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Published on: September 11, 2014
Animacroxam, a Novel Dual-Mode Compound Targeting Histone Deacetylases and Cytoskeletal Integrity of Testicular Germ
Gustav Steinemann1, Alexandra Dittmer1, Weronika Kuzyniak1
1Charité - Universitätsmedizin Berlin, corporate member of Freie Universität Berlin, Humboldt-Universität zu Berlin, and Berlin Institute of Health, Institute of Physiology.
Abstract:
Novel approaches for the medical treatment of advanced solid tumors, including testicular germ cell tumors (TGCT), are desperately needed. Especially, TGCT patients not responding to cisplatin-based therapy need therapeutic alternatives, as there is no effective medical treatment available for this particular subgroup. Here, we studied the suitability of the novel dual-mode compound animacroxam for TGCT treatment. Animacroxam consists of an HDAC-inhibitory hydroxamate moiety coupled to a 4,5-diarylimidazole with inherent cytoskeleton disrupting potency. Animacroxam revealed pronounced antiproliferative, cell-cycle arresting, and apoptosis-inducing effects in TGCT cell lines with different cisplatin sensitivities. The IC50 values of animacroxam ranged from 0.22 to 0.42 μmol/L and were not correlated to the cisplatin sensitivity of the tumor cells. No unspecific cytotoxicity of animacroxam was observed in either cisplatin-sensitive or resistant TGCT cells, even at doses as high as 10 μmol/L. Furthermore, animacroxam induced the formation of actin stress fibers in cancer cells, thereby confirming the cytoskeleton-disrupting and antimigratory properties of its imidazole moiety. When compared with the clinically established HDAC inhibitor vorinostat, the novel dual-mode compound animacroxam exhibited superior antitumoral efficacy in vitro Animacroxam also reduced the tumor size of TGCT tumors in vivo, as evidenced by performing xenograft experiments on tumor bearing chorioallantoic membranes of fertilizes chicken eggs (CAM assay). The in vivo experiments also revealed a very good tolerability of the compound, and hence, animacroxam may be a promising candidate for innovative treatment of TGCT in general and the more so for platinum-insensitive or refractory TGCT. Mol Cancer Ther; 16(11); 2364-74. ©2017 AACR.
Insights
Animacroxam, a novel dual-action compound, shows significant anti-cancer effects against testicular germ cell tumors (TGCT) in vitro and in vivo. It offers a promising therapeutic alternative for cisplatin-resistant TGCT patients.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Advanced solid tumors, including testicular germ cell tumors (TGCT), require novel therapeutic strategies.
- Cisplatin-resistant TGCT patients lack effective treatment options, necessitating alternative therapies.
- Animacroxam, a dual-mode compound, combines HDAC inhibition and cytoskeleton disruption.
Purpose of the Study:
- To evaluate the efficacy of animacroxam in treating TGCT.
- To assess animacroxam's effectiveness in both cisplatin-sensitive and resistant TGCT cell lines.
- To investigate animacroxam's mechanism of action, including its impact on cell proliferation, cell cycle, apoptosis, and cytoskeleton.
Main Methods:
- In vitro studies using TGCT cell lines with varying cisplatin sensitivities.
- Assessment of antiproliferative, cell-cycle arresting, and apoptosis-inducing effects.
- In vivo efficacy evaluation using a chick chorioallantoic membrane (CAM) xenograft model.
Main Results:
- Animacroxam demonstrated potent antiproliferative, cell-cycle arresting, and apoptosis-inducing effects in TGCT cells, irrespective of cisplatin sensitivity.
- The compound exhibited significant anti-cytoskeleton and anti-migratory properties by inducing actin stress fiber formation.
- Animacroxam showed superior in vitro antitumoral efficacy compared to vorinostat and reduced tumor size in vivo with good tolerability.
Conclusions:
- Animacroxam is a promising novel therapeutic agent for TGCT treatment.
- Its dual-mode action provides efficacy against both sensitive and resistant TGCT.
- Animacroxam represents a potential innovative treatment for platinum-insensitive or refractory TGCT.

