Cargando…

Embryo‐derived teratoma in vitro biological system reveals antitumor and embryotoxic activity of valproate

Antiepileptic/teratogen valproate (VPA) is a histone deacetylase inhibitor/epigenetic drug proposed for the antitumor therapy where it is generally crucial to target poorly or undifferentiated cells to prevent a recurrence. Transplanted rodent gastrulating embryos‐proper (primitive streak and three...

Descripción completa

Detalles Bibliográficos
Autores principales: Plazibat, Milvija, Katušić Bojanac, Ana, Himerleich Perić, Marta, Gamulin, Ozren, Rašić, Mario, Radonić, Vedran, Škrabić, Marko, Krajačić, Maria, Krasić, Jure, Sinčić, Nino, Jurić‐Lekić, Gordana, Balarin, Maja, Bulić‐Jakuš, Floriana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7687280/
https://www.ncbi.nlm.nih.gov/pubmed/32056377
http://dx.doi.org/10.1111/febs.15248
_version_ 1783613497766051840
author Plazibat, Milvija
Katušić Bojanac, Ana
Himerleich Perić, Marta
Gamulin, Ozren
Rašić, Mario
Radonić, Vedran
Škrabić, Marko
Krajačić, Maria
Krasić, Jure
Sinčić, Nino
Jurić‐Lekić, Gordana
Balarin, Maja
Bulić‐Jakuš, Floriana
author_facet Plazibat, Milvija
Katušić Bojanac, Ana
Himerleich Perić, Marta
Gamulin, Ozren
Rašić, Mario
Radonić, Vedran
Škrabić, Marko
Krajačić, Maria
Krasić, Jure
Sinčić, Nino
Jurić‐Lekić, Gordana
Balarin, Maja
Bulić‐Jakuš, Floriana
author_sort Plazibat, Milvija
collection PubMed
description Antiepileptic/teratogen valproate (VPA) is a histone deacetylase inhibitor/epigenetic drug proposed for the antitumor therapy where it is generally crucial to target poorly or undifferentiated cells to prevent a recurrence. Transplanted rodent gastrulating embryos‐proper (primitive streak and three germ layers) are the source of teratoma/teratocarcinoma tumors. Human primitive‐streak remnants develop sacrococcygeal teratomas that may recur even when benign (well differentiated). To screen for unknown VPA impact on teratoma‐type tumors, we used original 2‐week embryo‐derived teratoma in vitro biological system completed by a spent media metabolome analysis. Gastrulating 9.5‐day‐old rat embryos‐proper were cultivated in Eagle's minimal essential medium (MEM) with 50% rat serum (controls) or with the addition of 2 mm VPA. Spent media metabolomes were analyzed by FTIR. Compared to controls, VPA acetylated histones; significantly diminished overall teratoma growth, impaired survival, increased the apoptotic index, and decreased proliferation index and incidence of differentiated tissues (e.g., neural tissue). Control teratomas continued to grow and differentiate for 14 days in isotransplants in vivo, but in vitro  VPA‐treated teratomas resorbed. Principal component analysis of FTIR results showed that spent media metabolomes formed well‐separated clusters reflecting the treatment and day of cultivation. In metabolomes of VPA‐treated teratomas, we found elevation of previously described histone acetylation biomarkers [amide I α‐helix and A(CH(3))/A(CH(2))]) with apoptotic biomarkers within the amide I region for β‐sheets, and unordered and CH (2) vibrations of lipids. VPA may be proposed for therapy of the undifferentiated component of teratoma tumors and this biological system completed by metabolome analysis, for a faster dual screening of antitumor/embryotoxic agents.
format Online
Article
Text
id pubmed-7687280
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-76872802020-12-05 Embryo‐derived teratoma in vitro biological system reveals antitumor and embryotoxic activity of valproate Plazibat, Milvija Katušić Bojanac, Ana Himerleich Perić, Marta Gamulin, Ozren Rašić, Mario Radonić, Vedran Škrabić, Marko Krajačić, Maria Krasić, Jure Sinčić, Nino Jurić‐Lekić, Gordana Balarin, Maja Bulić‐Jakuš, Floriana FEBS J Original Articles Antiepileptic/teratogen valproate (VPA) is a histone deacetylase inhibitor/epigenetic drug proposed for the antitumor therapy where it is generally crucial to target poorly or undifferentiated cells to prevent a recurrence. Transplanted rodent gastrulating embryos‐proper (primitive streak and three germ layers) are the source of teratoma/teratocarcinoma tumors. Human primitive‐streak remnants develop sacrococcygeal teratomas that may recur even when benign (well differentiated). To screen for unknown VPA impact on teratoma‐type tumors, we