Embryo-derived teratoma in vitro biological system reveals antitumor and embryotoxic activity of valproate
Milvija Plazibat1,2,3, Ana Katušić Bojanac2,4, Marta Himerleich Perić2,4
1Department of Pediatrics, Hospital Zabok, Croatia.
Abstract:
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 mmVPA. 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(CH3 )/A(CH2 )]) with apoptotic biomarkers within the amide I region for β-sheets, and unordered and CH2 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.
Insights
Valproate (VPA), an epigenetic drug, effectively targets undifferentiated teratoma cells in vitro, reducing growth and promoting apoptosis. This study suggests VPA
Area of Science:
- Developmental Biology
- Cancer Biology
- Epigenetics
Background:
- Teratomas, particularly sacrococcygeal teratomas, can recur even when well-differentiated.
- Valproate (VPA), an antiepileptic and teratogen, is an epigenetic drug and histone deacetylase inhibitor.
- Targeting poorly differentiated cells is crucial for preventing tumor recurrence.
Purpose of the Study:
- To investigate the impact of VPA on teratoma-type tumors using an in vitro system.
- To analyze the metabolome of spent media from VPA-treated teratomas.
- To evaluate VPA's potential as an antitumor therapy for undifferentiated teratoma components.
Main Methods:
- Cultivation of gastrulating rat embryos (9.5 days) in vitro with or without 2 mM VPA.
- Analysis of spent media metabolomes using Fourier-transform infrared spectroscopy (FTIR).
- Assessment of teratoma growth, survival, proliferation, apoptosis, and differentiation indices.
Main Results:
- VPA treatment led to histone acetylation, significantly reduced teratoma growth, impaired survival, and increased apoptosis.
- VPA decreased proliferation and the incidence of differentiated tissues, causing in vitro teratomas to resorb.
- Metabolome analysis revealed distinct clusters for control and VPA-treated groups, with elevated histone acetylation and apoptotic biomarkers in VPA-treated samples.
Conclusions:
- VPA demonstrates potential for treating the undifferentiated component of teratoma tumors.
- The described in vitro system combined with metabolome analysis offers a rapid method for screening antitumor and embryotoxic agents.
- VPA's ability to target undifferentiated cells makes it a candidate for preventing teratoma recurrence.
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