TY - JOUR A1 - Fathy, Moustafa A1 - Fawzy, Michael Atef A1 - Hintzsche, Henning A1 - Nikaido, Toshio A1 - Dandekar, Thomas A1 - Othman, Eman M. T1 - Eugenol exerts apoptotic effect and modulates the sensitivity of HeLa cells to cisplatin and radiation JF - Molecules N2 - Eugenol is a phytochemical present in different plant products, e.g., clove oil. Traditionally, it is used against a number of different disorders and it was suggested to have anticancer activity. In this study, the activity of eugenol was evaluated in a human cervical cancer (HeLa) cell line and cell proliferation was examined after treatment with various concentrations of eugenol and different treatment durations. Cytotoxicity was tested using lactate dehydrogenase (LDH) enzyme leakage. In order to assess eugenol’s potential to act synergistically with chemotherapy and radiotherapy, cell survival was calculated after eugenol treatment in combination with cisplatin and X-rays. To elucidate its mechanism of action, caspase-3 activity was analyzed and the expression of various genes and proteins was checked by RT-PCR and western blot analyses. Eugenol clearly decreased the proliferation rate and increased LDH release in a concentration- and time-dependent manner. It showed synergistic effects with cisplatin and X-rays. Eugenol increased caspase-3 activity and the expression of Bax, cytochrome c (Cyt-c), caspase-3, and caspase-9 and decreased the expression of B-cell lymphoma (Bcl)-2, cyclooxygenase-2 (Cox-2), and interleukin-1 beta (IL-1β) indicating that eugenol mainly induced cell death by apoptosis. In conclusion, eugenol showed antiproliferative and cytotoxic effects via apoptosis and also synergism with cisplatin and ionizing radiation in the human cervical cancer cell line. KW - eugenol KW - HeLa cells KW - cisplatin KW - radiation KW - apoptosis Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-193227 SN - 1420-3049 VL - 24 IS - 21 ER - TY - THES A1 - Curtaz, Carolin Julia T1 - \(In\) \(vitro\) Analysen der Wechselwirkung erhöhter Temperatur mit Zytostatika am Beispiel von Cisplatin T1 - \(In\) \(vitro\) analysis of the interaction of hyperthermia with cytostatica in case of cisplatin N2 - Neben der Chemotherapie ist heutzutage auch die Hyperthermie-Behandlung eine wichtige Säule der antitumorösen Therapie. Während der sogenannten HIPEC Therapie (Hypertherme intraperitoneale Chemoperfusion) werden die beiden Arten der Therapieformen kombiniert und in der klinischen Praxis erfolgreich angewendet. Genauere Kenntnisse über die zu Grunde liegenden toxikologischen in-vitro Mechanismen könnten zu neuen Möglichkeiten in der klinischen Anwendung führen. In unserer Arbeit untersuchten wir verschiedenen Tumorzelllinien (HT29,CaCo-2,HCT116,HaCaT) in Kombination mit Cisplatin und Hyperthermie mit verschiedenen Methoden, wie zum Beispiel Mikrokerntest, Comet-Assay, Durchflusszytometrie, Vitalitätstest und mikroskopischen Analysen. Unsere Ergebnisse führten uns zu der Hypothese, dass Hyperthermie alleine zu einer sogenannte mitotic catastrophe führt und zum Absterben der Tumorzellen. Im Gegensatz dazu zeigten Tumorzellen, welche mit Cisplatin alleine oder auch in Kombination mit Hyperthermie nicht in die Mitose eintreten und daher nicht durch Apoptose in den Zelltod gehen. N2 - Nowadays the use of chemotherapy, but also hyperthermia are main columns of the anti- cancer treatment. In the so-called HIPEC therapy (hypertherme intraperitoneale chemoperfusion) these both kinds of treatments are combined and successfully applieded with clinical relevance. More detailed knowledge about the underlying in-vitro toxicological mechanism may lead to new opportunities in the clinical practice. In our work we examined different cancer cells (HT29, CaCo2,HCT116,HaCaT) in the combination of with cisplatin and hyperthermia by using different methods e.g. micronucleus test, comet-assay, flow cytometry, vitality test and microscopical analysis. Our aquired results lead to the postulation that hyperthermia alone induces a so- called mitotic catastrophe provoking the death of tumor cells. However tumor cells treated with cisplatin with or without combination with hyperthermia do not enter into mitosis and therefore cannot undergo apoptosis through a mitotic catastrophe. KW - Hyperthermie KW - cisplatin KW - HIPEC therapy KW - mitotic catastrophe KW - comet assay KW - micronucleus test Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-174543 ER -