AI Article Synopsis

  • Current chemical drugs are ineffective for tick control and there are no effective vaccines, leading to the urgent need for new control strategies.
  • Small interfering RNAs (siRNAs) have potential to help control parasites, but their effectiveness is limited by challenges in getting them to the RNA-induced silencing complex (RISC).
  • This study developed a delivery system using chitosan nanoparticles to successfully transfect siRNAs into parasites, which reduced target gene expression and inhibited parasite growth, opening new avenues for gene therapy and understanding host-parasite interactions.

Article Abstract

Due to the lack of efficacy of the currently used chemical drugs, poor tick control, and lack of effective vaccines against , novel control strategies are urgently needed. In this regard, searching for anti- gene therapy may facilitate the control of this infection. Following this pattern, small interfering RNAs (siRNAs) are widely used to study gene function and hence open the way to control the parasite. However, the primary constraint of this approach is the lack of to RNA-induced silencing complex (RISC) enzymes, making siRNA impractical. In this study, we preassembled complexes with the human enzyme argonaute 2 (hAgo2) and a small interfering RNA (siRNA)single-stranded RNA (ssRNA) against and metabolite transporters. The assembled complexes were generated by developing a gene delivery system with chitosan dehydroascorbic acid nanoparticles.The delivery system effectively protected the loaded RNAi and targeted infected RBCs with a relatively high internalization rate. The assembled complexes were successfully transfected into live parasites for specific slicing of targets. We demonstrated a reduction in the expression of target genes at the mRNA level. Furthermore, this silencing inhibited growth and . For the first time, we used this method to confirm the role of the assembled complexes in manipulating the noncanonical pathway of RNAi in parasites. This novel method provides a means of silencing genes to study their role in host-parasite interactions and as potential targets for gene therapy and control.

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Source
http://dx.doi.org/10.1080/22221751.2024.2438658DOI Listing

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