Modified ingenol semi-synthetic derivatives from Euphorbia tirucalli induce cytotoxicity on a large panel of human cancer cell lines

被引:0
|
作者
Viviane A. O Silva
Marcela N. Rosa
Olga Martinho
Amilcar Tanuri
João Paulo Lima
Luiz F. Pianowski
Rui M. Reis
机构
[1] Barretos Cancer Hospital,Molecular Oncology Research Center
[2] University of Minho,Life and Health Sciences Research Institute (ICVS), School of Medicine
[3] ICVS/3B’s - PT Government Associate Laboratory,Laboratory of Molecular Virology, Departaments of genetics, IB
[4] Federal University of Rio de Janeiro,Medical Oncology
[5] Barretos Cancer Hospital,undefined
[6] Medical Oncology Department,undefined
[7] A C Camargo Cancer Center,undefined
[8] Kyolab Pesquisas Farmacêuticas,undefined
来源
Investigational New Drugs | 2019年 / 37卷
关键词
Anticancer; Cytotoxic activity; Semi-synthetic derivative; Ingenol;
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中图分类号
学科分类号
摘要
The latex from Euphorbia tirucalli is used in Brazil as a folk medicine for several diseases, including cancer. Recently, we showed a cytotoxic activity of E. tirucalli euphol in a wide range of cancer cell lines. Moreover, we showed that euphol inhibits proliferation, motility and colony formation in pancreatic cancer cells, induces autophagy and sensitizes glioblastoma cells to temozolomide cytotoxicity. Herein, we report in vitro activity of three semi-synthetic ingenol compounds derived from E. tirucalli, IngA (ingenol-3-trans-cinnamate), IngB (ingenol-3-hexanoate) and IngC (ingenol-3-dodecanoate), against a large panel of human cancer cell lines. Antineoplastic effects of the three semi-synthetic compounds were assessed using MTS assays on 70 cancer cell lines from a wide array of solid tumors. Additionally, their antitumor potential was compared with known compounds of the same class, namely ingenol-3-angelate (Picato®) and ingenol 3,20-dibenzoate and in combination with standard chemotherapeutic agents. We observed that IngA, B, and C exhibited dose-dependent cytotoxic effects. Amongst the semi-synthetic compounds, IngC displayed the best activity across the tumor cell lines. In comparison with ingenol-3-angelate and ingenol 3,20-dibenzoate, IngC showed a mean of 6.6 and 3.6-fold higher efficacy, respectively, against esophageal cancer cell lines. Besides, IngC sensitized esophageal cancer cells to paclitaxel treatment. In conclusion, the semi-synthetic ingenol compounds, in particular, IngC, demonstrated a potent antitumor activity on all cancer cell lines evaluated. Although the underlying mechanisms of action of IngC are not elucidated, our results provide insights for further studies suggesting IngC as a putative therapy for cancer treatment.
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页码:1029 / 1035
页数:6
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