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Published on: July 26, 2017
Recent trends of NFκB decoy oligodeoxynucleotide-based nanotherapeutics in lung diseases
Meenu Mehta1, Keshav Raj Paudel2, Shakti Dhar Shukla3
1Discipline of Pharmacy, Graduate School of Health, University of Technology Sydney, NSW 2007, Australia; Centre for Inflammation, Centenary Institute, Sydney, NSW 2050, Australia; Faculty of Health, Australian Research Centre in Complementary and Integrative Medicine, University of Technology Sydney, Ultimo, Australia.
Abstract:
Nuclear factor κB (NFκB) is a unique protein complex that plays a major role in lung inflammation and respiratory dysfunction. The NFκB signaling pathway, therefore becomes an avenue for the development of potential pharmacological interventions, especially in situations where chronic inflammation is often constitutively active and plays a key role in the pathogenesis and progression of the disease. NFκB decoy oligodeoxynucleotides (ODNs) are double-stranded and carry NFκB binding sequences. They prevent the formation of NFκB-mediated inflammatory cytokines and thus have been employed in the treatment of a variety of chronic inflammatory diseases. However, the systemic administration of naked decoy ODNs restricts their therapeutic effectiveness because of their poor pharmacokinetic profile, instability, degradation by cellular enzymes and their low cellular uptake. Both structural modification and nanotechnology have shown promising results in enhancing the pharmacokinetic profiles of potent therapeutic substances and have also shown great potential in the treatment of respiratory diseases such as asthma, chronic obstructive pulmonary disease and cystic fibrosis. In this review, we examine the contribution of NFκB activation in respiratory diseases and recent advancements in the therapeutic use of decoy ODNs. In addition, we also highlight the limitations and challenges in use of decoy ODNs as therapeutic molecules, cellular uptake of decoy ODNs, and the current need for novel delivery systems to provide efficient delivery of decoy ODNs. Furthermore, this review provides a common platform for discussion on the existence of decoy ODNs, as well as outlining perspectives on the latest generation of delivery systems that encapsulate decoy ODNs and target NFκB in respiratory diseases.
Insights
Nuclear factor κB (NFκB) decoy oligodeoxynucleotides show promise for treating lung inflammation. Novel delivery systems are needed to overcome challenges like poor stability and cellular uptake for effective respiratory disease treatment.
Area of Science:
- Biochemistry
- Molecular Biology
- Pharmacology
Background:
- Nuclear factor κB (NFκB) is a key regulator of lung inflammation and respiratory dysfunction.
- The NFκB signaling pathway is implicated in the pathogenesis of chronic respiratory diseases.
- NFκB decoy oligodeoxynucleotides (ODNs) inhibit NFκB-mediated inflammatory cytokine production.
Purpose of the Study:
- To review the role of NFκB activation in respiratory diseases.
- To examine advancements in the therapeutic use of decoy ODNs.
- To highlight limitations and explore novel delivery systems for decoy ODNs.
Main Methods:
- Literature review of NFκB signaling in respiratory diseases.
- Analysis of decoy ODN efficacy and limitations.
- Exploration of nanotechnology and structural modification for enhanced delivery.
Main Results:
- Decoy ODNs can prevent NFκB-mediated inflammation but face challenges with systemic administration.
- Poor pharmacokinetic profiles, instability, and low cellular uptake limit naked decoy ODN effectiveness.
- Structural modification and nanotechnology offer potential solutions for improved delivery.
Conclusions:
- NFκB plays a critical role in respiratory diseases, making its pathway a therapeutic target.
- Effective delivery systems are crucial to enhance the therapeutic potential of decoy ODNs.
- Future research should focus on advanced delivery systems for targeted NFκB inhibition in respiratory conditions.
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