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Pro-Apoptotic Activity of Epi-Obtusane against Cervical Cancer: Nano Formulation, In Silico Molecular Docking, and
Omnia Hesham Abdelhafez1, Islam M Abdel-Rahman2, Eman Alaaeldin3,4
1Department of Pharmacognosy, Faculty of Pharmacy, Deraya University, Universities Zone, New Minia 61111, Egypt.
Abstract:
Cancer is a major disease that threatens human health all over the world. Intervention and prevention in premalignant processes are successful ways to prevent cancer from striking. On the other hand, the marine ecosystem is a treasure storehouse of promising bioactive metabolites. The use of such marine products can be optimized by selecting a suitable nanocarrier. Therefore, epi-obtusane, previously isolated from Aplysia oculifera, was investigated for its potential anticancer effects toward cervical cancer through a series of in vitro assays in HeLa cells using the MTT assay method. Additionally, the sesquiterpene was encapsulated within a liposomal formulation (size = 130.8 ± 50.3, PDI = 0.462, zeta potential -12.3 ± 2.3), and the antiproliferative potential of epi-obtusane was investigated against the human cervical cancer cell line HeLa before and after encapsulation with liposomes. Epi-obtusane exhibited a potent effect against the HeLa cell line, while the formulated molecule with liposomes increased the in vitro antiproliferative activity. Additionally, cell cycle arrest analysis, as well as the apoptosis assay, performed via FITC-Annexin-V/propidium iodide double staining (flow cytofluorimetry), were carried out. The pharmacological network enabled us to deliver further insights into the mechanism of epi-obtusane, suggesting that STAT3 might be targeted by the compound. Moreover, molecular docking showed a comparable binding score of the isolated compound towards the STAT3 SH2 domain. The targets possess an anticancer effect through the endometrial cancer pathway, regulation of DNA templated transcription, and nitric oxide synthase, as mentioned by the KEGG and ShinyGo 7.1 databases.
Insights
Marine-derived epi-obtusane shows potent anticancer effects against cervical cancer cells. Liposomal encapsulation enhanced its antiproliferative activity, suggesting STAT3 as a potential molecular target.
Area of Science:
- Marine natural products chemistry
- Cancer biology
- Nanomedicine
Background:
- Marine ecosystems are rich sources of bioactive compounds with therapeutic potential.
- Cervical cancer remains a significant global health challenge.
- Developing effective drug delivery systems is crucial for optimizing natural product efficacy.
Purpose of the Study:
- To investigate the anticancer potential of epi-obtusane, a marine sesquiterpene, against human cervical cancer (HeLa) cells.
- To evaluate the effect of liposomal encapsulation on the antiproliferative activity of epi-obtusane.
- To elucidate the potential molecular mechanism of action of epi-obtusane.
Main Methods:
- In vitro antiproliferative assays (MTT assay) using HeLa cells.
- Liposomal formulation and characterization of epi-obtusane.
- Cell cycle arrest and apoptosis analysis (flow cytometry).
- Pharmacological network analysis and molecular docking studies targeting STAT3.
Main Results:
- Epi-obtusane demonstrated significant antiproliferative activity against HeLa cells.
- Liposomal encapsulation of epi-obtusane enhanced its in vitro anticancer efficacy.
- Analysis suggested STAT3 as a potential molecular target, supported by molecular docking.
- The compound's mechanism involves pathways related to endometrial cancer, DNA transcription, and nitric oxide synthase.
Conclusions:
- Epi-obtusane is a promising marine-derived compound with anticancer properties against cervical cancer.
- Liposomal nanocarriers can improve the delivery and efficacy of epi-obtusane.
- Targeting STAT3 represents a potential therapeutic strategy for epi-obtusane's anticancer effects.
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