DNA-Aptamer Raised against Receptor for Advanced Glycation End Products Improves Survival Rate in Septic Mice

Oxid Med Cell Longev. 2021 Aug 7:2021:9932311. doi: 10.1155/2021/9932311. eCollection 2021.

Abstract

Despite remarkable scientific advances in the understanding of molecular mechanisms for sepsis, therapeutic options are far from satisfactory. High mobility group box 1 (HMGB1), one of the ligands of receptor for advanced glycation end products (RAGE), is a late mediator of lethality in septic mice. We have recently found that the DNA-aptamer raised against RAGE (RAGE-aptamer) significantly blocks experimental diabetic nephropathy and melanoma growth and metastasis. We examined the effects of RAGE-aptamer on sepsis score, survival rate, and inflammatory and oxidative stress responses in serum, peripheral monocytes, kidneys and livers of lipopolysaccharide- (LPS-) injected mice, and on LPS-exposed THP-1 cells. RAGE-aptamer inhibited the binding of HMGB1 to RAGE in vitro. RAGE-aptamer significantly (P = 0.002) improved sepsis score at 8 hours after LPS injection and survival rate at 24 hours (P < 0.01, 70%) in septic mice compared with LPS+vehicle- or LPS+control-aptamer-treated mice. RAGE-aptamer treatment significantly decreased expression of p-NF-κB p65, an active form of redox-sensitive transcriptional factor, NF-κB and gene or protein expression of TNF-α, IL-1β, IL-6, and HMGB1 in serum, peripheral monocytes, and kidneys of septic mice in association with the reduction of oxidative stress and improvement of metabolic acidosis, renal and liver damage. LPS-induced oxidative stress, inflammatory reactions, and growth suppression in THP-1 cells were significantly blocked by RAGE-aptamer. Our present study suggests that RAGE-aptamer could attenuate multiple organ damage in LPS-injected septic mice partly by inhibiting the inflammatory reactions via suppression of HMGB1-RAGE interaction.

MeSH terms

  • Acidosis / metabolism
  • Acidosis / pathology
  • Acidosis / prevention & control
  • Acute Kidney Injury / metabolism
  • Acute Kidney Injury / pathology
  • Acute Kidney Injury / prevention & control
  • Animals
  • Aptamers, Nucleotide / chemistry
  • Aptamers, Nucleotide / pharmacology*
  • Glycation End Products, Advanced / genetics*
  • Glycation End Products, Advanced / metabolism
  • HMGB1 Protein / genetics
  • HMGB1 Protein / metabolism
  • Lipopolysaccharides / toxicity
  • Liver Failure, Acute / metabolism
  • Liver Failure, Acute / pathology
  • Liver Failure, Acute / prevention & control
  • Male
  • Mice
  • Mice, Inbred BALB C
  • NF-kappa B / genetics
  • NF-kappa B / metabolism
  • Oxidative Stress*
  • Sepsis / chemically induced
  • Sepsis / drug therapy*
  • Sepsis / genetics
  • Sepsis / metabolism
  • Survival Rate

Substances

  • Aptamers, Nucleotide
  • Glycation End Products, Advanced
  • HMGB1 Protein
  • HMGB1 protein, mouse
  • Lipopolysaccharides
  • NF-kappa B