Silencing TNF-α in macrophages and dendritic cells for arthritis treatment

C Ye1, A K Bhan, V Deshpande

  • 1Center of Excellence in Infectious Diseases, Paul L. Foster School of Medicine, Texas Tech University Health Sciences Center, El Paso, TX 79905, USA. chunting.ye@ttuhsc.edu

Abstract

Insights

RVG-9R peptide delivered tumor necrosis factor-alpha (TNF-α) small interfering RNA (siRNA) to reduce arthritis severity in mice. This targeted approach effectively suppressed inflammation and joint damage, offering a potential new treatment strategy for arthritis.

Area of Science:

  • Immunology
  • Molecular Biology
  • Drug Delivery Systems

Background:

  • Tumor necrosis factor-alpha (TNF-α) is a key inflammatory cytokine driving arthritis pathogenesis.
  • Macrophages and dendritic cells (DCs) are critical immune cells involved in TNF-α production during arthritis.
  • Targeting TNF-α in these specific cells presents a promising therapeutic strategy for arthritis treatment.

Purpose of the Study:

  • To evaluate the efficacy of RVG-9R peptide-mediated delivery of TNF-α small interfering RNA (siRNA) in a mouse model of collagen antibody-induced arthritis (CAIA).
  • To assess the impact of targeted TNF-α knockdown on arthritis severity, joint inflammation, and histological damage.

Main Methods:

  • Collagen antibody-induced arthritis (CAIA) was induced in mice.
  • Mice were treated with TNF-α siRNA complexed with RVG-9R peptide or an irrelevant peptide (RVMAT-9R).
  • Paw thickness, synovial TNF-α levels, and joint histology were analyzed.

Main Results:

  • RVG-9R/TNF-α siRNA treatment significantly reduced paw swelling and synovial TNF-α levels compared to controls.
  • Histological analysis revealed markedly reduced joint pathology, including pannus formation and inflammatory cell infiltration, in RVG-9R treated mice.
  • The therapeutic effect of RVG-9R/TNF-α siRNA was comparable to dexamethasone treatment.

Conclusions:

  • RVG-9R peptide facilitates effective siRNA delivery to macrophages and DCs for targeted gene silencing.
  • Targeted suppression of TNF-α using RVG-9R-mediated siRNA delivery demonstrates significant therapeutic potential for treating arthritis.
  • This approach represents a promising clinically viable strategy for arthritis management.

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