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Targeting inflammation and oxidative stress in experimental colitis through IL-6 siRNA and ascorbic acid co-loaded
Dana Hales1, Alina Porfire1, Diana Cenariu2
1Department of Pharmaceutical Technology and Biopharmacy, Faculty of Pharmacy, University of Medicine and Pharmacy "Iuliu Hațieganu" Cluj-Napoca 400012 Cluj-Napoca, Romania.
Abstract:
Using short interfering RNA (siRNA) to reduce the overexpression of pro-inflammatory cytokines associated with colitis proved effective, but co-administration with an antioxidant could significantly enhance therapeutic outcomes. The objective of this study was to develop a colon-targeted interleukin-6 (IL-6) siRNA and ascorbic acid (AA)-loaded polymeric nanoparticulate system (siRNA_AA NPs) and to investigate whether it can attenuate inflammation through synergistic anti-inflammatory and antioxidant effect in an experimental model of induced colitis. Trimethyl chitosan (TMC) nanoparticles (NPs) were prepared and characterized, and the influence of different formulation factors on their quality characteristics was evaluated, in order to select the most promising formulation to be tested in a model of colitis induced in mice. CD1 mice (n = 36) were divided into six groups. After induction of colitis, groups were treated by oral gavage with saline solution (healthy and disease control), prednisolone (reference), siRNA NPs (reference), scramble_AA NPs (reference), and siRNA_AA NPs (test). siRNA_AA NPs proved to be effective in the treatment of induced colitis, showing the most significant gene silencing of IL-6 and IL-1β as confirmed by PCR analysis. This silencing effect surpassed that observed with the reference treatment, prednisolone. Histopathological analysis indicated the ability of siRNA_AA NPs to induce repair processes of tissue damage, thus confirming the study hypothesis. The results obtained provide an important contribution regarding the effects obtained through combined targeting of the most important pathophysiological mechanisms involved in colitis, by simultaneous administration of antioxidants and nucleic acids inhibiting inflammatory cytokines.
Insights
This study developed novel nanoparticles combining short interfering RNA (siRNA) and ascorbic acid (AA) to treat colitis. The siRNA_AA NPs effectively reduced inflammation and promoted tissue repair in mice, offering a promising new therapeutic strategy.
Area of Science:
- Biomedical Engineering
- Nanotechnology
- Gastroenterology
Background:
- Colitis treatment is challenging due to inflammation and oxidative stress.
- Short interfering RNA (siRNA) shows promise for targeting pro-inflammatory cytokines.
- Antioxidants can enhance therapeutic outcomes in inflammatory conditions.
Purpose of the Study:
- To develop colon-targeted nanoparticles co-delivering IL-6 siRNA and ascorbic acid (AA).
- To evaluate the synergistic anti-inflammatory and antioxidant effects of siRNA_AA NPs in a colitis model.
- To investigate the therapeutic efficacy of siRNA_AA NPs in mice with induced colitis.
Main Methods:
- Preparation and characterization of trimethyl chitosan (TMC) nanoparticles (NPs).
- Evaluation of formulation factors influencing NP quality.
- In vivo testing of siRNA_AA NPs in a mouse model of induced colitis, comparing with controls and prednisolone.
Main Results:
- siRNA_AA NPs demonstrated significant gene silencing of IL-6 and IL-1β.
- The therapeutic effect of siRNA_AA NPs surpassed that of prednisolone.
- Histopathological analysis confirmed tissue repair and reduced damage in siRNA_AA NP-treated mice.
Conclusions:
- Colon-targeted siRNA_AA NPs are effective in treating induced colitis.
- The combined anti-inflammatory and antioxidant approach offers synergistic therapeutic benefits.
- This strategy provides a novel approach for managing colitis by targeting key pathophysiological mechanisms.
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