Related Experiment Video
Updated: Aug 10, 2025

Experimental Melanoma Immunotherapy Model Using Tumor Vaccination with a Hematopoietic Cytokine
Published on: February 24, 2023
Search for immunomodulatory compounds with antiproliferative activity against melanoma
Izabela Jęśkowiak-Kossakowska1, Paulina Jawień2, Edward Krzyżak3
1Department of Pharmacology, Faculty of Medicine, Wroclaw Medical University, Mikulicza-Radeckiego 2, 50-345 Wroclaw, Poland.
Background:
Melanoma is a highly aggressive neoplasm with a high degree of malignancy and rapid acquisition of resistance by cancer cells.
Methods:
Biological studies of a series of isoxazole compounds with immunomodulatory properties were preceded by in silico analysis. The assay evaluated the viability of NHDF and A375 cell cultures after the administration of isoxazole compounds after a 24-hour incubation period in the MTT test. Analyzes of ROS and NO scavenging, P-glycoprotein activity, and properties were performed. The levels of Caspase 3 and Caspase 9 were measured using ELISA to assess which pathways induced apoptosis by the tested compounds. On the chip, the synergistic effect of doxorubicin and the most active compound from the MM9 series on cells of the A375 melanoma line was determined.
Results:
All tested N'-substituted derivatives of 5-amino-N,3-dimethyl-1,2-oxazole-4-carbohydrazide with immunomodulatory activity show multidirectional antitumor activity on A375 melanoma lines with an affinity for P-glycoprotein, induction of free radical formation and generation of DNA damage leading to the death of cancer cells, as well as formation of complexes with DNA Topoisomerase II. Most of the tested compounds show pro-apoptotic activity. The most active compound in the series induces apoptosis in three distinct pathways and acts synergistically with doxorubicin.
Conclusions:
The most active compound with immunomodulatory properties showed multidirectional antitumor activity against cells of the A375 melanoma line and also had a synergistic pro-apoptotic effect with doxorubicin, which may result in a reduction of this cytostatic dose with increased effectiveness.
Insights
New isoxazole compounds show potent antitumor activity against melanoma cells by inducing apoptosis and DNA damage. The most effective compound synergizes with doxorubicin, potentially reducing treatment doses and increasing efficacy.
Area of Science:
- Pharmacology and Medicinal Chemistry
- Cancer Biology
- Immunology
Background:
- Melanoma is an aggressive cancer known for rapid drug resistance.
- Developing novel therapeutic agents is crucial for effective melanoma treatment.
Purpose of the Study:
- To investigate the in silico and in vitro immunomodulatory and antitumor properties of novel isoxazole derivatives.
- To evaluate the synergistic effects of these compounds with doxorubicin in melanoma cell lines.
Main Methods:
- In silico analysis followed by in vitro assays including cell viability (MTT), reactive oxygen/nitrogen species (ROS/NO) scavenging, P-glycoprotein activity, Caspase 3/9 level measurement (ELISA), and drug synergy studies.
- Testing was performed on NHDF and A375 melanoma cell cultures.
Main Results:
- Isoxazole derivatives demonstrated multidirectional antitumor activity against A375 melanoma cells.
- Compounds exhibited P-glycoprotein affinity, induced free radical formation, caused DNA damage, and formed complexes with DNA Topoisomerase II.
- The most active compound induced apoptosis via three pathways and showed synergistic effects with doxorubicin.
Conclusions:
- The lead isoxazole compound possesses significant immunomodulatory and multidirectional antitumor activity against melanoma.
- Synergistic pro-apoptotic effects with doxorubicin suggest potential for reduced chemotherapeutic dosing and enhanced treatment outcomes.
Related Concept Videos
Tumor Immunotherapy
Abnormal Proliferation
Mitogens and the Cell Cycle
Targeted Cancer Therapies
There are several types of targeted therapies against...

