro-phtalimide analogs, Ac-915 and Ac-2010. Both compounds bind lipid droplets and endoplasmic reticulum membrane, and interact with several proteins with chaperone functions (HSP60, HSP70, HSP90, and protein disulfide isomerase) as determined by affinity chromatography and resonant waveguide optical biosensor technology. Both compounds inhibited protein disulfide isomerase activity and induced cell death of different HCC cells at sub or low micromolar ranges detected by classical biochemical end-point assay as well as with real-time label-free measurements. Besides cell proliferation inhibiton, analogs also inhibited cell migration even at 250 nM. Relative biodistribution of the analogs was analysed in native tissue sections of different organs after administration of drugs, and by using fluorescent confocal microscopy based on the inherent blue fluorescence of the compounds. The analogs mainly accumulated in the liver. The effects of Ac-915 and Ac-2010 were also demonstrated on the advanced stages of hepatocarcinogenesis in a transgenic mouse model of N-nitrosodiethylamine (DEN)-induced HCC. Significantly less tumor development was found in the livers of the Ac-915- or Ac-2010-treated groups compared with control mice, characterized by less liver tumor incidence, fewer tumors and smaller tumor size. CONCLUSION: These results imply that these amino-trifluoro-phthalimide analogs could serve potent clinical candidates against HCC alone or in combination with dietary polyunsaturated fatty acids. BioMed Central 2013-11-22 /pmc/articles/PMC4222488/ /pubmed/24268070 http://dx.doi.org/10.1186/1476-511X-12-175 Text en Copyright © 2013 Nagy et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
Nagy, Lajos I
Molnár, Eszter
Kanizsai, Iván
Madácsi, Ramóna
Ózsvári, Béla
Fehér, Liliána Z
Fábián, Gabriella
Marton, Annamária
Vizler, Csaba
Ayaydin, Ferhan
Kitajka, Klára
Hackler, László
Mátés, Lajos
Deák, Ferenc
Kiss, Ibolya
Puskás, László G
Lipid droplet binding thalidomide analogs activate endoplasmic reticulum stress and suppress hepatocellular carcinoma in a chemically induced transgenic mouse model
title Lipid droplet binding thalidomide analogs activate endoplasmic reticulum stress and suppress hepatocellular carcinoma in a chemically induced transgenic mouse model
title_full Lipid droplet binding thalidomide analogs activate endoplasmic reticulum stress and suppress hepatocellular carcinoma in a chemically induced transgenic mouse model
title_fullStr Lipid droplet binding thalidomide analogs activate endoplasmic reticulum stress and suppress hepatocellular carcinoma in a chemically induced transgenic mouse model
title_full_unstemmed Lipid droplet binding thalidomide analogs activate endoplasmic reticulum stress and suppress hepatocellular carcinoma in a chemically induced transgenic mouse model
title_short Lipid droplet binding thalidomide analogs activate endoplasmic reticulum stress and suppress hepatocellular carcinoma in a chemically induced transgenic mouse model
title_sort lipid droplet binding thalidomide analogs activate endoplasmic reticulum stress and suppress hepatocellular carcinoma in a chemically induced transgenic mouse model
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4222488/
https://www.ncbi.nlm.nih.gov/pubmed/24268070
http://dx.doi.org/10.1186/1476-511X-12-175
work_keys_str_mv AT nagylajosi lipiddropletbindingthalidomideanalogsactivateendoplasmicreticulumstressandsuppresshepatocellularcarcinomainachemicallyinducedtransgenicmousemodel
AT molnareszter lipiddropletbindingthalidomideanalogsactivateendoplasmicreticulumstressandsuppresshepatocellularcarcinomainachemicallyinducedtransgenicmousemodel
AT kanizsaiivan lipiddropletbindingthalidomideanalogsactivateendoplasmicreticulumstressandsuppresshepatocellularcarcinomainachemicallyinducedtransgenicmousemodel
AT madacsiramona lipiddropletbindingthalidomideanalogsactivateendoplasmicreticulumstressandsuppresshepatocellularcarcinomainachemicallyinducedtransgenicmousemodel
AT ozsvaribela lipiddropletbindingthalidomideanalogsactivateendoplasmicreticulumstressandsuppresshepatocellularcarcinomainachemicallyinducedtransgenicmousemodel
AT feherlilianaz lipiddropletbindingthalidomideanalogsactivateendoplasmicreticulumstressandsuppresshepatocellularcarcinomainachemicallyinducedtransgenicmousemodel
AT fabiangabriella lipiddropletbindingthalidomideanalogsactivateendoplasmicreticulumstressandsuppresshepatocellularcarcinomainachemicallyinducedtransgenicmousemodel
AT martonannamaria lipiddropletbindingthalidomideanalogsactivateendoplasmicreticulumstressandsuppresshepatocellularcarcinomainachemicallyinducedtransgenicmousemodel
AT vizlercsaba lipiddropletbindingthalidomideanalogsactivateendoplasmicreticulumstressandsuppresshepatocellularcarcinomainachemicallyinducedtransgenicmousemodel
AT ayaydinferhan lipiddropletbindingthalidomideanalogsactivateendoplasmicreticulumstressandsuppresshepatocellularcarcinomainachemicallyinducedtransgenicmousemodel
AT kitajkaklara lipiddropletbindingthalidomideanalogsactivateendoplasmicreticulumstressandsuppresshepatocellularcarcinomainachemicallyinducedtransgenicmousemodel
AT hacklerlaszlo lipiddropletbindingthalidomideanalogsactivateendoplasmicreticulumstressandsuppresshepatocellularcarcinomainachemicallyinducedtransgenicmousemodel
AT mateslajos lipiddropletbindingthalidomideanalogsactivateendoplasmicreticulumstressandsuppresshepatocellularcarcinomainachemicallyinducedtransgenicmousemodel
AT deakferenc lipiddropletbindingthalidomideanalogsactivateendoplasmicreticulumstressandsuppresshepatocellularcarcinomainachemicallyinducedtransgenicmousemodel
AT kissibolya lipiddropletbindingthalidomideanalogsactivateendoplasmicreticulumstressandsuppresshepatocellularcarcinomainachemicallyinducedtransgenicmousemodel
AT puskaslaszlog lipiddropletbindingthalidomideanalogsactivateendoplasmicreticulumstressandsuppresshepatocellularcarcinomainachemicallyinducedtransgenicmousemodel