Original ArticlePharmacognosy ResearchVol. 17 | Issue 3 | 2025 | pp. 850–858Open access
Thymoquinone-Loaded Zinc Nanoparticles Mitigate Inflammation and Inhibit Glioblastoma Progression: A Novel Therapeutic Approach
- 1,
- 2,
- 2*
- 1 Department of Oral and Maxillofacial Pathology and Microbiology, Saveetha Dental College and Hospitals, Saveetha Institute of Medical and Technical Sciences (SIMATS), Saveetha University, Chennai, Tamil Nadu, INDIA.
- 2 Department of Anatomy, Saveetha Dental College and Hospitals, Saveetha Institute of Medical and Technical Sciences (SIMATS), Saveetha University, Chennai, Tamil Nadu, INDIA.
Published in Pharmacognosy Research
Correspondence: Meenakshi Sundaram Kishore Kumar
Department of Anatomy, Saveetha Dental College and Hospitals, Saveetha Institute of Medical and Technical Sciences (SIMATS), Saveetha University, Chennai, Tamil Nadu, INDIA.
Email: meenakshisundaram.sdc@saveetha.com
Copyright: © 2025 Manuscript Technomedia. This is an open access article.
- Published:
- Jan 1, 2025
- Received:
- Feb 19, 2025
- Accepted:
- Jun 2, 2025
How to cite
Sebastian, S., Martin, T. M., & Kumar, M. S. K. (2025). Thymoquinone-Loaded Zinc Nanoparticles Mitigate Inflammation and Inhibit Glioblastoma Progression: A Novel Therapeutic Approach. Pharmacognosy Research, 17(3), 850–858. https://doi.org/10.5530/pres.20252143
Abstract
Background
Glioblastoma is the most aggressive and lethal primary brain tumour, characterized by rapid proliferation, high invasiveness, and resistance to conventional therapies. Chronic inflammation plays a crucial role in its progression, with pro-inflammatory cytokines contributing to tumour growth and therapy resistance. Nanotechnology based approaches, such as Thymoquinone derived Zinc Nanoparticles (TQ-ZnNPs) offer a promising strategy to enhance drug bioavailability and target inflammation driven glioblastoma more effectively.
Objectives
Thymoquinone, a naturally occurring substance with anti-inflammatory and anticancer qualities, has drawbacks such as low bioavailability and solubility. To overcome these, TQ-ZnNPs were synthesized using nanotechnology.
Materials and Methods
TQ-ZnNPs were synthesized using a green nanotechnology approach and characterized for their physicochemical properties through techniques like, Scanning Electron Microscopy (SEM), Fourier-Transform Infrared spectroscopy (FTIR), X-ray Diffraction (XRD) and Ultraviolet-visible (UV-vis) spectroscopy examination to verify their optical and structural characteristics. Glioblastoma cells were treated with Lipopolysaccharide to induce inflammation, followed by exposure to TQ-ZnNPs to assess their anti-inflammatory and anti-cancer effects. RT-PCR method was used to assess gene expression.
Results
TQ-ZnNPs exhibited enhanced stability and bioavailability, significantly reducing oxidative stress and suppressing pro-inflammatory cytokine expression in glioblastoma cells. They effectively inhibited cell proliferation and induced apoptosis, suggesting potent anti-inflammatory and anti-cancer properties. These findings highlight the therapeutic potential of TQ-ZnNPs in targeting inflammation driven glioblastoma.
Conclusion
TQ-ZnNPs demonstrate significant anti-inflammatory and anti-cancer potential, making them a promising nanotherapeutic approach for combating inflammation driven glioblastoma.
Keywords
Subject
Article metadata
| Title | Thymoquinone-Loaded Zinc Nanoparticles Mitigate Inflammation and Inhibit Glioblastoma Progression: A Novel Therapeutic Approach |
|---|---|
| Authors | Sofia Sebastian; Taniya Mary Martin; Meenakshi Sundaram Kishore Kumar |
| Affiliations | Department of Oral and Maxillofacial Pathology and Microbiology, Saveetha Dental College and Hospitals, Saveetha Institute of Medical and Technical Sciences (SIMATS), Saveetha University, Chennai, Tamil Nadu, INDIA.; Department of Anatomy, Saveetha Dental College and Hospitals, Saveetha Institute of Medical and Technical Sciences (SIMATS), Saveetha University, Chennai, Tamil Nadu, INDIA. |
| Corresponding author | meenakshisundaram.sdc@saveetha.com |
| Journal | Pharmacognosy Research |
| Volume / Issue | Vol. 17, Issue 3 (2025) |
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