used original 2‐week embryo‐derived teratoma in vitro biological system completed by a spent media metabolome analysis. Gastrulating 9.5‐day‐old rat embryos‐proper were cultivated in Eagle's minimal essential medium (MEM) with 50% rat serum (controls) or with the addition of 2 mm VPA. Spent media metabolomes were analyzed by FTIR. Compared to controls, VPA acetylated histones; significantly diminished overall teratoma growth, impaired survival, increased the apoptotic index, and decreased proliferation index and incidence of differentiated tissues (e.g., neural tissue). Control teratomas continued to grow and differentiate for 14 days in isotransplants in vivo, but in vitro  VPA‐treated teratomas resorbed. Principal component analysis of FTIR results showed that spent media metabolomes formed well‐separated clusters reflecting the treatment and day of cultivation. In metabolomes of VPA‐treated teratomas, we found elevation of previously described histone acetylation biomarkers [amide I α‐helix and A(CH(3))/A(CH(2))]) with apoptotic biomarkers within the amide I region for β‐sheets, and unordered and CH (2) vibrations of lipids. VPA may be proposed for therapy of the undifferentiated component of teratoma tumors and this biological system completed by metabolome analysis, for a faster dual screening of antitumor/embryotoxic agents. John Wiley and Sons Inc. 2020-02-28 2020-11 /pmc/articles/PMC7687280/ /pubmed/32056377 http://dx.doi.org/10.1111/febs.15248 Text en © 2020 The Authors. The FEBS Journal published by John Wiley & Sons Ltd on behalf of Federation of European Biochemical Societies This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Plazibat, Milvija
Katušić Bojanac, Ana
Himerleich Perić, Marta
Gamulin, Ozren
Rašić, Mario
Radonić, Vedran
Škrabić, Marko
Krajačić, Maria
Krasić, Jure
Sinčić, Nino
Jurić‐Lekić, Gordana
Balarin, Maja
Bulić‐Jakuš, Floriana
Embryo‐derived teratoma in vitro biological system reveals antitumor and embryotoxic activity of valproate
title Embryo‐derived teratoma in vitro biological system reveals antitumor and embryotoxic activity of valproate
title_full Embryo‐derived teratoma in vitro biological system reveals antitumor and embryotoxic activity of valproate
title_fullStr Embryo‐derived teratoma in vitro biological system reveals antitumor and embryotoxic activity of valproate
title_full_unstemmed Embryo‐derived teratoma in vitro biological system reveals antitumor and embryotoxic activity of valproate
title_short Embryo‐derived teratoma in vitro biological system reveals antitumor and embryotoxic activity of valproate
title_sort embryo‐derived teratoma in vitro biological system reveals antitumor and embryotoxic activity of valproate
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7687280/
https://www.ncbi.nlm.nih.gov/pubmed/32056377
http://dx.doi.org/10.1111/febs.15248
work_keys_str_mv AT plazibatmilvija embryoderivedteratomainvitrobiologicalsystemrevealsantitumorandembryotoxicactivityofvalproate
AT katusicbojanacana embryoderivedteratomainvitrobiologicalsystemrevealsantitumorandembryotoxicactivityofvalproate
AT himerleichpericmarta embryoderivedteratomainvitrobiologicalsystemrevealsantitumorandembryotoxicactivityofvalproate
AT gamulinozren embryoderivedteratomainvitrobiologicalsystemrevealsantitumorandembryotoxicactivityofvalproate
AT rasicmario embryoderivedteratomainvitrobiologicalsystemrevealsantitumorandembryotoxicactivityofvalproate
AT radonicvedran embryoderivedteratomainvitrobiologicalsystemrevealsantitumorandembryotoxicactivityofvalproate
AT skrabicmarko embryoderivedteratomainvitrobiologicalsystemrevealsantitumorandembryotoxicactivityofvalproate
AT krajacicmaria embryoderivedteratomainvitrobiologicalsystemrevealsantitumorandembryotoxicactivityofvalproate
AT krasicjure embryoderivedteratomainvitrobiologicalsystemrevealsantitumorandembryotoxicactivityofvalproate
AT sincicnino embryoderivedteratomainvitrobiologicalsystemrevealsantitumorandembryotoxicactivityofvalproate
AT juriclekicgordana embryoderivedteratomainvitrobiologicalsystemrevealsantitumorandembryotoxicactivityofvalproate
AT balarinmaja embryoderivedteratomainvitrobiologicalsystemrevealsantitumorandembryotoxicactivityofvalproate
AT bulicjakusfloriana embryoderivedteratomainvitrobiologicalsystemrevealsantitumorandembryotoxicactivityofvalproate