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Anticancer Efficacy of Photodynamic Therapy with Lung Cancer-Targeted Nanoparticles
Published on: December 1, 2016
Rutin loaded liquid crystalline nanoparticles inhibit non-small cell lung cancer proliferation and migration in vitro
Keshav Raj Paudel1, Ridhima Wadhwa2, Xin Nee Tew3
1School of Life Sciences, University of Technology Sydney, Sydney, NSW 2007, Australia; Centre for Inflammation, Centenary Institute, Sydney, NSW 2050, Australia.
Abstract:
Non-small cell lung cancer (NSCLC) is one of the major causes of cancer-related mortality globally. Despite the availability of therapeutic options, the improvement in patient survival is yet to be achieved. Recent advances in natural product (e.g., Rutin) research, therapeutic nanotechnology and especially the combination of both could aid in achieving significant improvements in the treatment or management of NSCLC. In this study, we explore the anti-cancer activity of Rutin-loaded liquid crystalline nanoparticles (LCNs) in an in vitro model where we have employed the A549 human lung epithelial carcinoma cell line. The anti-proliferative activity was determined by MTT and Trypan blue assays, whereas, the anti-migratory activity was evaluated by the scratch wound healing assay and a modified Boyden chamber assay. We also evaluated the anti-apoptotic activity by Annexin V-FITC staining, and the colony formation activity was studied using crystal violet staining. Here, we report that Rutin-LCNs showed promising anti-proliferative and anti-migratory activities. Furthermore, Rutin-LCNs also induced apoptosis in the A549 cells and inhibited colony formation. The findings warrant further detailed and in-depth anti-cancer mechanistic studies of Rutin-LCNs with a focus towards a potential therapeutic option for NSCLC. LCNs may help to enhance the solubility of Rutin used in the treatment of lung cancer and hence enhance the anticancer effect of Rutin.
Insights
Rutin-loaded liquid crystalline nanoparticles (LCNs) show significant anti-cancer effects against non-small cell lung cancer (NSCLC) cells in vitro. These Rutin-LCNs demonstrate potential for enhancing NSCLC treatment by improving Rutin
Area of Science:
- Nanotechnology
- Pharmacology
- Oncology
Background:
- Non-small cell lung cancer (NSCLC) remains a leading cause of cancer mortality worldwide.
- Current therapeutic options for NSCLC have limited impact on patient survival.
- Natural products and nanotechnology offer potential for improved NSCLC treatment.
Purpose of the Study:
- To investigate the anti-cancer activity of Rutin-loaded liquid crystalline nanoparticles (LCNs).
- To evaluate Rutin-LCNs efficacy in an in vitro model of human lung cancer.
Main Methods:
- Utilized A549 human lung epithelial carcinoma cell line.
- Assessed anti-proliferative effects using MTT and Trypan blue assays.
- Evaluated anti-migratory activity via scratch wound healing and Boyden chamber assays.
- Determined anti-apoptotic effects with Annexin V-FITC staining.
- Studied colony formation inhibition using crystal violet staining.
Main Results:
- Rutin-LCNs exhibited significant anti-proliferative and anti-migratory activities in A549 cells.
- Rutin-LCNs effectively induced apoptosis in lung cancer cells.
- Rutin-LCNs demonstrated inhibition of colony formation.
- LCNs enhanced Rutin's solubility and anti-cancer efficacy.
Conclusions:
- Rutin-LCNs show promising therapeutic potential for non-small cell lung cancer.
- Further mechanistic studies are warranted to explore Rutin-LCNs for NSCLC treatment.
- Nanotechnology-based delivery systems can enhance the efficacy of natural compounds like Rutin.

