Literature DB >> 17483179

Direct force measurements between siRNA and chitosan molecules using force spectroscopy.

Sailong Xu1, Mingdong Dong, Xiudong Liu, Kenneth A Howard, Jørgen Kjems, Flemming Besenbacher.   

Abstract

Information on the interaction strength between small interfering RNA (siRNA) and chitosan can contribute to the understanding of the formation and stability of chitosan/siRNA nanoparticles used as siRNA delivery systems for gene silencing. In this study, we utilize atomic force microscopy to obtain force spectroscopy results of the interaction strengths between siRNA and chitosan measured in physiological phosphate buffered saline buffer at different pH. The force measurements revealed that the adhesive interactions decreased in force strength and force frequency as the pH was increased from 4.1 to 6.1, 7.4, and 9.5, exhibiting distinct multimodal distributions of the interaction forces between siRNA and chitosan molecules at acidic pH and only negligible adhesive forces were observed at neutral or high pH. The strong pH dependence of siRNA-chitosan interactions can provide a convincing rationale for siRNA/chitosan complex formation and nanoparticle stability under low acidic conditions. These findings demonstrate that the use of force spectroscopy for the adhesive force measurements allows an evaluation of the complexing ability between siRNA and chitosan that can be utilized to predict nanoparticle stability.

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Year:  2007        PMID: 17483179      PMCID: PMC1913138          DOI: 10.1529/biophysj.106.093229

Source DB:  PubMed          Journal:  Biophys J        ISSN: 0006-3495            Impact factor:   4.033


  30 in total

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7.  RNA interference in vitro and in vivo using a novel chitosan/siRNA nanoparticle system.

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3.  Fundamental and Practical Aspects in the Formulation of Colloidal Polyelectrolyte Complexes of Chitosan and siRNA.

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Review 5.  Engineering RNA for targeted siRNA delivery and medical application.

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7.  Revealing Topography Evolution of Glass Surface under Air Pollution by Atomic Force Microscope.

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9.  Exploring the complex mechanical properties of xanthan scaffolds by AFM-based force spectroscopy.

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10.  New aspects of gene-silencing for the treatment of cardiovascular diseases.

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  10 in total

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