PLoS ONE 2014-01-01

Modified-chitosan/siRNA nanoparticles downregulate cellular CDX2 expression and cross the gastric mucus barrier.

Ana Sadio, Jenny K Gustafsson, Bruno Pereira, Carla Pereira Gomes, Gunnar C Hansson, Leonor David, Ana Paula Pêgo, Raquel Almeida

Index: PLoS ONE 9(6) , e99449, (2014)

Full Text: HTML

Abstract

Development of effective non-viral vectors is of crucial importance in the implementation of RNA interference in clinical routine. The localized delivery of siRNAs to the gastrointestinal mucosa is highly desired but faces specific problems such as the stability in gastric acidity conditions and the presence of the mucus barrier. CDX2 is a transcription factor critical for intestinal differentiation being involved in the initiation and maintenance of gastrointestinal diseases. Specifically, it is the trigger of gastric intestinal metaplasia which is a precursor lesion of gastric cancer. Its expression is also altered in colorectal cancer, where it may constitute a lineage-survival oncogene. Our main objective was to develop a nanoparticle-delivery system of siRNA targeting CDX2 using modified chitosan as a vector. CDX2 expression was assessed in gastric carcinoma cell lines and nanoparticles behaviour in gastrointestinal mucus was tested in mouse explants. We show that imidazole-modified chitosan and trimethylchitosan/siRNA nanoparticles are able to downregulate CDX2 expression and overpass the gastric mucus layer but not colonic mucus. This system might constitute a potential therapeutic approach to treat CDX2-dependent gastric lesions.


Related Compounds

Related Articles:

CPEB1 modulates differentiation of glioma stem cells via downregulation of HES1 and SIRT1 expression.

2014-08-30

[Oncotarget 5(16) , 6756-69, (2014)]

Cell-cell adhesions and cell contractility are upregulated upon desmosome disruption.

2014-01-01

[PLoS ONE 9(7) , e101824, (2014)]

Gene therapy with AAV2-CDNF provides functional benefits in a rat model of Parkinson's disease.

2013-03-01

[Brain Behav. 3(2) , 75-88, (2013)]

Positive feedback regulation of type I IFN production by the IFN-inducible DNA sensor cGAS.

2015-02-15

[J. Immunol. 194(4) , 1545-54, (2015)]

Enhanced Retinal Ganglion Cell Survival in Glaucoma by Hypoxic Postconditioning After Disease Onset.

2015-04-01

[Neurotherapeutics 12(2) , 502-14, (2015)]

More Articles...