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Published on: July 23, 2016
Nasal Administration of Cationic Nanoemulsions as CD73-siRNA Delivery System for Glioblastoma Treatment: a New
J H Azambuja1, R S Schuh2, L R Michels2
1Programa de Pós-Graduação em Biociências, Universidade Federal de Ciências da Saúde de Porto Alegre (UFCSPA), Porto Alegre, RS, Brazil. julianahazambuja@hotmail.com.
Abstract:
Glioblastoma is the most devastating primary brain tumor. Effective therapies are not available, mainly due to high tumor heterogeneity, chemoresistance, and the difficulties imposed by blood-brain barrier. CD73, an enzyme responsible for adenosine (ADO) production, is overexpressed in cancer cells and emerges as a target for glioblastoma treatment. Indeed, ADO causes a variety of tumor-promoting actions, particularly by inducing tumor immune escape, whereas CD73 inhibition impairs tumor progression. Here, a cationic nanoemulsion to deliver CD73siRNA (NE-siRNA CD73R) via nasal route aiming glioblastoma treatment was developed. NE-siRNA CD73R was uptaken by glioma cells in culture, resulting in a parallel 60-80% decrease in AMPase activity and 30-50% in cell viability. Upon nasal delivery, NE-siRNA CD73R was detected in rat brain and serum. Notably, treatment with CD73siRNA complexes of glioma-bearing Wistar rats reduced tumor growth by 60%. Additionally, NE-siRNA CD73R treatment decreased 95% ADO levels in liquor and tumor CD73 expression, confirming in vivo CD73 silencing. Finally, no toxicity was observed in either primary astrocytes or rats with this cationic nanoemulsion. These results suggest that nasal administration of cationic NE as CD73 siRNA delivery system represents a novel potential treatment for glioblastoma. Graphical Abstract Glioblastoma is the most common and devastating form of primary brain tumor. CD73, a protein involved in cell-cell adhesion and migration processes and also responsible for extracellular adenosine (ADO) production, is overexpressed by glioma cells and emerges as an important target for glioma treatment. Indeed, ADO participates in tumor immune escape, cell proliferation, and angiogenesis, and CD73 inhibition impairs those processes. Here, a cationic nanoemulsion to deliver CD73 siRNA (NE-siRNA CD73R) via nasal route aiming glioblastoma treatment was developed. NE-siRNA CD73R knockdown in vitro and in vivo CD73. Upon nasal delivery of NE-siRNA CD73R, the treatment markedly reduced tumor volume by 60% in a rat preclinical glioblastoma model. The treatment was well tolerated, and did not induce kidney, liver, lung, olfactory, bone marrow, or behavior alterations. These results indicate that the nasal administration of NE as a CD73 siRNA delivery system offered an efficient means of gene knockdown and may represent a potential alternative for glioblastoma treatment.
Insights
Nasal delivery of a cationic nanoemulsion carrying CD73 siRNA effectively targets glioblastoma. This novel treatment reduced tumor growth by 60% and showed no toxicity, offering a promising new therapeutic avenue.
Area of Science:
- Biomedical Engineering
- Oncology
- Nanotechnology
Background:
- Glioblastoma is an aggressive brain tumor with limited treatment options due to tumor heterogeneity and the blood-brain barrier.
- CD73, an enzyme overexpressed in glioblastoma, promotes tumor growth by producing adenosine (ADO), making it a key therapeutic target.
- Inhibiting CD73 can impair tumor progression, making it a promising strategy for glioblastoma treatment.
Purpose of the Study:
- To develop and evaluate a cationic nanoemulsion (NE) for delivering CD73 siRNA (NE-siRNA CD73R) via nasal administration for glioblastoma treatment.
- To assess the efficacy of NE-siRNA CD73R in reducing tumor growth and CD73 expression in a preclinical glioblastoma model.
- To determine the safety and tolerability of the NE-siRNA CD73R formulation.
Main Methods:
- Development of a cationic nanoemulsion for CD73 siRNA delivery.
- In vitro assessment of NE-siRNA CD73R uptake, AMPase activity, and cell viability in glioma cells.
- In vivo evaluation of NE-siRNA CD73R nasal delivery in a rat glioblastoma model, including tumor growth measurement, ADO levels, and CD73 expression analysis.
- Toxicity assessment in primary astrocytes and rats.
Main Results:
- NE-siRNA CD73R demonstrated effective uptake by glioma cells in vitro, reducing AMPase activity by 60-80% and cell viability by 30-50%.
- Nasal administration successfully delivered NE-siRNA CD73R to the rat brain and serum.
- Treatment with NE-siRNA CD73R significantly reduced glioblastoma tumor volume by 60% in vivo.
- The treatment led to a 95% decrease in ADO levels and confirmed CD73 gene silencing in tumors.
- No significant toxicity was observed in primary astrocytes or rats.
Conclusions:
- Nasal administration of cationic nanoemulsions as a CD73 siRNA delivery system is a viable strategy for glioblastoma treatment.
- NE-siRNA CD73R effectively silences CD73 expression and reduces tumor growth with a favorable safety profile.
- This approach offers a novel and potentially effective therapeutic alternative for glioblastoma.
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